This application relates to medical tools and methods, in particular to medical instruments and methods for delivering a viscous material to a site within a patient.
One example of delivering a viscous material to a medical site is in a vertebroplasty procedure. Typically, the clinician seeks to treat a compression fracture of a vertebral body by injecting bone cement, a highly viscous material into a fracture site. In order to assure that the injected cement does not travel far from its intended placement location, fluoroscopy is often used by the clinician to monitor the location of the injected cement. However, delivering the cement by simple syringe would require the clinician to place his hand in the fluoroscopy field causing the clinician to be exposed to significant radiation produced by the fluoroscope during delivery of the cement to the surgical site. Thus, in order to reduce such exposure, the clinician often performs this procedure when the fluoro is turned off, and only monitors the cement location intermittently when safely outside the range of the fluoroscopy field.
Known techniques for keeping the clinician outside the fluoro field typically involve the use of a long extension tube, whereby one end of the tube extends from an injection pump and the other end is coupled to a hollow bone needle. The extension tube is used as a conduit for delivering the bone cement from the pump to the bone needle for injection into the vertebral body. The additional length of the extension tube allows a clinician to perform the vertebroplasty at a distance outside the fluoro field.
A disadvantage of such injection devices is that the cement is a highly viscous material requiring a high force to move the cement through the tube, resulting in a high-pressure build up within the device. The pressure build-up increases the effort need to inject the cement and decreases the natural feedback to the clinician. For example, the lack of natural feedback can cause the clinician to inadvertently leak bone cement into the surrounding tissue or the spinal cord itself, resulting in a number of serious health risks. Furthermore, the additional length of tube makes such injection devices susceptible to premature curing or hardening, resulting in the tube becoming clogged.
In accordance with the present invention, there is provided a device for delivering a viscous material into a site in a patient, comprising:
an actuator including an actuator vessel;
a delivery tube, having a first end, a second end and an inner bore, wherein the first end is coupled to the actuator; and
a container having a connection port for connecting to the second end of the tube and an exit port.
In accordance with the present invention, there is provided a device for delivering a viscous material comprising:
a delivery tube having a first end portion, a second end portion, and an inner bore therebetween, the first end portion adapted to contain an incompressible fluid and the second end portion adapted to contain a viscous material.
In accordance with the present invention, there is provided a method of delivering a viscous material under fluoroscopy to a site in a patient comprising the steps of:
a) providing a delivery tube containing an incompressible fluid and a viscous material, wherein the viscous material is located within the fluoroscopy field; and
b) pressurizing the incompressible fluid outside the fluoroscopy field to exert pressure on the viscous material.
In accordance with the present invention, there is provided a method of delivering a viscous material to a site in a patient comprising the steps of:
a) providing a device having an actuator, a delivery tube filled with an incompressible fluid and a container;
b) filling the container with a viscous material; and
c) activating the actuator to pressurize the fluid to exert a force on the viscous material.
In accordance with the present invention, there is provided a device for delivering a viscous material into a site in a patient, comprising:
a) a delivery tube, having a first end, a second end and an inner bore,
b) an incompressible fluid contained within the inner bore of the delivery tube,
c) a container having a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port,
d) a viscous material contained within the inner bore of the container, and
e) a separator sized to move within the inner bore of the container for separating a viscous material from the incompressible fluid.
In accordance with the present invention, there is provided a device for delivering a viscous material into a site in a patient, comprising:
a) a delivery tube, having a first end, a second end and an inner bore,
b) a first fluid contained within the inner bore of the delivery tube, and
c) a container having a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port, and
d) a second fluid contained within the inner bore of the container.
In accordance with the present invention, there is provided a device for delivering a viscous material into a site in a patient, comprising:
a) a container having a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port adapted for connection to the patient,
b) a separator housed within the inner bore, thereby defining a distal bore and an proximal bore,
c) a first fluid contained within the proximal bore of the container.
Disclosed herein are tools and methods for delivering a viscous material to a site within a patient. The methods and devices of the present invention are particularly advantageous in that they can safely remove the clinician from the fluoro field while providing the clinician with visual and mechanical feedback while injecting the material into the patient. Such features minimize safety concerns to the patient and the clinician.
In one embodiment, the invention is a device for delivering a viscous material into a site in a patient, including an actuator with an actuator vessel; a delivery tube, having a first end, a second end and an inner bore, wherein the first end is coupled to the actuator; and a container having a connection port for connecting to the second end of the tube and an exit port.
In another exemplary embodiment, the present invention is a device for delivering a viscous material comprising a delivery tube having a first end portion, a second end portion, and an inner bore therebetween, the first end portion adapted to contain an incompressible fluid and the second end portion adapted to contain a viscous material.
Another embodiment of the present invention is a device for delivering a viscous material into a site in a patient, having a delivery tube, with a first end, a second end and an inner bore, an incompressible fluid contained within the inner bore of the delivery tube, a container with a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port, a viscous material contained within the inner bore of the container, and a separator sized to move within the inner bore of the container for separating a viscous material from the incompressible fluid.
Another embodiment of the present invention is a device for delivering a viscous material into a site in a patient, having a delivery tube, with a first end, a second end and an inner bore, a first fluid contained within the inner bore of the delivery tube, and a container with a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port, and a second fluid contained within the inner bore of the container.
In yet another embodiment of the present invention the device for delivering a viscous material into a site in a patient, has a container having a connection port for connecting to the second end of the delivery tube, an inner bore, an exit port adapted for connection to the patient, a separator housed within the inner bore, thereby defining a distal bore and an proximal bore, a first fluid contained within the proximal bore of the container.
In other aspects of the present invention, a method of delivering a viscous material under fluoroscopy to a site in a patient comprises the steps of providing a delivery tube containing an incompressible fluid and a viscous material, wherein the viscous material is located within the fluoroscopy field; and pressurizing the incompressible fluid outside the fluoroscopy field to exert pressure on the viscous material.
These and other features and advantages of the methods and instruments disclosed herein will be more fully understood by reference to the following detailed description in conjunction with the attached drawings in which like reference numerals refer to like elements through the different views. The drawings illustrate principles of the methods and instruments disclosed herein and, although not to scale, show relative dimensions.
Certain exemplary embodiments will now be described to provide an overall understanding of the principles of the structure, function, manufacture, and use of the devices and methods disclosed herein. One or more examples of these embodiments are illustrated in the accompanying drawings. Those of ordinary skill in the art will understand that the devices and methods specifically described herein and illustrated in the accompanying drawings are non-limiting exemplary embodiments and that the scope of the present invention is defined solely by the claims. The features illustrated or described in connection with one exemplary embodiment may be combined with the features of other embodiments. Such modifications and variations are intended to be included within the scope of the present invention.
The present invention is directed to devices and methods for remotely delivering a viscous material to a targeted site in a patient. In general, the device is a delivery tube containing two materials, the viscous material to be injected into the patient and an incompressible fluid to act on the viscous material. The end of the tube containing the viscous material is placed at the delivery site while the other end of the delivery tube extends outside the fluoro field. The clinician can then safely activate the movement of the material into the patient from outside the fluoro field. The amount of pressure needed to deliver the material is also reduced because the material does not have to travel the entire distance through the tube from outside the fluoro field, resulting in a decrease in friction between the tube and the viscous material. Additionally, the present invention enables the viscosity of the viscous material to be higher because of the noncompliance of the tube and the positioning of the material with respect to the targeted delivery site.
The delivery tube can further include a separator 11 within the bore of the tube for separating the viscous material from the incompressible fluid. The separator 11 is slidably movable within the bore 19 of the tube.
The delivery tube 15 is preferably flexible so as to allow the tube to be of a length sufficiently long enough to place the clinician outside the fluoroscopy field and to minimize the amount of torque at the second end portion produced by any off-axis movement in relation to the cannula. Additionally, the tube is noncompliant to minimize the amount of viscous material that is delivered after actuation of the material is stopped. A preferred material for the construction of the delivery tube is PEEK, however, nylon, polypropylenes, and polytetraflouroethylenes (PTFE) or other fluorinated polycarbons could also be used. Any materials, which are durable, sterilizable, biofriendly, chemically compatible with viscous materials such as bone cement and substantially noncompliant under the expected operating pressures of up to 1200 psi, but could, also withstand pressures up to 5000 psi.
The tubing may be reinforced with a non-stretch coil or a braid such that together as a unit, the tube and reinforcing coil or braid exhibit less than a 10% change in volume under operating pressures of about 1200 psi, compared to their initial volume under atmospheric pressure. The reinforcing coil or braid can be formed from stainless steel, nitinol, titanium, nylon or polymers such as aramid fibers, KEVLAR fibers, etc.) or other biocompatible materials having the same nonstretch characteristics described above.
In some embodiments, the inner bore 19 of the delivery tube 15 has a diameter d.sub.i that is in the range of 1 to 10 mm, and preferably in the range of 2.5 to 5 mm. The smaller the diameter, the more flexible the tube will be when delivering the viscous material. The length of the delivery tube l.sub.T is at least 20 cm and more preferably between 20 and 60 cm. In this range the clinician may be placed safely outside the fluoroscopy field.
The delivery tube contains an incompressible fluid 23 or hydraulic fluid such as water, water and oil emulsion, water-glycol mixture, straight synthetic fluid (e.g., silicone or phosphate esters, ester blends, and chlorinated hydrocarbon-based fluids) or petroleum oil. Preferably, the incompressible fluid contained within the delivery tube is saline. The incompressible property of the fluid allows for a force generated at the first or proximal end of the delivery tube to be transferred to the viscous material. The incompressible fluid can be pre-filled and sealed within the delivery tube prior to use by the clinician or the clinician can fill the tube at the time of use.
In some embodiments, the device of the present invention is used to deliver a viscous material such as bone cement into a fractured vertebral body. The bone cement may be any material typically used to augment vertebral bodies, including acrylic based bone cements (such as PMMA-based bone cements), pastes comprising bone particles (either mineralized or demineralized or both); and ceramic based bone cements (such as hydroxyapatite and TCP based pastes). The present invention enables an increase in the acceptable viscosity of the cement to be delivered because of the substantial noncompliance within the delivery tube and the location of the cement close to the actual delivery site. The viscous material is contained within the device such that it is in the fluoroscopy field at all times during the procedure.
In some embodiments, as shown in
In an alternate embodiment of the present invention shown in
In the illustrated embodiment shown in
In some embodiments, the actuator vessel 46 includes a visualization window (not shown) so that the user can observe the movement of the fluid as the actuator is engaged and the viscous material is delivered to the patient. Using a noncompliant system and an incompressible fluid results in the flow of the fluid to be the same as the flow of the viscous material so that 1 cc of fluid moved from the vessel correlates with 1 cc of viscous material moving out of the container. Other embodiments for viewing the amount of material delivered can include graduation lines on the outside of the vessel indicating the volume of material exiting the container. When the plunger tip reaches one of the graduation lines the clinician can determine the amount of material delivered. For actuators that use rotation to advance the plunger, a rotational scale could be used such that one turn of the actuator would correlate to a set amount of material exiting the container. A digital or analog counter could also be used to translate the movement of the plunger into the actual amount of viscous material delivered.
A person skilled in the art will appreciate that other actuators can be used in the device. Examples of linear actuators include a rack and pinion, ratchet and pawl, an electric motor with a worm gear, an angled clutch plate on a rod, or a walking beam. An example of a nonlinear actuator that could also be used is a hydraulic pump.
The delivery tube 15 has the same tube characteristics and design features as described in the embodiment shown in
In some embodiments the delivery tube 15 has a sealing connector 26 at the second end for connecting to a container 60. Preferably this connector is a Luer-lock type of fitting. Likewise in some embodiments, the delivery tube 15 has another sealing connector 25 at the first end for connecting to an actuator vessel 46. Preferably this connector is also a Luer-lock type of fitting.
The container 60 holds the viscous material to be delivered to the patient. The container may be filled with the viscous material by any number of conventional filling procedures. The container has a connection port 62 for coupling with the delivery tube 15 and an exit port 64 for the viscous material to exit through and for coupling with the cannula 30. Preferably, the container holds between 2 and 20 cc of viscous material. The container is also made from any noncompliant material but the material also has to be biocompatible with the viscous material. Accordingly the container can be made from the following materials: nylon, polyphenylene sulfide (PPS), ultrahigh molecular weight polyethylene, cyclic Olefin copolymer (COC) liquid crystalline polymer (LCP) acetal copolymers (POM), and polybutylene terephthalate (PBT). In some embodiments multiple containers can be filled with the viscous material and interchanged by the clinician as one is emptied. A separator 66 may be located in the container to separate the viscous material from the fluid so that the force is transferred through the separator to the viscous material pushing it out of the exit port to the desired delivery site within the patient. In one exemplary embodiment the separator is a piston.
In one embodiment, the container 60 is translucent allowing the clinician to visualize the viscous material at all times during delivery of the material. In an alternate embodiment, the container is color tinted and the separator inside the container is colored so that as the separator travels through the container pushing the viscous material out, there is a resultant color displayed that the clinician can visualize from outside the fluoro field. Alternately, a linear transducer could be used to display the path the separator travels as it advances through the container.
The container can connect to a cannula through the exit port 64. The connection between the container and the cannula is preferably made at an angle between 80 and 135 degrees, to move the container and delivery tube out of the way of the clinician and minimize interference with the imaging device. As shown in
In another embodiment of the present invention, the delivery tube is connected to a stopcock to allow two containers at two implant sites within the same patient to be connected to the device allowing delivery of the viscous material to two sites without having to stop the procedure to disconnect and connect another container of material.
Excess pressure build up in the system has the potential to cause the device to fail resulting in possible harm to the patient or the clinician. Accordingly, in some embodiments of the invention, a safety mechanism for preventing excess pressure buildup can also be added to the device. One example of a safety mechanism is an in line pressure relief valve with a cracking pressure such that when an unsafe operating pressure is reached the valve will open and divert the pressurized fluid into a catch reservoir. The valve could use a spring force or membrane that ruptures to establish the cracking pressure. Another option shown in
There may also be a pressure monitoring means connected to the device so that the user can see when the pressure is becoming excessive. An example of a pressure monitoring means can be a gauge in the delivery tube that displays the instantaneous pressure or a binary indicator that visually indicates when the pressure is ok and when it has exceeded the limit.
Another example of a safety mechanism would be a torque-limiting device that would prevent the user from generating excessive force on the fluid. A clutch type mechanism could be used with a screw type actuator to slip when a certain torque was reached. A break away handle could be used if the device was driven similar to a caulking gun.
In one embodiment the device is pre-assembled such that the incompressible fluid is pre-filled and sealed within the delivery tube and the actuator vessel. In another embodiment, the delivery tube and actuator vessel are empty and the user would fill with the incompressible fluid. In all embodiments the viscous material would be placed in the container at the time of use.
An exemplary embodiment of a method for delivering a viscous material to a site within a patient is providing a device having an actuator, a delivery tube filled with an incompressible fluid, and a container; filling the container with a viscous material, and activating the actuator of the device to pressurize the fluid in the delivery tube to push the viscous material out of the container.
Another embodiment of a method for delivering a viscous material under fluoroscopy to a site in a patient includes the steps of providing a delivery tube containing an incompressible fluid and a viscous material, wherein the viscous material is located within the fluoroscopy field; and pressurizing the incompressible fluid outside the fluoroscopy field to exert pressure on the viscous material.
As previously stated, a person skilled in the art will appreciate that the method can be performed in any sequence using any of the steps. Moreover, the devices of the present invention can be used to perform a variety of other surgical procedures not illustrated or described herein.
One skilled in the art will appreciate further features and advantages of the invention based on the above-described embodiments. Accordingly, the invention is not to be limited by what has been particularly shown and described, except as indicated by the appended claims. All publications and references cited herein are expressly incorporated herein by reference in their entirety.
This application claims the benefit of co-pending U.S. Ser. No. 10/947,496, entitled “Device for Delivering Viscous Material”, filed Sep. 22, 2004, which claims the benefit of U.S. Provisional Application No. 60/507,290 filed on Sep. 26, 2003, each of which is hereby incorporated by reference in its entirety.
Number | Name | Date | Kind |
---|---|---|---|
229932 | Witsil | Jul 1880 | A |
370335 | Hunter | Sep 1887 | A |
408668 | Peck | Aug 1889 | A |
817973 | Hausmann | Apr 1906 | A |
833044 | Goodhugh | Oct 1906 | A |
843587 | De Pew | Feb 1907 | A |
1175530 | Kirchhoff | Mar 1916 | A |
1612281 | Goetz | Dec 1926 | A |
1612996 | Waagbo | Apr 1927 | A |
1733516 | Rodin | Oct 1929 | A |
1894274 | Jacques | Jan 1933 | A |
1929247 | Hein | Oct 1933 | A |
2067458 | Nichols | Jan 1937 | A |
2123712 | Clark | Jul 1938 | A |
2283915 | Cole | May 1942 | A |
2394488 | Rotter | Feb 1946 | A |
2425867 | Davis | Aug 1947 | A |
2435647 | Engseth | Feb 1948 | A |
2497762 | Davis | Feb 1950 | A |
2521569 | Davis | Sep 1950 | A |
2567960 | Myers | Sep 1951 | A |
2745575 | Spencer | May 1956 | A |
2773500 | Young | Dec 1956 | A |
2808239 | Reiffen | Oct 1957 | A |
2874877 | Spencer | Feb 1959 | A |
2918841 | Poupitch | Dec 1959 | A |
2928574 | Wagner | Mar 1960 | A |
2970773 | Keryluk | Feb 1961 | A |
3058413 | Cavalier | Oct 1962 | A |
3063449 | Schultz | Nov 1962 | A |
3075746 | Yablonski | Jan 1963 | A |
3108593 | Glassman | Oct 1963 | A |
3151847 | Broomall | Oct 1964 | A |
3198194 | Wilburn | Aug 1965 | A |
3216616 | Blankenship, Jr. | Nov 1965 | A |
3224744 | Broomall | Dec 1965 | A |
3225760 | Di Cosola | Dec 1965 | A |
3254494 | Chartouni | Jun 1966 | A |
3362793 | Massoubre | Jan 1968 | A |
3381566 | Passer | May 1968 | A |
3426364 | Lumb | Feb 1969 | A |
3515873 | Higgins | Jun 1970 | A |
3559956 | Gray | Feb 1971 | A |
3568885 | Spencer | Mar 1971 | A |
3572556 | Pogacar | Mar 1971 | A |
3605745 | Hodosh | Sep 1971 | A |
3615240 | Sanz | Oct 1971 | A |
3674011 | Michel | Jul 1972 | A |
3701350 | Guenther | Oct 1972 | A |
3750667 | Pshenichny | Aug 1973 | A |
3789727 | Moran | Feb 1974 | A |
3796303 | Allet-Coche | Mar 1974 | A |
3798982 | Lundquist | Mar 1974 | A |
3846846 | Fischer | Nov 1974 | A |
3850158 | Elias | Nov 1974 | A |
3867728 | Stubstad | Feb 1975 | A |
3873008 | Jahn | Mar 1975 | A |
3875595 | Froning | Apr 1975 | A |
3896504 | Fischer | Jul 1975 | A |
3901408 | Boden | Aug 1975 | A |
3921858 | Bemm | Nov 1975 | A |
3931914 | Hosaka | Jan 1976 | A |
3942407 | Mortensen | Mar 1976 | A |
3976060 | Hildebrandt | Aug 1976 | A |
3993250 | Shure | Nov 1976 | A |
4011602 | Rybicki | Mar 1977 | A |
4062274 | Knab | Dec 1977 | A |
4077494 | Spaude | Mar 1978 | A |
4079917 | Popeil | Mar 1978 | A |
4090640 | Smith | May 1978 | A |
4093576 | deWijn | Jun 1978 | A |
4105145 | Capra | Aug 1978 | A |
4115346 | Gross | Sep 1978 | A |
4146334 | Farrell | Mar 1979 | A |
4168787 | Stamper | Sep 1979 | A |
4170990 | Baumgart | Oct 1979 | A |
4180070 | Genese | Dec 1979 | A |
4185072 | Puderbaugh | Jan 1980 | A |
4189065 | Herold | Feb 1980 | A |
4198383 | Konsetov | Apr 1980 | A |
4198975 | Haller | Apr 1980 | A |
4204531 | Aginsky | May 1980 | A |
4239113 | Gross | Dec 1980 | A |
4250887 | Dardik | Feb 1981 | A |
4257540 | Wegmann | Mar 1981 | A |
4268639 | Seidel | May 1981 | A |
4274163 | Malcom | Jun 1981 | A |
4276878 | Storz | Jul 1981 | A |
4277184 | Solomon | Jul 1981 | A |
4298144 | Pressl | Nov 1981 | A |
4309777 | Patil | Jan 1982 | A |
4312343 | LeVeen | Jan 1982 | A |
4313434 | Segal | Feb 1982 | A |
4326567 | Mistarz | Apr 1982 | A |
4332254 | Lundquist | Jun 1982 | A |
4338925 | Miller | Jul 1982 | A |
4341691 | Anuta | Jul 1982 | A |
4346708 | LeVeen | Aug 1982 | A |
4349921 | Kuntz | Sep 1982 | A |
4359049 | Redl | Nov 1982 | A |
4373217 | Draenert | Feb 1983 | A |
4380398 | Burgess | Apr 1983 | A |
4400170 | McNaughton | Aug 1983 | A |
4403989 | Christensen | Sep 1983 | A |
4404327 | Crugnola | Sep 1983 | A |
4405249 | Scales | Sep 1983 | A |
4409966 | Lambrecht | Oct 1983 | A |
4453539 | Raftopoulos | Jun 1984 | A |
4474572 | McNaughton | Oct 1984 | A |
4475856 | Toomingas | Oct 1984 | A |
4476866 | Chin | Oct 1984 | A |
4487602 | Christensen | Dec 1984 | A |
4494535 | Haig | Jan 1985 | A |
4500658 | Fox | Feb 1985 | A |
4503169 | Randklev | Mar 1985 | A |
4503673 | Schachle | Mar 1985 | A |
4522200 | Stednitz | Jun 1985 | A |
D279499 | Case | Jul 1985 | S |
4543966 | Islam | Oct 1985 | A |
4546767 | Smith | Oct 1985 | A |
4554914 | Kapp | Nov 1985 | A |
4558693 | Lash | Dec 1985 | A |
4562598 | Kranz | Jan 1986 | A |
4576152 | Muller | Mar 1986 | A |
4588583 | Pietsch | May 1986 | A |
4593685 | McKay | Jun 1986 | A |
4595006 | Burke | Jun 1986 | A |
4600118 | Martin | Jul 1986 | A |
4605011 | Naslund | Aug 1986 | A |
4632101 | Freedland | Dec 1986 | A |
4636217 | Ogilvie | Jan 1987 | A |
4642099 | Phillips | Feb 1987 | A |
4650469 | Berg | Mar 1987 | A |
4651904 | Schuckmann | Mar 1987 | A |
4653487 | Maale | Mar 1987 | A |
4653489 | Tronzo | Mar 1987 | A |
4664298 | Shew | May 1987 | A |
4664655 | Orentreich | May 1987 | A |
4668220 | Hawrylenko | May 1987 | A |
4668295 | Bajpai | May 1987 | A |
4670008 | Von Albertini | Jun 1987 | A |
4671263 | Draenert | Jun 1987 | A |
4676655 | Handler | Jun 1987 | A |
4676781 | Phillips | Jun 1987 | A |
4677140 | Shiotsu | Jun 1987 | A |
4684673 | Adachi | Aug 1987 | A |
4686973 | Frisch | Aug 1987 | A |
4697584 | Haynes | Oct 1987 | A |
4697929 | Muller | Oct 1987 | A |
4704035 | Kowalczyk | Nov 1987 | A |
4710179 | Haber | Dec 1987 | A |
4714721 | Franek | Dec 1987 | A |
4717383 | Phillips | Jan 1988 | A |
4718910 | Draenert | Jan 1988 | A |
4722948 | Sanderson | Feb 1988 | A |
4728006 | Drobish | Mar 1988 | A |
4735616 | Eibl | Apr 1988 | A |
4737151 | Clement | Apr 1988 | A |
4747832 | Buffet | May 1988 | A |
4758096 | Gunnarsson | Jul 1988 | A |
4758234 | Orentreich | Jul 1988 | A |
4759769 | Hedman | Jul 1988 | A |
4762515 | Grimm | Aug 1988 | A |
4767033 | Gemperle | Aug 1988 | A |
4772287 | Ray | Sep 1988 | A |
4782118 | Fontanille | Nov 1988 | A |
4786184 | Berezkina | Nov 1988 | A |
4791150 | Braden | Dec 1988 | A |
4792577 | Chen | Dec 1988 | A |
4804023 | Frearson | Feb 1989 | A |
4813870 | Pitzen | Mar 1989 | A |
4815454 | Dozier, Jr. | Mar 1989 | A |
4815632 | Ball | Mar 1989 | A |
4820271 | Deutsch | Apr 1989 | A |
4826053 | Keller | May 1989 | A |
4830227 | Ball | May 1989 | A |
4837279 | Arroyo | Jun 1989 | A |
4849223 | Pratt | Jul 1989 | A |
4854312 | Raftopoulos | Aug 1989 | A |
4854482 | Bergner | Aug 1989 | A |
4854716 | Ziemann | Aug 1989 | A |
4863072 | Perler | Sep 1989 | A |
4869906 | Dingeldein | Sep 1989 | A |
4872936 | Engelbrecht | Oct 1989 | A |
4892231 | Ball | Jan 1990 | A |
4892550 | Huebsch | Jan 1990 | A |
4900546 | Posey-Dowty | Feb 1990 | A |
4902649 | Kimura | Feb 1990 | A |
4904260 | Ray | Feb 1990 | A |
4908017 | Howson | Mar 1990 | A |
4910259 | Kindt-Larsen | Mar 1990 | A |
4927866 | Purrmann | May 1990 | A |
4932969 | Frey | Jun 1990 | A |
4935029 | Matsutani | Jun 1990 | A |
4944065 | Svanberg | Jul 1990 | A |
4944726 | Hilal | Jul 1990 | A |
4946077 | Olsen | Aug 1990 | A |
4946285 | Vennemeyer | Aug 1990 | A |
4946901 | Lechner | Aug 1990 | A |
4961647 | Coutts | Oct 1990 | A |
4966601 | Draenert | Oct 1990 | A |
4968303 | Clarke | Nov 1990 | A |
4969888 | Scholten | Nov 1990 | A |
4973168 | Chan | Nov 1990 | A |
4973301 | Nissenkorn | Nov 1990 | A |
4973334 | Ziemann | Nov 1990 | A |
4978336 | Capozzi | Dec 1990 | A |
4983164 | Hook | Jan 1991 | A |
4994065 | Gibbs | Feb 1991 | A |
4995868 | Brazier | Feb 1991 | A |
5004501 | Faccioli | Apr 1991 | A |
5006112 | Metzner | Apr 1991 | A |
5012066 | Matsutani | Apr 1991 | A |
5012413 | Sroka | Apr 1991 | A |
5015233 | McGough | May 1991 | A |
5018919 | Stephan | May 1991 | A |
5022563 | Marchitto | Jun 1991 | A |
5024232 | Smid | Jun 1991 | A |
5028141 | Stiegelmann | Jul 1991 | A |
5035706 | Giantureo | Jul 1991 | A |
5037473 | Antonucci | Aug 1991 | A |
5049157 | Mittelmeier | Sep 1991 | A |
5051482 | Tepic | Sep 1991 | A |
5059193 | Kuslich | Oct 1991 | A |
5059199 | Okada | Oct 1991 | A |
5061128 | Jahr | Oct 1991 | A |
5062128 | Katsuragi | Oct 1991 | A |
5071040 | Laptewicz, Jr. | Dec 1991 | A |
5074871 | Groshong | Dec 1991 | A |
5078919 | Ashley | Jan 1992 | A |
5092888 | Iwamoto | Mar 1992 | A |
5102413 | Poddar | Apr 1992 | A |
5106614 | Posey-Dowty | Apr 1992 | A |
5108403 | Stern | Apr 1992 | A |
5108404 | Scholten | Apr 1992 | A |
5112333 | Fixel | May 1992 | A |
5114240 | Kindt-Larsen | May 1992 | A |
5116335 | Hannon | May 1992 | A |
5122400 | Stewart | Jun 1992 | A |
5123926 | Pisharodi | Jun 1992 | A |
5125971 | Nonami | Jun 1992 | A |
5131382 | Meyer | Jul 1992 | A |
5141496 | Dalto | Aug 1992 | A |
5145250 | Planck | Sep 1992 | A |
5147903 | Podszun | Sep 1992 | A |
5171248 | Ellis | Dec 1992 | A |
5171278 | Pisharodi | Dec 1992 | A |
5181918 | Brandhorst | Jan 1993 | A |
5188259 | Petit | Feb 1993 | A |
5188604 | Orth | Feb 1993 | A |
5190191 | Reyman | Mar 1993 | A |
5192327 | Brantigan | Mar 1993 | A |
5193907 | Faccioli | Mar 1993 | A |
5203773 | Green | Apr 1993 | A |
5209753 | Biedermann | May 1993 | A |
5217147 | Kaufman | Jun 1993 | A |
5219897 | Murray | Jun 1993 | A |
5236445 | Hayhurst | Aug 1993 | A |
5242983 | Kennedy | Sep 1993 | A |
5252301 | Nilson | Oct 1993 | A |
5254092 | Polyak | Oct 1993 | A |
5258420 | Posey-Dowty | Nov 1993 | A |
5264215 | Nakabayashi | Nov 1993 | A |
5268001 | Nicholson | Dec 1993 | A |
5269762 | Armbruster | Dec 1993 | A |
5275214 | Rehberger | Jan 1994 | A |
5276070 | Arroyo | Jan 1994 | A |
5277339 | Shew | Jan 1994 | A |
5279555 | Lifshey | Jan 1994 | A |
5290260 | Stines | Mar 1994 | A |
5295980 | Ersek | Mar 1994 | A |
5296305 | Baude | Mar 1994 | A |
5302020 | Kruse | Apr 1994 | A |
5303718 | Krajicek | Apr 1994 | A |
5304147 | Johnson | Apr 1994 | A |
5304577 | Nagata | Apr 1994 | A |
5318532 | Frassica | Jun 1994 | A |
5328262 | Lidgren | Jul 1994 | A |
5328362 | Watson | Jul 1994 | A |
5331972 | Wadhwani | Jul 1994 | A |
5333951 | Wakoh | Aug 1994 | A |
5334184 | Bimman | Aug 1994 | A |
5334626 | Lin | Aug 1994 | A |
5336699 | Cooke | Aug 1994 | A |
5336700 | Murray | Aug 1994 | A |
5344232 | Nelson | Sep 1994 | A |
5348391 | Murray | Sep 1994 | A |
5348548 | Meyer | Sep 1994 | A |
5350372 | Ikeda | Sep 1994 | A |
5354287 | Wacks | Oct 1994 | A |
5356382 | Picha | Oct 1994 | A |
5368046 | Scarfone | Nov 1994 | A |
5368386 | Murray | Nov 1994 | A |
5370221 | Magnusson | Dec 1994 | A |
5372583 | Roberts | Dec 1994 | A |
5374427 | Stille | Dec 1994 | A |
5375583 | Meyer | Dec 1994 | A |
5376123 | Klaue | Dec 1994 | A |
5380772 | Hasegawa | Jan 1995 | A |
5385081 | Sneddon | Jan 1995 | A |
5385566 | Ullmark | Jan 1995 | A |
5387191 | Hemstreet | Feb 1995 | A |
5390683 | Pisharodi | Feb 1995 | A |
5395167 | Murray | Mar 1995 | A |
5395326 | Haber | Mar 1995 | A |
5398483 | Smith | Mar 1995 | A |
5401806 | Braden | Mar 1995 | A |
5407266 | Dotsch | Apr 1995 | A |
5411180 | Dumelle | May 1995 | A |
5415474 | Nelson | May 1995 | A |
5423824 | Akerfeldt | Jun 1995 | A |
5423850 | Berger | Jun 1995 | A |
5431654 | Nic | Jul 1995 | A |
5435645 | Faccioli | Jul 1995 | A |
5441502 | Bartlett | Aug 1995 | A |
5443182 | Tanaka | Aug 1995 | A |
5445631 | Uchida | Aug 1995 | A |
5445639 | Kuslich | Aug 1995 | A |
5448989 | Heckele | Sep 1995 | A |
5450924 | Tseng | Sep 1995 | A |
5454365 | Bonutti | Oct 1995 | A |
5456267 | Stark | Oct 1995 | A |
5468245 | Vargas, III | Nov 1995 | A |
5480400 | Berger | Jan 1996 | A |
5480403 | Lee | Jan 1996 | A |
5482187 | Poulsen | Jan 1996 | A |
5492247 | Shu | Feb 1996 | A |
5494349 | Seddon | Feb 1996 | A |
5501374 | Laufer | Mar 1996 | A |
5501520 | Lidgren | Mar 1996 | A |
5501695 | Anspach, Jr. | Mar 1996 | A |
5512610 | Lin | Apr 1996 | A |
5514135 | Earle | May 1996 | A |
5514137 | Coutts | May 1996 | A |
5518498 | Lindenberg | May 1996 | A |
5520690 | Errico | May 1996 | A |
5522816 | Dinello | Jun 1996 | A |
5522899 | Michelson | Jun 1996 | A |
5526853 | McPhee | Jun 1996 | A |
5531519 | Earle | Jul 1996 | A |
5531683 | Kriesel | Jul 1996 | A |
5534028 | Bao | Jul 1996 | A |
5536262 | Velasquez | Jul 1996 | A |
5545460 | Tanaka | Aug 1996 | A |
5548001 | Podszun | Aug 1996 | A |
5549380 | Lidgren | Aug 1996 | A |
5549381 | Hays | Aug 1996 | A |
5549679 | Kuslich | Aug 1996 | A |
5551778 | Hauke | Sep 1996 | A |
5554101 | Matula | Sep 1996 | A |
5556201 | Veltrop | Sep 1996 | A |
5558136 | Orrico | Sep 1996 | A |
5558639 | Gangemi | Sep 1996 | A |
5562736 | Ray | Oct 1996 | A |
5571189 | Kuslich | Nov 1996 | A |
5573265 | Pradel | Nov 1996 | A |
5578035 | Lin | Nov 1996 | A |
5586821 | Bonitati | Dec 1996 | A |
5588745 | Tanaka | Dec 1996 | A |
5591197 | Orth | Jan 1997 | A |
5601557 | Hayhurst | Feb 1997 | A |
5603701 | Fischer | Feb 1997 | A |
5609637 | Biedermann | Mar 1997 | A |
5624184 | Chan | Apr 1997 | A |
5630806 | Inagaki | May 1997 | A |
5634880 | Feldman | Jun 1997 | A |
5637097 | Yoon | Jun 1997 | A |
5638997 | Hawkins | Jun 1997 | A |
5641010 | Maier | Jun 1997 | A |
5645598 | Brosnahan, III | Jul 1997 | A |
5647856 | Eykmann | Jul 1997 | A |
5653686 | Coulter | Aug 1997 | A |
5658310 | Berger | Aug 1997 | A |
5660186 | Bachir | Aug 1997 | A |
5665067 | Linder | Sep 1997 | A |
5676699 | Gogolewski | Oct 1997 | A |
5681317 | Caldarise | Oct 1997 | A |
5683451 | Lenker | Nov 1997 | A |
5685826 | Bonutti | Nov 1997 | A |
5690606 | Slotman | Nov 1997 | A |
5690927 | Major | Nov 1997 | A |
5693100 | Pisharodi | Dec 1997 | A |
5697977 | Pisharodi | Dec 1997 | A |
5698611 | Okada | Dec 1997 | A |
5702448 | Buechel | Dec 1997 | A |
5704895 | Scott | Jan 1998 | A |
5707390 | Bonutti | Jan 1998 | A |
5718707 | Mikhail | Feb 1998 | A |
5720753 | Sander | Feb 1998 | A |
5725341 | Hofmeister | Mar 1998 | A |
5725529 | Nicholson | Mar 1998 | A |
5747553 | Guzauskas | May 1998 | A |
5752935 | Robinson | May 1998 | A |
5752969 | Cunci | May 1998 | A |
5752974 | Rhee | May 1998 | A |
5755732 | Green | May 1998 | A |
5759186 | Bachmann | Jun 1998 | A |
5763092 | Lee | Jun 1998 | A |
5779356 | Chan | Jul 1998 | A |
5782713 | Yang | Jul 1998 | A |
5782747 | Zimmon | Jul 1998 | A |
5782830 | Farris | Jul 1998 | A |
5782838 | Beyar | Jul 1998 | A |
5785647 | Tompkins | Jul 1998 | A |
5785682 | Grabenkort | Jul 1998 | A |
5792044 | Foley | Aug 1998 | A |
5795922 | Demian | Aug 1998 | A |
5797678 | Murray | Aug 1998 | A |
5800169 | Muhlbauer | Sep 1998 | A |
5800409 | Bruce | Sep 1998 | A |
5800549 | Bao | Sep 1998 | A |
5800550 | Sertich | Sep 1998 | A |
5810885 | Zinger | Sep 1998 | A |
5820321 | Gruber | Oct 1998 | A |
5824087 | Aspden | Oct 1998 | A |
5826713 | Sunago | Oct 1998 | A |
5826753 | Fehlig | Oct 1998 | A |
5827217 | Silver | Oct 1998 | A |
5827289 | Reiley | Oct 1998 | A |
5829875 | Hagel | Nov 1998 | A |
5830194 | Anwar | Nov 1998 | A |
5836306 | Duane | Nov 1998 | A |
5836914 | Houghton | Nov 1998 | A |
5839621 | Tada | Nov 1998 | A |
5842785 | Brown | Dec 1998 | A |
5842786 | Dover | Dec 1998 | A |
5865802 | Yoon | Feb 1999 | A |
5868782 | Frantzen | Feb 1999 | A |
5876116 | Barker | Mar 1999 | A |
5876457 | Picha | Mar 1999 | A |
5882340 | Yoon | Mar 1999 | A |
5884818 | Campbell | Mar 1999 | A |
5887755 | Hood, III | Mar 1999 | A |
5893488 | Hoag | Apr 1999 | A |
5893850 | Cachia | Apr 1999 | A |
5902839 | Lautenschlager | May 1999 | A |
5911721 | Nicholson | Jun 1999 | A |
5918702 | Cheng | Jul 1999 | A |
5918770 | Camm | Jul 1999 | A |
5925051 | Mikhail | Jul 1999 | A |
5928239 | Mirza | Jul 1999 | A |
5931347 | Haubrich | Aug 1999 | A |
5941851 | Coffey | Aug 1999 | A |
5954671 | O'Neill | Sep 1999 | A |
5954728 | Heller | Sep 1999 | A |
5961211 | Barker | Oct 1999 | A |
5968008 | Grams | Oct 1999 | A |
5968044 | Nicholson | Oct 1999 | A |
5968999 | Ramp | Oct 1999 | A |
5972015 | Scribner | Oct 1999 | A |
5980527 | Cohen | Nov 1999 | A |
5989290 | Biedermann | Nov 1999 | A |
5993535 | Sawamura | Nov 1999 | A |
5997544 | Nies | Dec 1999 | A |
6004325 | Vargas, III | Dec 1999 | A |
6007496 | Brannon | Dec 1999 | A |
6017349 | Heller | Jan 2000 | A |
6019765 | Thornhill | Feb 2000 | A |
6019776 | Preissman | Feb 2000 | A |
6019789 | Dinh | Feb 2000 | A |
6020396 | Jacobs | Feb 2000 | A |
6022339 | Fowles | Feb 2000 | A |
6025537 | Werding | Feb 2000 | A |
6033105 | Barker | Mar 2000 | A |
6033411 | Preissman | Mar 2000 | A |
6039761 | Li | Mar 2000 | A |
6040408 | Koole | Mar 2000 | A |
6041977 | Lisi | Mar 2000 | A |
6042262 | Hajianpour | Mar 2000 | A |
6045555 | Smith | Apr 2000 | A |
6048346 | Reiley | Apr 2000 | A |
6049026 | Muschler | Apr 2000 | A |
60455555 | Smith | Apr 2000 | |
6075067 | Lidgren | Jun 2000 | A |
6077265 | Werding | Jun 2000 | A |
6080579 | Hanley, Jr. | Jun 2000 | A |
6080801 | Draenert | Jun 2000 | A |
6080811 | Schehlmann | Jun 2000 | A |
6083229 | Constantz | Jul 2000 | A |
6086594 | Brown | Jul 2000 | A |
6103779 | Guzauskas | Aug 2000 | A |
6116773 | Murray | Sep 2000 | A |
6120174 | Hoag | Sep 2000 | A |
6124373 | Peter | Sep 2000 | A |
6126689 | Brett | Oct 2000 | A |
6127597 | Beyar | Oct 2000 | A |
6129763 | Chauvin | Oct 2000 | A |
6132396 | Antanavich | Oct 2000 | A |
6136038 | Raab | Oct 2000 | A |
6139509 | Yuan | Oct 2000 | A |
6142998 | Smith | Nov 2000 | A |
6146401 | Yoon | Nov 2000 | A |
6149651 | Drewry | Nov 2000 | A |
6149655 | Constantz | Nov 2000 | A |
6149664 | Kurz | Nov 2000 | A |
6160033 | Nies | Dec 2000 | A |
6161955 | Rademaker | Dec 2000 | A |
6168597 | Biedermann | Jan 2001 | B1 |
6174935 | Matsunae | Jan 2001 | B1 |
6176607 | Hajianpour | Jan 2001 | B1 |
6183441 | Kriesel | Feb 2001 | B1 |
6183516 | Burkinshaw | Feb 2001 | B1 |
6187015 | Brenneman | Feb 2001 | B1 |
6190381 | Olsen | Feb 2001 | B1 |
6200289 | Hochman | Mar 2001 | B1 |
6206058 | Nagel | Mar 2001 | B1 |
6210031 | Murray | Apr 2001 | B1 |
6214012 | Karpman | Apr 2001 | B1 |
6214016 | Williams | Apr 2001 | B1 |
6214037 | Mitchell | Apr 2001 | B1 |
6217566 | Ju | Apr 2001 | B1 |
6217581 | Tolson | Apr 2001 | B1 |
6217608 | Penn | Apr 2001 | B1 |
6221029 | Mathis | Apr 2001 | B1 |
6224604 | Suddaby | May 2001 | B1 |
6228049 | Schroeder | May 2001 | B1 |
6228068 | Yoon | May 2001 | B1 |
6228082 | Baker | May 2001 | B1 |
6231615 | Preissman | May 2001 | B1 |
6235043 | Reiley | May 2001 | B1 |
6238399 | Heller | May 2001 | B1 |
6241734 | Scribner | Jun 2001 | B1 |
6245101 | Drasler | Jun 2001 | B1 |
6248110 | Reiley | Jun 2001 | B1 |
6254268 | Long | Jul 2001 | B1 |
6261289 | Levy | Jul 2001 | B1 |
6264618 | Landi | Jul 2001 | B1 |
6264659 | Ross | Jul 2001 | B1 |
6264660 | Schmidt | Jul 2001 | B1 |
6273916 | Murphy | Aug 2001 | B1 |
6281271 | Rumphorst | Aug 2001 | B1 |
6309395 | Smith | Oct 2001 | B1 |
6309420 | Preissman | Oct 2001 | B1 |
6312149 | Sjövall | Nov 2001 | B1 |
6325812 | Dubrul | Dec 2001 | B1 |
6348055 | Preissman | Feb 2002 | B1 |
6348518 | Montgomery | Feb 2002 | B1 |
6350271 | Kurz | Feb 2002 | B1 |
6361539 | Heller | Mar 2002 | B1 |
6364865 | Lavi | Apr 2002 | B1 |
6367962 | Mizutani | Apr 2002 | B1 |
6375659 | Erbe | Apr 2002 | B1 |
6375682 | Fleischmann | Apr 2002 | B1 |
6383188 | Kuslich | May 2002 | B2 |
6383190 | Preissman | May 2002 | B1 |
6395007 | Bhatnagar | May 2002 | B1 |
6402701 | Kaplan | Jun 2002 | B1 |
6402758 | Tolson | Jun 2002 | B1 |
6406175 | Marino | Jun 2002 | B1 |
6409972 | Chan | Jun 2002 | B1 |
6410612 | Hatanaka | Jun 2002 | B1 |
6425885 | Fischer | Jul 2002 | B1 |
6425887 | McGuckin | Jul 2002 | B1 |
6431743 | Mizutani | Aug 2002 | B1 |
6433037 | Guzauskas | Aug 2002 | B1 |
6436143 | Ross | Aug 2002 | B1 |
6439439 | Rickard | Aug 2002 | B1 |
6443334 | John | Sep 2002 | B1 |
6447478 | Maynard | Sep 2002 | B1 |
6450973 | Murphy | Sep 2002 | B1 |
6458117 | Pollins, Sr. | Oct 2002 | B1 |
6479565 | Stanley | Nov 2002 | B1 |
6485465 | Moberg | Nov 2002 | B2 |
6488667 | Murphy | Dec 2002 | B1 |
6494868 | Amar | Dec 2002 | B2 |
6500182 | Foster | Dec 2002 | B2 |
6502608 | Burchett | Jan 2003 | B1 |
6527144 | Ritsche | Mar 2003 | B2 |
6533807 | Wolinsky | Mar 2003 | B2 |
6550957 | Mizutani | Apr 2003 | B2 |
6554833 | Levy | Apr 2003 | B2 |
6568439 | Se | May 2003 | B1 |
6572256 | Seaton | Jun 2003 | B2 |
6575331 | Peeler | Jun 2003 | B1 |
6575919 | Reiley | Jun 2003 | B1 |
6582439 | Sproul | Jun 2003 | B1 |
6582446 | Marchosky | Jun 2003 | B1 |
6592559 | Pakter | Jul 2003 | B1 |
6592624 | Fraser | Jul 2003 | B1 |
6595967 | Kramer | Jul 2003 | B2 |
6599293 | Tague | Jul 2003 | B2 |
6599520 | Scarborough | Jul 2003 | B2 |
6604003 | Fredricks | Aug 2003 | B2 |
6613018 | Bagga | Sep 2003 | B2 |
6613054 | Scribner | Sep 2003 | B2 |
6613079 | Wolinsky | Sep 2003 | B1 |
6620169 | Peterson | Sep 2003 | B1 |
6626912 | Speitling | Sep 2003 | B2 |
6638300 | Frantzen | Oct 2003 | B1 |
6641587 | Scribner | Nov 2003 | B2 |
6645213 | Sand | Nov 2003 | B2 |
6662969 | Peeler | Dec 2003 | B2 |
6676664 | Al-Assir | Jan 2004 | B1 |
6689823 | Bellare | Feb 2004 | B1 |
6702455 | Vendrely | Mar 2004 | B2 |
6712853 | Kuslich | Mar 2004 | B2 |
6716216 | Boucher | Apr 2004 | B1 |
6719761 | Reiley | Apr 2004 | B1 |
6720417 | Walter | Apr 2004 | B1 |
6730095 | Olson, Jr. | May 2004 | B2 |
6752180 | Delay | Jun 2004 | B2 |
6758837 | Péclat | Jul 2004 | B2 |
6759449 | Kimura | Jul 2004 | B2 |
6767973 | Suau | Jul 2004 | B2 |
6768279 | Skinner | Jul 2004 | B1 |
6770079 | Bhatnagar | Aug 2004 | B2 |
6779566 | Engel | Aug 2004 | B2 |
6780175 | Sachdeva | Aug 2004 | B1 |
6783515 | Miller | Aug 2004 | B1 |
6787584 | Jia | Sep 2004 | B2 |
6793660 | Kerr | Sep 2004 | B2 |
6796987 | Tague | Sep 2004 | B2 |
6852095 | Ray | Feb 2005 | B1 |
6852439 | Frank | Feb 2005 | B2 |
6874927 | Foster | Apr 2005 | B2 |
6875219 | Arramon | Apr 2005 | B2 |
6887246 | Bhatnagar | May 2005 | B2 |
6916308 | Dixon | Jul 2005 | B2 |
6954949 | Chen | Oct 2005 | B1 |
6957747 | Peeler | Oct 2005 | B2 |
6974247 | Frei | Dec 2005 | B2 |
6974416 | Booker | Dec 2005 | B2 |
6979341 | Scribner | Dec 2005 | B2 |
6979352 | Reynolds | Dec 2005 | B2 |
6980862 | Fredricks | Dec 2005 | B2 |
6994465 | Tague | Feb 2006 | B2 |
6997930 | Jäggi | Feb 2006 | B1 |
7008433 | Voellmicke | Mar 2006 | B2 |
7025771 | Kuslich | Apr 2006 | B2 |
7029163 | Barker | Apr 2006 | B2 |
7044937 | Kirwan | May 2006 | B1 |
7044954 | Reiley | May 2006 | B2 |
7048743 | Miller | May 2006 | B2 |
7063703 | Reo | Jun 2006 | B2 |
7066942 | Treace | Jun 2006 | B2 |
7087040 | McGuckin, Jr. | Aug 2006 | B2 |
7091258 | Neubert | Aug 2006 | B2 |
7097648 | Globerman | Aug 2006 | B1 |
7112205 | Carrison | Sep 2006 | B2 |
7116121 | Holcombe | Oct 2006 | B1 |
7138442 | Smith | Nov 2006 | B2 |
7186761 | Soffiati | Mar 2007 | B2 |
7189240 | Dekel | Mar 2007 | B1 |
7252671 | Scribner | Aug 2007 | B2 |
7264622 | Michelson | Sep 2007 | B2 |
7270667 | Faccioli | Sep 2007 | B2 |
7278778 | Sand | Oct 2007 | B2 |
7320540 | Coffeen | Jan 2008 | B2 |
7326203 | Papineau | Feb 2008 | B2 |
7456024 | Dahm | Nov 2008 | B2 |
7470258 | Barker | Dec 2008 | B2 |
7510579 | Preissman | Mar 2009 | B2 |
7559932 | Truckai | Jul 2009 | B2 |
7566320 | Duchon | Jul 2009 | B2 |
7572263 | Preissman | Aug 2009 | B2 |
7575577 | Boyd | Aug 2009 | B2 |
7604618 | Dixon | Oct 2009 | B2 |
7621950 | Globerman | Nov 2009 | B1 |
7645066 | Tague | Jan 2010 | B2 |
7666205 | Weikel | Feb 2010 | B2 |
7678116 | Truckai | Mar 2010 | B2 |
7693567 | Tsonton | Apr 2010 | B2 |
7702397 | Fredricks | Apr 2010 | B2 |
7708751 | Hughes | May 2010 | B2 |
7711407 | Hughes | May 2010 | B2 |
7717918 | Truckai | May 2010 | B2 |
7722612 | Sala | May 2010 | B2 |
7722620 | Truckai | May 2010 | B2 |
7831290 | Hughes | Nov 2010 | B2 |
7841763 | Foster | Nov 2010 | B2 |
7862517 | Tsonton | Jan 2011 | B2 |
7967499 | Tague | Jun 2011 | B2 |
8038682 | McGill | Oct 2011 | B2 |
8066713 | DiMauro | Nov 2011 | B2 |
8070753 | Truckai | Dec 2011 | B2 |
8079999 | Duchon | Dec 2011 | B2 |
8128276 | Axelsson | Mar 2012 | B2 |
8333773 | DiMauro | Dec 2012 | B2 |
8360629 | Globerman | Jan 2013 | B2 |
8361078 | Beyar | Jan 2013 | B2 |
8415407 | Beyar | Apr 2013 | B2 |
8540722 | Beyar | Sep 2013 | B2 |
8579908 | Mazzuca | Nov 2013 | B2 |
8809418 | Beyar | Aug 2014 | B2 |
8950929 | Globerman | Feb 2015 | B2 |
8956368 | Beyar | Feb 2015 | B2 |
9186194 | Ferreyro | Nov 2015 | B2 |
9259696 | Globerman | Feb 2016 | B2 |
9381024 | Globerman | Jul 2016 | B2 |
9504508 | Beyar | Nov 2016 | B2 |
9642932 | Beyar | May 2017 | B2 |
9750840 | Beyar | Sep 2017 | B2 |
9839460 | DiMauro | Dec 2017 | B2 |
9918767 | Globerman | Mar 2018 | B2 |
20010012968 | Preissman | Aug 2001 | A1 |
20010024400 | Van Der Wel | Sep 2001 | A1 |
20010031975 | Whitman | Oct 2001 | A1 |
20010034527 | Scribner | Oct 2001 | A1 |
20020008122 | Ritsche | Jan 2002 | A1 |
20020010431 | Dixon | Jan 2002 | A1 |
20020010471 | Wironen | Jan 2002 | A1 |
20020010472 | Kuslich | Jan 2002 | A1 |
20020013553 | Pajunk | Jan 2002 | A1 |
20020049448 | Sand | Apr 2002 | A1 |
20020049449 | Bhatnagar | Apr 2002 | A1 |
20020058947 | Hochschuler | May 2002 | A1 |
20020067658 | Vendrely | Jun 2002 | A1 |
20020068939 | Levy | Jun 2002 | A1 |
20020068974 | Kuslich | Jun 2002 | A1 |
20020068975 | Teitelbaum | Jun 2002 | A1 |
20020072768 | Ginn | Jun 2002 | A1 |
20020082605 | Reiley | Jun 2002 | A1 |
20020088131 | Baxa | Jul 2002 | A1 |
20020099384 | Scribner | Jul 2002 | A1 |
20020099385 | Ralph | Jul 2002 | A1 |
20020118595 | Miller | Aug 2002 | A1 |
20020123716 | VanDiver | Sep 2002 | A1 |
20020156483 | Voellmicke | Oct 2002 | A1 |
20020161373 | Osorio | Oct 2002 | A1 |
20020177866 | Weikel | Nov 2002 | A1 |
20020183851 | Spiegelberg | Dec 2002 | A1 |
20020188300 | Arramon | Dec 2002 | A1 |
20020191487 | Sand | Dec 2002 | A1 |
20030009177 | Middleman | Jan 2003 | A1 |
20030018339 | Higueras | Jan 2003 | A1 |
20030031698 | Roeder | Feb 2003 | A1 |
20030032929 | McGuckin | Feb 2003 | A1 |
20030032964 | Watkins | Feb 2003 | A1 |
20030036762 | Kerr | Feb 2003 | A1 |
20030036763 | Bhatnagar | Feb 2003 | A1 |
20030040718 | Kust | Feb 2003 | A1 |
20030050644 | Boucher | Mar 2003 | A1 |
20030050702 | Berger | Mar 2003 | A1 |
20030078589 | Preissman | Apr 2003 | A1 |
20030109883 | Matsuzaki | Jun 2003 | A1 |
20030109884 | Tague | Jun 2003 | A1 |
20030144742 | King | Jul 2003 | A1 |
20030162864 | Pearson | Aug 2003 | A1 |
20030174576 | Tague | Sep 2003 | A1 |
20030181963 | Pellegrino | Sep 2003 | A1 |
20030185093 | Vendrely | Oct 2003 | A1 |
20030220414 | Axen | Nov 2003 | A1 |
20030225364 | Kraft | Dec 2003 | A1 |
20030227816 | Okamoto | Dec 2003 | A1 |
20030231545 | Seaton | Dec 2003 | A1 |
20040006348 | Peterson | Jan 2004 | A1 |
20040010263 | Boucher | Jan 2004 | A1 |
20040029996 | Kuhn | Feb 2004 | A1 |
20040033124 | Schaeff | Feb 2004 | A1 |
20040044096 | Smith | Mar 2004 | A1 |
20040054377 | Foster | Mar 2004 | A1 |
20040066706 | Barker | Apr 2004 | A1 |
20040068264 | Treace | Apr 2004 | A1 |
20040073139 | Hirsch | Apr 2004 | A1 |
20040092946 | Bagga | May 2004 | A1 |
20040098015 | Weikel | May 2004 | A1 |
20040133124 | Bates | Jul 2004 | A1 |
20040133211 | Raskin | Jul 2004 | A1 |
20040162559 | Arramon | Aug 2004 | A1 |
20040167532 | Olson | Aug 2004 | A1 |
20040167562 | Osorio | Aug 2004 | A1 |
20040215202 | Preissman | Oct 2004 | A1 |
20040230309 | DiMauro | Nov 2004 | A1 |
20040249347 | Miller | Dec 2004 | A1 |
20040260304 | Faccioli | Dec 2004 | A1 |
20040267154 | Sutton | Dec 2004 | A1 |
20050008528 | Prabhu | Jan 2005 | A1 |
20050014273 | Dahm | Jan 2005 | A1 |
20050015148 | Jansen | Jan 2005 | A1 |
20050025622 | Djeridane | Feb 2005 | A1 |
20050058717 | Yetkinler | Mar 2005 | A1 |
20050060023 | Mitchell | Mar 2005 | A1 |
20050069397 | Shavit | Mar 2005 | A1 |
20050070912 | Voellmicke | Mar 2005 | A1 |
20050070914 | Constantz | Mar 2005 | A1 |
20050070915 | Mazzuca | Mar 2005 | A1 |
20050083782 | Gronau | Apr 2005 | A1 |
20050113762 | Kay | May 2005 | A1 |
20050143827 | Globerman | Jun 2005 | A1 |
20050154081 | Yin | Jul 2005 | A1 |
20050157588 | Jonsson | Jul 2005 | A1 |
20050159724 | Enerson | Jul 2005 | A1 |
20050180806 | Green | Aug 2005 | A1 |
20050203206 | Trieu | Sep 2005 | A1 |
20050209695 | de Vries | Sep 2005 | A1 |
20050216025 | Chern Lin | Sep 2005 | A1 |
20050256220 | Lavergne | Nov 2005 | A1 |
20050261625 | Ashman | Nov 2005 | A1 |
20050281132 | Armstrong | Dec 2005 | A1 |
20060035997 | Orlowski | Feb 2006 | A1 |
20060041033 | Bisig | Feb 2006 | A1 |
20060052794 | McGill | Mar 2006 | A1 |
20060074433 | McGill | Apr 2006 | A1 |
20060079905 | Beyar | Apr 2006 | A1 |
20060085008 | Jaggi | Apr 2006 | A1 |
20060116643 | Dixon | Jun 2006 | A1 |
20060116689 | Albans | Jun 2006 | A1 |
20060116690 | Pagano | Jun 2006 | A1 |
20060122614 | Truckai | Jun 2006 | A1 |
20060148923 | Ashman | Jul 2006 | A1 |
20060164913 | Arramon | Jul 2006 | A1 |
20060167148 | Engqvist | Jul 2006 | A1 |
20060181959 | Weiss | Aug 2006 | A1 |
20060235338 | Pacheco | Oct 2006 | A1 |
20060235417 | Sala | Oct 2006 | A1 |
20060241606 | Vachtenberg | Oct 2006 | A1 |
20060241644 | Osorio | Oct 2006 | A1 |
20060264695 | Viole | Nov 2006 | A1 |
20060264967 | Ferreyro | Nov 2006 | A1 |
20060266372 | Miller | Nov 2006 | A1 |
20060271061 | Beyar | Nov 2006 | A1 |
20060276819 | Osorio | Dec 2006 | A1 |
20070019802 | Ubriaco | Jan 2007 | A1 |
20070027230 | Beyar | Feb 2007 | A1 |
20070032567 | Beyar | Feb 2007 | A1 |
20070043373 | Sala | Feb 2007 | A1 |
20070055266 | Osorio | Mar 2007 | A1 |
20070055267 | Osorio | Mar 2007 | A1 |
20070055278 | Osorio | Mar 2007 | A1 |
20070055280 | Osorio | Mar 2007 | A1 |
20070055284 | Osorio | Mar 2007 | A1 |
20070055285 | Osorio | Mar 2007 | A1 |
20070055300 | Osorio | Mar 2007 | A1 |
20070060941 | Reiley | Mar 2007 | A1 |
20070118142 | Krueger | May 2007 | A1 |
20070121422 | Sand | May 2007 | A1 |
20070142842 | Krueger | Jun 2007 | A1 |
20070162042 | Dunker | Jul 2007 | A1 |
20070197935 | Reiley | Aug 2007 | A1 |
20070198013 | Foley | Aug 2007 | A1 |
20070198023 | Sand | Aug 2007 | A1 |
20070198024 | Plishka | Aug 2007 | A1 |
20070255282 | Simonton | Nov 2007 | A1 |
20070282443 | Globerman | Dec 2007 | A1 |
20080039856 | DiMauro | Feb 2008 | A1 |
20080044374 | Lavergne | Feb 2008 | A1 |
20080058827 | Osorio | Mar 2008 | A1 |
20080065087 | Osorio | Mar 2008 | A1 |
20080065089 | Osorio | Mar 2008 | A1 |
20080065137 | Boucher | Mar 2008 | A1 |
20080065142 | Reiley | Mar 2008 | A1 |
20080065190 | Osorio | Mar 2008 | A1 |
20080071283 | Osorio | Mar 2008 | A1 |
20080086133 | Kuslich | Apr 2008 | A1 |
20080132935 | Osorio | Jun 2008 | A1 |
20080140079 | Osorio | Jun 2008 | A1 |
20080140084 | Osorio | Jun 2008 | A1 |
20080200915 | Globerman | Aug 2008 | A1 |
20080212405 | Globerman | Sep 2008 | A1 |
20080228192 | Beyar | Sep 2008 | A1 |
20080300536 | Wang | Dec 2008 | A1 |
20080319445 | McGill | Dec 2008 | A9 |
20090264892 | Beyar | Oct 2009 | A1 |
20090264942 | Beyar | Oct 2009 | A1 |
20090270872 | DiMauro | Oct 2009 | A1 |
20100065154 | Globerman | Mar 2010 | A1 |
20100069786 | Globerman | Mar 2010 | A1 |
20100152855 | Kuslich | Jun 2010 | A1 |
20100168271 | Beyar | Jul 2010 | A1 |
20100268231 | Kuslich | Oct 2010 | A1 |
20100274243 | Fredricks | Oct 2010 | A1 |
20120307586 | Globerman | Dec 2012 | A1 |
20130123791 | Beyar | May 2013 | A1 |
20130261217 | Beyar | Oct 2013 | A1 |
20130345708 | Beyar | Dec 2013 | A1 |
20140088605 | Ferreyro | Mar 2014 | A1 |
20140148866 | Globerman | May 2014 | A1 |
20150122691 | Globerman | May 2015 | A1 |
20150127058 | Beyar | May 2015 | A1 |
20150148777 | Ferreyro | May 2015 | A1 |
20160051302 | Ferreyro | Feb 2016 | A1 |
20160235459 | Globerman | Aug 2016 | A1 |
20170216483 | Beyar | Aug 2017 | A1 |
Number | Date | Country |
---|---|---|
1138001 | Dec 1996 | CN |
1310026 | Aug 2001 | CN |
136018 | Dec 1901 | DE |
226956 | Mar 1909 | DE |
868497 | Feb 1953 | DE |
1283448 | Nov 1968 | DE |
1810799 | Jun 1970 | DE |
2821785 | Nov 1979 | DE |
3003947 | Aug 1980 | DE |
2947875 | Jun 1981 | DE |
3443167 | Jun 1986 | DE |
8716073 | Mar 1988 | DE |
3817101 | Nov 1989 | DE |
4104092 | Aug 1991 | DE |
293485 | Sep 1991 | DE |
19612276 | Oct 1997 | DE |
10258140 | Dec 2005 | DE |
0044877 | Mar 1985 | EP |
0 235 905 | Sep 1987 | EP |
0 235 905 | Dec 1990 | EP |
235905 | Dec 1990 | EP |
0 614 653 | Sep 1994 | EP |
1 074 231 | Feb 2001 | EP |
1 095 667 | May 2001 | EP |
1095667 | May 2001 | EP |
1 104 260 | Jun 2001 | EP |
1 247 454 | Oct 2002 | EP |
1 517 655 | Mar 2005 | EP |
1 596 896 | Nov 2005 | EP |
1 598 015 | Nov 2005 | EP |
1104260 | Aug 2006 | EP |
1 829 518 | Sep 2007 | EP |
1 886 647 | Feb 2008 | EP |
1 886 648 | Feb 2008 | EP |
1829518 | Aug 2009 | EP |
1886647 | Apr 2011 | EP |
0614653 | Aug 2011 | EP |
1548575 | Dec 1968 | FR |
2606282 | May 1988 | FR |
2629337 | Oct 1989 | FR |
2638972 | May 1990 | FR |
2674119 | Sep 1992 | FR |
2690332 | Oct 1993 | FR |
2712486 | May 1995 | FR |
2722679 | Jan 1996 | FR |
179502045 | Apr 1795 | GB |
8331 | Mar 1904 | GB |
190720207 | Jun 1908 | GB |
408668 | Apr 1934 | GB |
486638 | Jun 1938 | GB |
2114005 | Aug 1983 | GB |
2197691 | May 1988 | GB |
2268068 | Jan 1994 | GB |
2411849 | Sep 2005 | GB |
2469749 | Oct 2010 | GB |
51-134465 | Nov 1976 | JP |
54009110 | Jan 1979 | JP |
55-009242 | Jan 1980 | JP |
55-109440 | Aug 1980 | JP |
55109440 | Aug 1980 | JP |
62068893 | Mar 1987 | JP |
62-068893 | Apr 1987 | JP |
63-194722 | Aug 1988 | JP |
2122017 | May 1990 | JP |
2166235 | Jun 1990 | JP |
04-329956 | Nov 1992 | JP |
4329956 | Nov 1992 | JP |
05034760 | Sep 1993 | JP |
07-000410 | Jan 1995 | JP |
8322848 | Dec 1996 | JP |
10146559 | Jun 1998 | JP |
10-511569 | Oct 1998 | JP |
2001- 514922 | Sep 2001 | JP |
2004-016707 | Jan 2004 | JP |
2004016707 | Jan 2004 | JP |
2005- 500103 | Jan 2005 | JP |
2008055367 | Mar 2008 | JP |
116784 | Jun 2001 | RO |
662082 | May 1979 | RU |
1011119 | Apr 1983 | RU |
1049050 | Oct 1983 | RU |
WO 8810129 | Dec 1988 | WO |
WO 1990000037 | Jan 1990 | WO |
WO 1994012112 | Jun 1994 | WO |
WO 199426213 | Nov 1994 | WO |
WO 1994026213 | Nov 1994 | WO |
WO 1997018769 | May 1997 | WO |
WO 9728835 | Aug 1997 | WO |
WO 1997028835 | Aug 1997 | WO |
WO 1998038918 | Sep 1998 | WO |
WO 1999029253 | Jun 1999 | WO |
WO 1999052446 | Mar 2000 | WO |
WO 2000044321 | Dec 2000 | WO |
WO 2001060270 | Aug 2001 | WO |
WO 0219933 | Mar 2002 | WO |
WO 2002019933 | Mar 2002 | WO |
WO 2001076514 | May 2002 | WO |
WO 02064195 | Aug 2002 | WO |
WO 2003007854 | Jan 2003 | WO |
WO 2002000143 | Feb 2003 | WO |
WO 2002100143 | Feb 2003 | WO |
WO 03022165 | Mar 2003 | WO |
WO 2003022165 | Mar 2003 | WO |
WO 03078041 | Sep 2003 | WO |
WO 2003078041 | Sep 2003 | WO |
WO 2004080357 | Sep 2004 | WO |
WO 2004110292 | Dec 2004 | WO |
WO 2005000138 | Jan 2005 | WO |
WO 2005017000 | Feb 2005 | WO |
WO 2004110300 | Jun 2005 | WO |
WO 2005032326 | Jun 2005 | WO |
WO 2005048867 | Aug 2005 | WO |
WO 2006062939 | Jun 2006 | WO |
WO 2006090379 | Nov 2006 | WO |
WO 2006011152 | May 2007 | WO |
WO 2007036815 | Sep 2007 | WO |
WO 2007015202 | Nov 2007 | WO |
Entry |
---|
Dewijn, J.R., Characterization of Bone Cements, The Institute of Dental Materials Science and Technology and the Dept of Ortho., Catholic University, Netherlands 46:38-51 (1975). |
Edeland, “Some additional suggestions for an intervertebral disc prothesis,” J. Biomed. Eng. XP008072822, 7(1):57-62 (1985. |
Farrar, D.F. et al., “Rheological Properties of PMMA Bone Cements During Curing,” Biomaterials 22:3005-13 (2001). |
Feldman, H. “Die Geschichte der Injektionen ” Laryngo-Rhino-Othol 79:239-46 (2000). |
Fessler, Richard D. et al., “Vertebroplasty,” Neurosurgical Operative Atlas 9:233-240 (2000). |
Gangi, A., “Computed Tomography Ct and Fluoroscopy-Guided Vertebroplasty: Results and Complications in 187 Patients,” Seminars in Interventional Radiology 16(2):137-42 (1999). |
Gangi, A., “CT-Guided Interventional Procedures for Pain Management in the Lumbosacral Spine,” Radiographics 18:621-633 (1998). |
Gangi, A., “Percutaneous Vertebroplasty Guided by a Combination of CT and Fluroscopy” AINR 15:83-86 (1994). |
Garfin, S. R. et al., “New Technologies in Spine, Kyphoplasty and Vertebroplasty for the Treatment of Painful Osteoporotic Compression Fractures,” Spine 26(14:1511-15 (2001). |
Gheduzzi, S. et al., “Mechanical Characterisation of Three Percutaneous Vertebroplasty Biomaterials,” J. Mater Sci Mater Med 17(5):421-26 (2006). |
Giannitsios, D. et al., “High Cement Viscosity Reduces Leakage Risk in Vertebroplasty,” European Cells & Mat. 10 supp. 3:54 (2005). |
Glasgow Medico-Chirurgical Society, The lancet 1364 (May 18, 1907). |
Odian, G., “Principles of Polymerization,” pp. 20-23. |
Padovani, B. et al., “Pulmonary Embolism Caused by Acrylic Cement: A Rare Complication of Percutaneous Vertebroplasty,” AJNR 20:375-77 (1999). |
Paget, S., “The Uses of Paraffin in Plastic Surgery,” The Lancet 1354 (May 16, 1903). |
Parallax Medical, Inc., Exflow Cement Delivery System (May 16, 2000). |
Pascual, B. et al., “New Aspects of the Effect of Size and Size Distribution on the Setting Parameters and Mechanical Properties of Acrylic Bone Cements,” Biomaterials 17(5):509-16 (1996). |
Rimnac, CM, et al., “The effect of centrifugation on the fracture properties of acrylic bone cements,” JB&JS 68A(2):281-87 (1986). |
Robinson, R. et al., “Mechanical Properties of Poly(methyl methacrylate) Bone Cement,” J. Biomed. Materials Res. 15(2):203-08 (2004). |
Ryu, K. S. et al., “Dose-Dependent Epidural Leakage of Polymethylmethacrylate after Percutaneous Vertebroplasty in Pateints with Osteoporotic Vertebral Compression Fractures,” J. Neuro: Spine 96:56-61 (2002). |
Saha, S. et al., “Mechanical Properties of Bone Cement: A Review,” J. Biomed. Materials Res. 18(4):435-62 (1984). |
Serbetci, K. et al., “Thermal and Mechanical Properties of Hydroxyapatite Impregnated Acrylic Bone Cements,” Polymer Testing 23:145-55 (2004). |
Shah, T., Radiopaque Polymer Formulations for Medical Devices; Medical Plastics and Biomaterials Special Section; Medical device & Diagnostic Industry pp. 102-111 (2000). |
Steen, “Laser Surface Treatment,” Laser Mat. Processing, Springer 2d ed. ch. 6:218-71 (2003). |
Al-Assir, et al., “Percutaneous Vertebroplasty: A Special Syringe for Cement Injection,” AJNR Am. J. Neuroradiol. 21:159-61 (Jan. 2000). |
Amar, Arun P. et al., “Percutaneous Transpedicular Polymethylmethacrylate Vertebroplasty for the Treatment of Spinal Compression Fractures,” Neurosurgery 49(5):1105-15 (2001). |
Andersen, M. et al., “Vertebroplastik, ny behandling of osteoporotiske columnafrakturer?”, Ugeskr laefer 166/6:463-66 (Feb. 2, 2004). |
Avalione & Baumeister III, Marks' Standard Handbook for Mechanical Engineers, 10 ed, pp. 5-6 (1996). |
Baroud, G. et al., “Injection Biomechanics of Bone Cements Used in Vertebroplasty,” Biomaterials & Eng. 00:1-18 (2004). |
Baroud, G., “Influence of Mixing Method on the Cement Temperature-Mixing Time History and Doughing Time of Three Acrylic Cements for Vertebroplasty,” Wiley Periodicals Inc. 112-116 (2003). |
Barr, J.D., “Percutaneous Vertebroplasty for pain Relief and Spinal Stabilization,” Spine 25(8):923-28 (2000). |
Belkoff, S. et al., The Biomechanics of Vertebroplasty, the Effect of Cement Volume on Mechanical Behavior, SPINE 26(14):1537-41 (2001). |
Belkoff, S.M. et al., “An Ex Vivo Biomechanical Evaluation of a Hydroxyapatite Cement for Use with Kyphoplasty,” Am. J. Neurorad. 22:1212-16 (2001). |
Belkoff, S.M. et al., “An Ex Vivo Biomechanical Evaluation of a Inflatable Bone Tamp Used in the Treatment of Compression Fracture,” SPINE 26(2):151-56 (2001). |
Belkoff, S.M. et al., “An In Vitro Biomechanical Evaluation of Bone Cements Used in Percutaneous Vertebroplasty,” Bone 25(2):235-265 (1999). |
Blinc, A et al., “Methyl-methacrylate bone cement surface does not promote platelet aggregation or plasma coagulation in vitro,” Thrombosis Research 114:179-84 (2004). |
Bohner, M. et al., “Theoretical and Experimental Model to Describe the Injection of a Polymethacrylate Cement into a Porous Structure,” Biomaterials 24(16):2721-30 (2003). |
Breusch, S. et al., “Knochenzemente auf Basis von Polymethylmethacrylat,” Orthopade 32:41-50 (2003) w/ abs. |
Canale et al., “Campbell's operative orthopaedic-vol. 3-ninth ed”, Mosby:P2097,2121,2184-85,2890-96, (1998) abstracts. |
Carrodegus et al., “Injectable Acrylic Bone Cements for Vertebroplasty with Improved Properties,” J. Biomed. Materials Res. 68(1):94-104 (Jan. 2004). |
Codman & Shurtleff, “V-MAX.TM. Mixing and Delivery Device,” Catalog No. 43-1056. |
Cole et al., “AIM Titanium Humeral Nail System,” Surgical Technique. DePuy Orthopaedics 17P (2000). |
Combs, S. et al., “The Effects of Barium Sulfate on the Polymerization Temperature and Shear Strength of Surgical Simplex P,” Clin. Ortho. and Related Res. pp. 287-291 (Jun. 4, 1979). |
Cotton, A. et al., “Percutaneous Vertebroplasty: State of the Art,” Scientific Exhibit, Radiographics 18:311-20 (1998). |
Dean, J.R. et al., “The Strengthening Effect of Percutaneous Vertebroplasty,” Clin Radiol. 55:471-476 (2000). |
Deramond, H. et al, “Percutaneous Vertebroplasty with Polymethylmethacrylate, Technique Indications and Results,” Radiologic Clinics of North America 36(3) (May 1988). |
Deramond, H. et al., “Temperature Elevation Caused by Bone cement Polymerization During Vertbroplasty,” Bone 25(2):17S-21S (1999). |
Grados F. et al.,“Long-Term Observations of Vertebral Osteoporotic Fractures Treated by Percutaneous Vertebroplasty,” Rheumatology 39:1410-14 (2000). |
Greenberg, “Filling Root Canals by an Injection Technique,” Dental Digest 61-63 (Feb. 1963). |
Greenberg, “Filling Root Canals in Deciduous Teeth by an Injection Technique,” Dental Digest 574-575 (Dec. 1961). |
Greig, D., “A New Syringe for Injecting Paraffin,” The Lancet 611-12 (Aug. 29, 1903). |
Hasenwinkel, J. et al., “A Novel High-Viscosity, Two-Solution Acrylic Bone Cement: Effect of Chemical Composition on Properties,” J. Biomed. Materials Research 47(1):36-45 (1999). |
Hasenwinkel, J. et al., “Effect of Initiation Chemistry on the Fracture Toughness, Fatigue Strength, and Residual Monomer Content of a Novel High-Viscosity, Two-Solution Acrylic Bone Cement,” J. Biomed. Materials Res. 59(3):411-21 (2001). |
Heini, P. et al., “Augmentation of Mechanical Properties in Osteoporatic Vertebral Bones—a Biomechanical Investigation of Vertebroplasty Efficacy With Different Bone Cements,” EUR Spine J. v. 10, pp. 164-171, Springer-Verlag (2001). |
Heini, P., “Percutaneous Transpedicular Vertebroplasty with PMMA: Operative Technique and Early Results,” EUR Spine J. v. 9, pp. 445-450, Springer-Verlag (2000). |
Heini, P., “The Use of a Side-Opening Injection Cannula in Vertebroplasty,” Spine 27(1):105-109 (2002). |
Heraeus Palacos ,R, 2008, Palacos R, high Viscosity Bone Cement. |
Hernandez et al., “Influence of Powder Particle Size Distribution on Complex Viscosity and Other Properties of Acrylic Bone Cement for Vertebroplasty and Kyphoplasty,” J. Biomed. Mat. Res. 77B:98-103 (2006). |
Hide, I. et al., “Percutaneous Vertebroplasty: History, Technique and current Perspectives,” Clin. Radiology 59:461-67 (2004). |
Hu, M. et al., “Kyphoplasty for Vertebral Compression Fracture Via a Uni-Pedicular Approach,” Pain Phys. 8:363-67 (2005). |
Ishikawa et al., “Effects of Neutral Sodium Hydrogen Phosphate on Setting Reaction and Mechanical Strength of Hydroxyapatite Putty,” J. Biomed. Mat. Res. 44:322-29 (199). |
Ishikawa et al., “Non-Decay Type Fast-Setting Calcium Phosphate Cement: Hydroxyapatite Putty Containing an Increased Amount of Sodium Alginate,” J. Biomed. Mat. Res. 36:393-99 (1997). |
Jasper, L.E. et al., “The Effect of Monomer-to-Powder Ratio on the Material Properties of Cranioplastic,” Bone 25(2):275-295 (1999). |
Jensen, Mary E. et al., “Percutaneous Polymethylmethacrylate Vertebroplasty in the Treatment of Osteoporotic Vertebral Body Compression Fractures: Technical Aspects,” AJNJ 18:1897-1904 (1997). |
Jensen, Mary E. et al., “Percutaneous Vertebroplasty in the Treatment of Osteoporotic Compression Fractures,” Spine Interventions 10(3):547-568 (2000). |
Johnson & Johnson Orthopaedics, The CEMVAC Method, Raynham, MA. |
Kallmes, D. et al., “Radiation Dose to the Operator During Vertebroplasty: Prospective Comparison of the Use of 1-cc Syringes Versus an Injection Device,” AJNR Am. J. Neuroradiol. 24:1257-60 (2003). |
Kaufmann et al, “Age of Fracture and Clinical Outcomes of Percutaneous Vertebroplasty,” Am. J. Neuroradiology 22:1860-63 (2001). |
Krause et al., “The Viscosity of Acrylic Bone Cements,” J. Biomed. Mat. Res. 16:219-43 (1982). |
Kuhn, Klaus-Dieter, Bone cements—Uptodate Comparison of Physical and Chemical Properties of Commercial Materials, Springer-Verlag Heidelberg Germany (2000). |
Kyphom Medical Professionals, KyphXProducts (Nov. 8, 2001). |
Lake, R., “The Restoration of the Inferior Turbinate Body by Paraffin Injections in the Treatment of Atrophic Rhinitis,” The Lancet 168-69 (Jan. 17, 1903). |
Lewis, “Properties of Acrylic Bone Cement: State of the Art Review,” J. Biomed. Mat. Res. Appl. Biomaterials 38(2):155-82 (p. 158 s.Viscosity) (1997). |
Lewis, “Toward Standardization of Methods of Determination of Fracture Properties of Acrylic Bone Cement and Statistical Analysis of Test Results,” J. Biomed. Research: Appl. Biomaterials 53(6):748-68 (2000). |
Lewis, G. et al., “Rheological Properties of Acrylic Bone Cement During Curing and the Role of the Size of the Powder Particles,” J. Biomed. Mat. Res. Appl. Biomat. 63(2):191-99 (2002). |
Li, C. et al., “Thermal Characterization of PMMA-Based Bone Cement Curing,” J. Materials Sci.: Materials in Medicine 15:84-89 (2004). |
Liang, B. et al., “Preliminary Clinical Application of Percutaneous Vertebroplasty,” Zhong Nan Da Xue Bao Yi Xue Ban 31(1):114-9 (2006)(abs. only). |
Lieberman, I.H. et al., “Initial Outcome and Efficiacy of Kyphoplasty in the Treatment of Painful Osteoporatic Vertebral Compression Fractures,” Spine 26(14:1631-38 (2001). |
Marks, Standard handbook for mechanical engineers, section 5 (Tenth ed. 1996). |
Mathis, John et al., “Percutaneous Vertebroplasty: A Developing Standard of Care for Vertebral Compression Fractures,” AJNR Am. J. Neurorad. 22:373-81 (2001). |
Medsafe Palacos R 2007, Data Sheet : Palacos R Bone cement with Garamycin pp. 1-7; http://www.medsafe.govt.nz/profs/datasheet/p/palacosbonecements.—htm. |
Mousa, W.F. et al., “Biological and Mechanical Properties of PMMA-Based Bioactive Bone Cements,” Biomaterials 21:2137-46 (2000). |
Noetzel, J. et al., Calcium Phosphate Cements in Medicine and Denistry—A Review of Literature, Schweiz Monatsschr Zehmed 115(12):1148-56 (2005)(abs. only). |
Nussbaum et al., “The Chemistry of Acrylic Bone Cements and Implications for Clinical Use in Image-Guided Therapy,” J. Vasc. Interv. Radiol. 15:121-26 (2004). |
O'Brien, J. et al., “Vertebroplasty in patients with Severe Vertebral Compression Fractures: A Technical Report,” AJNR 21:1555-58 (2000). |
Varela et al., “Closed Intramedullary Pinning of Metacarpal and Phalanx Fractures,” Orthopaedics 13(2):213-15 (1990). |
Vasconcelos, C., “Transient Arterial Hypotension Induced by Polymethyacrylated Injection During Percutaneous Vertebroplasty,” Letter to the Editor, JVIR (Aug. 2001). |
Walton, A, “Some Cases of Bone Cavities Treated by Stopping With Paraffin,” The Lancet 155 (Jan. 18, 1908). |
Weissman et al., “Trochanteric Fractures of the Femur Treatment with a Strong Nail and Early Weight-Bearing,” Clin. Ortho. & Related Res. 67:143-50 (1969). |
Wimhurst, J.A. et al., “Inflammatory Responses of Human Primary Macrophages to Particulate Bone Cements in Vitro,” J. Bone & Joint Surgery 83B:278-82 (2001). |
Wimhurst, J.A., et al., “The Effects of Particulate Bone Cements at the Bone-Implant Interface,” J. Bone & Joint Surgery pp. 588-92 (2001). |
Zapalowicz, K. et al., “Percutaneous Vertebroplasty with Bone Cement in the Treatment of Osteoporotic Vertebral Compression Fractures,” Ortopedia Traumatologia Rehabilitacja NR Jan. 2003. |
Mendizabal et al., Modeling of the curing kinetics of an acrylic bone cement modified with hydroxyapatite. International Journal of Polymeric Materials. 2003;52:927-938. |
Morejon et al., Kinetic effect of hydroxyapatite types on the polymerization of acrylic bone cements. International Journal of Polymeric Materials. 2003;52(7):637-654. |
Sreeja et al., Studies on poly(methyl methacrylate)/polystyrene copolymers for potential bone cement applications. Metals Materials and Processes. 1996;8(4):315-322. |
Yang et al., Polymerization of acrylic bone cement investigated by differential scanning calorimetry: Effects of heating rate and TCP content. Polymer Engineering and Science. Jul. 1997;1182-1187. |
Cromer, A, “Fluids”, Physics for the Life Sciences, 2:136-37 (1997). |
Lindeburg, M., “External Pressurized Liquids”, Mechanical Eng Ref Manual for the PE Exam, 10: May 1997. |
[No Author Listed] Simplex P Bone Cement. Stryker Corporation, 2 pages, publication date unknown. Retrieved from <http://www.stryker.com/en-us/products/Orthopaedics/BoneCementSubstitutes/index.htm>. |
[No Author Listed] Standard Specification for Acrylic Bone Cement. Designation F 451-08, ASTM International (2008), 11 pages. |
Juneja, BL, Plastic Deformation of Metals and Related Properties. Chapter 1. New Age International. p. 1-29, 2010. |
Kuehn et al., Acrylic bone cements: composition and properties. Orthop Clin North Am. Jan. 2005;36(1):17-28, v. |
Lu Orthopedic Bone Cement. Biomechanics and Biomaterials in Orthopedics. Ed. Poitout London: Springer-Verlag London Limited Jul. 2004 86-88. |
Su, W.-F, Polymer Size and Polymer Solutions. Principles of Polymer Design and Synthesis. Chapter 2, pp. 9-26, Springer-Verlag Berlin Heidelberg, 2013. |
European Search Report for Application No. 12181745.6, dated Sep. 25, 2012. (Docket No. 101896-1270) (9 pages).—( For JP55009242, DE136018, DE868497)). |
Japanese Office Action for Application No. 2009-517607, dated Aug. 9, 2011. (4 pages)—(for JP62-68893). |
Japanese Office Action for Application No. 2009-517607, dated Aug. 28, 2012. (4 pages)—(for JP0534760Y). |
Number | Date | Country | |
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20140046335 A1 | Feb 2014 | US |
Number | Date | Country | |
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60507290 | Sep 2003 | US |
Number | Date | Country | |
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Parent | 10947496 | Sep 2004 | US |
Child | 14057335 | US |