The present disclosure relates to surgical clamps and surgical clamp installation tools.
The statements in this section merely provide background information related to the present disclosure and may not constitute prior art.
Recently, there has been increased interest in employing surgical clamps to partition sections of a stomach. An example of a bariatric surgical clamp can be found in Jacobs et al., U.S. Pat. No. 8,920,305 (U.S. patent application Ser. No. 11/984,452), Jacobs et al., U.S. patent application Ser. No. 11/797,537 and Jacobs et al., U.S. Pat. No. 8,529,585 (U. S. patent application Ser. No. 13/017,666). The aforementioned patents/patent applications are incorporated by reference herein in their entirety for any purpose. In various instances, there is a need for a tool to install surgical clamps to partition sections of a stomach.
A clamp installation tool is provided. The clamp installation tool may have a longitudinal main body with an elongate member having a longitudinal support platform configured to support a clamp. The clamp installation tool may have a selectable retention mechanism with a plurality of bosses configured to be received into corresponding apertures of the clamp. The clamp installation tool may have a tip manipulation member coupled to a distal end of the longitudinal main body and arcuately articulable relative to the longitudinal main body.
Referring now to further example embodiments of the clamp installation tool, the clamp installation tool may include wherein the longitudinal main body is made of plastic. In various embodiments, the tool is a single-use tool. In various embodiments, the tool is reusable. The clamp installation tool may also have a sealing channel including a cylindrical tube receivable over the clamp installation tool and insertable into a trocar.
The selectable retention mechanism having a plurality of bosses may also include a distal boss extending from the longitudinal main body at a position closer to the tip manipulation member than an intermediate boss, and the intermediate boss extending from the longitudinal main body at a position farther from the tip manipulation member than the distal boss.
The longitudinal main body may also include a control rod channel configured to receive a control rod extending through the longitudinal main body and connecting the tip manipulation member to a control aspect and a main body attachment mechanism configured to attach to the tip manipulation member.
The main body attachment mechanism may include a cantilevered boss extending from the longitudinal main body, a first main body side flange and a second main body side flange extending from the cantilevered boss and defining a main body flange channel disposed between the first main body side flange and the second main body side flange, and a retention pin configured to retain the tip articulation member in attachment to the main body attachment mechanism.
The tip manipulation member may include a manipulation member main body extending outwardly from an attachment mechanism configured to connect to the main body attachment mechanism, and a retention hook extending from the manipulation member main body and configured to receive a tip retention aperture of a clamp.
The tip manipulation member may include an attachment mechanism having a first side flange and a second side flange extending outwardly from the manipulation member main body and spaced apart to provide a flange channel, an attachment mechanism flange web connecting the first side flange and the second side flange, a retention aperture disposed through the first side flange and the second side flange and configured to receive the retention pin of the main body attachment mechanism to permit articulation of the tip manipulation member about an axis provided by the retention pin and along an articulation path, and an offset articulation aperture spaced an articulation offset radius from the retention aperture and configured to connect to the control rod.
The tip manipulation member may include an angled tip including a safety dome at the outermost distal end of the tip manipulation member, the safety dome including a half-hemisphere.
A further clamp installation tool is provided. The further clamp installation tool may have a longitudinal main body with an elongate member having a longitudinal support platform configured to support a clamp, a selectable retention mechanism configured to connect to the clamp, and a tip manipulation member coupled to a distal end of the longitudinal main body and arcuately articulable relative to the longitudinal main body.
In various embodiments, a clamp installation tool may also include a control aspect configured to articulate the tip manipulation member. The control aspect may have a single use grip including an actuator configured to articulate the tip manipulation member, and a safety configured to inhibit operation of the actuator.
Moreover, the selectable retention member may also include an end point ramp configured to receive an aft end retention nub of the clamp. The selectable retention mechanism may include an aft nub capture boss having a clamp receiving passage configured to receive an aft end retention nub of the clamp. The selectable retention mechanism may have a lateral reaction plate including a reaction wall configured to press against an aft end retention nub of the clamp.
A method of bariatric clamp installation using a clamp installation tool is provided. The method may include connecting a distal retention aperture of a clamp to a distal boss of a selectable retention mechanism of the clamp installation tool, connecting an intermediate retention aperture of the clamp to an intermediate boss of the selectable retention mechanism of the clamp installation tool, and connecting a tip retention aperture of the clamp to a retention hook of a tip manipulation member of the clamp installation tool. In various instances, the clamp installation tool is configured in a coaxial configuration wherein the tip manipulation member is at least partially coaxial with a longitudinal main body of the clamp installation tool. The method may also include inserting the clamp installation tool through an incision and proximate to an organ to be clamped, actuating the clamp installation tool by a control aspect to an actuated configuration wherein the tip manipulation member is not at least partially coaxial with the longitudinal main body of the clamp installation tool, and grasping the clamp proximate to the tip retention aperture and selectably disconnecting the tip retention aperture from the clamp installation tool. The method may further include actuating the clamp installation tool by the control aspect to the coaxial configuration, and retracting the clamp installation tool from the body cavity leaving the clamp emplaced within the body cavity.
The method may further include inserting the clamp installation tool through a sealing channel having a cylindrical tube receivable over the clamp installation tool and insertable into a trocar within the incision, and inserting the combination of the sealing channel disposed over the clamp installation tool into the trocar.
Further embodiments and apparatuses, including other areas of applicability, will become apparent from the description provided herein. It should be understood that the description and specific examples are intended for purposes of illustration only and are not intended to limit the scope of the present disclosure in any manner.
For a more complete understanding of various embodiments of the present invention and the advantages thereof, reference is now made to the following brief description, taken in connection with the accompanying drawings and detailed description, wherein like reference numerals represent like parts, and in which:
The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses. It should be understood at the outset that although an exemplary implementation of the present invention is illustrated below, the present invention may be implemented using any number of techniques, whether currently known or in existence. The present invention should in no way be limited to the exemplary implementations, drawings, and techniques illustrated below, including the exemplary design and implementations illustrated and described herein. Additionally, the drawings contained herein are not necessarily drawn to scale, and may be provided in a variety of different dimensions, shapes and configurations. Any provided dimensions are provided only to illustrate a particular exemplary implementation, and should in no way be construed to limit the present invention absent an explicit recitation of such dimensions and then only with respect to the aspect or aspects reciting the dimension or dimensions.
Referring to
Some embodiments of the clamp installation tool 2 can be used to install the clamp 88 within an abdominal cavity in order to perform bariatric surgery. In particular, the clamp 88 can be positioned, closed, and latched to partition the stomach into a small vertical portion or pouch and an excluded section. The vertical pouch receives food, but the food is not able to enter the excluded section. Using the clamp installation tool 2 to engage with the clamp 88, the clamp 88 may be installed in a substantially vertical position on the stomach in one embodiment. That is, if the human patient having the clamp 88 installed were to stand upright, the longitudinal axis of the clamp 88 would be substantially parallel to the gravity vector. Thus, a passage forming section formed in the bottom of the stomach by the clamp 88 allows gastric juices to flow from the excluded section into the vertical pouch.
Various embodiments of clamps 88 and systems and methods for installation thereof are taught in U.S. Pat. No. 10,420,664 (U.S. patent application Ser. No. 14/836,621) entitled “Bariatric Clamp with Suture Portions, Magnetic Inserts, and Curvature” and incorporated by reference herein.
A method for clamping an internal organ can include inserting a surgical clamp 88 through an opening into a body of a living organism. Then the two elongated members of the surgical clamp 88 are positioned on opposite sides of an internal organ of the living organism. Closing and latching the surgical clamp 88 to partition a cavity inside the internal organ includes clamping the exterior of the internal organ with the two elongated members.
As mentioned above, the internal organ can be a human stomach. In this case, closing and latching the clamp 88 can include installing the clamp 88 in a substantially vertical or angled position with a passage forming section of the clamp 88 located towards a bottom of the stomach. This positioning can create a small, vertical stomach pouch and thereby limit the intake of food into an excluded section or portion of the stomach, but still allow gastric juices from the excluded portion of the stomach to flow into the vertical stomach pouch. This partitioning can alter the production of hormones, enzymes and chemicals that affect metabolism, energy levels, hunger, digestion, and absorption of nutrients that are affected by exclusion of gastric fundus and body of the stomach by the partitioning. Sheathing aspects of clamp 88 in silicone padding material may reduce trauma and/or necrosis of the stomach or other internal organ and enable successful reversal of the surgery. Thus, the method can further include reversing the surgery by removing the clamp 88.
Inserting the surgical clamp 88 can include performing natural orifice transluminal endoscopic surgery (NOTES). Alternatively, or additionally, it can include performing a combination of NOTES and an assistant trocar placed into an abdominal cavity. This combination can include two or more of a conventional, laparoscopic, NOTES, and one port technique. The NOTES technique can include at least one of transgastric, transvaginal, transrectal, transcolonic, or combinations thereof. The one port technique is used for the introduction of several instruments, and encompasses a one port abdominal (including umbilical), perineal, retroperitoneal approaches, or combinations thereof.
A method for clamping an internal organ can include engaging a surgical clamp 88 to a clamp installation tool 2. The surgical clamp 88 installation tool can be employed to insert the clamp 88 through an opening in a body cavity of a living organism. Then the tool can be employed to position the clamp 88 on opposite sides of an internal organ within the body cavity. The clamp 88 can be latched to fix it in position to partition the internal organ and the cavity inside the internal organ. The clamp 88 can be disengaged from the clamp installation tool 2, and the tool can be retracted from the body cavity. Moreover, additional steps may be employed to secure the clamp 88 in place, such as using sutures.
With reference now to
In various instances, a clamp installation tool 2 may be reusable. For instance, a clamp installation tool 2 may be used repeatedly during multiple procedures. As such, the articulating aspects of the clamp installation tool 2 (discussed elsewhere herein) may be repeatedly articulable. In further instances, a clamp installation tool 2 may be a single-use tool. In various instances, the articulating aspects of the single-use clamp installation tool 2 may not be repeatedly articulable, or may be formed of material having less resiliency than the reusable clamp installation tool 2.
A clamp installation tool 2 may have a longitudinal main body 4. The longitudinal main body 4 may provide a primary support of the clamp installation tool 2. In various instances, the longitudinal main body 4 comprises an elongate member, for instance, a relatively long and slender member shaped to be insertable through a trocar 84. The longitudinal main body 4 may support a selectable retention mechanism 8.
A selectable retention mechanism 8 may comprise an aspect extending from the longitudinal main body 4 and configured to selectably connect to and disconnect from a clamp 88. The selectable retention mechanism 8 may be engaged to a clamp 88 for insertion of the clamp 88 through a trocar 84 and positioning of the clamp 88 inside the body. Thereafter, all or part of the selectable retention mechanism 8 may be selectably disengaged from the clamp 88 in order to emplace different aspects of the clamp 88 in position relative to an organ to be clamped. The selectable retention mechanism 8 may comprise a plurality of bosses configured to be received into corresponding apertures of a clamp. In this manner, the selectable retention mechanism 8 is said to be “selectable.”
The longitudinal main body 4 may support a tip manipulation member 10. A tip manipulation member 10 may comprise a member coupled to the longitudinal main body 4, for instance, at a distal end of the longitudinal main body 4. The tip manipulation member 10 may be articulable relative to the longitudinal main body 4 in at least one plane of motion. The tip manipulation member 10 may be attached to a distal end of the longitudinal main body 4 and rotatable about the point of attachment in the same plane in which the longitudinal main body 4 lies (i.e., arcuately articulable relative to the longitudinal main body 4). For instance, the tip manipulation member 10 may be movable between different positions. For instance, the tip manipulation member 10 may be movable from being aligned co-axially with the longitudinal main body 4 so that longitudinal axes of each are coincident and parallel, to being aligned at an angle relative to the longitudinal main body 4, so that the longitudinal axes of each are at an angle, for instance, intersecting at a point and extending at an acute angle relative to one another, or a right angle, or an obtuse angle, or another angle as desired. In various instances, the tip manipulation member 10 is articulable from being aligned with the longitudinal main body 4 and being at a right angle to the longitudinal main body 4.
The longitudinal main body 4 may support a control aspect 12. For example, a control aspect 12 may provide a mechanism whereby an operator may grip the clamp installation tool 2 and/or may control the articulation of the tip manipulation member 10. In various instances, the control aspect 12 comprises scissor-style grips, although in further instances, different configurations are contemplated. The control aspect 12 may be coupled to the longitudinal main body 4, for instance, at a distal end of the longitudinal main body 4, such as an opposite distal end relative to the tip manipulation member 10. With momentary reference to
With specific reference now to
The longitudinal main body 4 may comprise a control rod channel 16, such as that shown in
The longitudinal main body 4 may comprise a main body attachment mechanism 6 such as that shown in
With reference to
The selectable retention mechanism 8 may comprise bosses extending in a direction normal to the plane of the longitudinal support platform 14. In instances in which the longitudinal support platform 14 is non-planar, the selectable retention mechanism 8 may comprise bosses extending in a direction normal to a tangent of the longitudinal support platform 14. In various embodiments, the selectable retention mechanism 8 may comprise bosses extending radially outward with respect to the longitudinal main body 4.
Yet furthermore, the selectable retention mechanism 8 may comprise one or more bosses with apertures therein and in yet further instances may include one or more plates extending in a direction normal to a tangent of the longitudinal support platform and oriented laterally (e.g., generally perpendicular to the longitudinal axis of the longitudinal main body).
The selectable retention mechanism 8 may comprise an intermediate boss 26 and a distal boss 28. The intermediate boss 26 may comprise a trapezoidal boss. For instance, the intermediate boss 26 may comprise a rectangular boss. In further instances, the intermediate boss 26 may comprise a square boss, or a cylindrical boss, or an arbitrarily shaped boss, or any shape as desired. The intermediate boss 26 may comprise a boss formed to have a shape corresponding to an aperture of the clamp 88 and configured to be received by the aperture of the clamp 88. The intermediate boss 26 may be located between a distal boss 28 and the control aspect 12 (
The distal boss 28 may comprise a trapezoidal boss. For instance, the distal boss 28 may comprise a square boss. In further instances, the distal boss 28 may comprise a rectangular boss, or a cylindrical boss, or an arbitrarily shaped boss, or any shape as desired. The distal boss 28 may comprise a boss shaped to have a shape corresponding to an aperture of the clamp 88 and configured to be received by the aperture of the clamp 88. The distal boss 28 may be located between an intermediate boss 26 of the selectable retention mechanism 8 and the tip manipulation member 10 (
With particular emphasis on
With particular emphasis on
With particular emphasis on
With particular emphasis on
Turning now to
Attention is directed to
The tip manipulation member 10 may include a retention hook 32 (
The tip manipulation member 10 may comprise a tip manipulation member main body 33 (
The tip manipulation member 10 may comprise an angled tip 34. The angled tip 34 may comprise a cylinder that is unitary with the tip manipulation member main body 33 and extending outwardly from the tip manipulation member main body 33 at an angle. For example, the angled tip 34 may be at an opposite end of the tip manipulation member main body 33 from the tip manipulation member attachment mechanism 36. The angled tip 34 may form aspects of the retention hook 32, such as bounding one or more aperture configured to receive the clamp 88 in mechanical communication.
Finally, the tip manipulation member 10 may comprise a tip manipulation member attachment mechanism 36 (
With reference to
A cantilevered boss 18 may comprise a boss extending at least partially coaxially outward from the longitudinal main body 4 at least partially longitudinally. The boss may cantilever from a distal end of the longitudinal main body 4, for instance, the end opposite the control aspect 12 (
A first main body side flange 20 and a second main body side flange 22 may extend further distally outward from the cantilevered boss 18. The first main body side flange 20 and the second main body side flange 22 may comprise cantilevered flanges extending parallel to one another, such as to receive, or to be received into an aspect of the tip manipulation member 10, such as the tip manipulation member attachment mechanism 36 (
A main body flange channel 23 may comprise a channel defined by the first main body side flange 20 and the second main body side flange 22 between the first main body side flange 20 and the second main body side flange 22. In various embodiments, the tip manipulation member attachment mechanism 36 (
Finally, the main body attachment mechanism 6 may comprise a retention pin 24 as shown in
With reference to
With reference to
With particular focus now on
In various embodiments, the retention hook 32 further comprises a clamp channel 43, as shown in
Finally, and with reference to
Returning attention to
Focusing on
A tip angle 70 may be defined between the angled tip minor longitudinal axis 48 and the tip manipulation member major longitudinal axis 30. In various embodiments, the tip angle 70 comprises an acute angle. In further instances, the tip angle 70 comprises a zero degree angle, such that the angled tip minor longitudinal axis 48 and the tip manipulation member major longitudinal axis 30 are coincident. In further instances, the tip angle 70 comprises a zero degree angle, such that the angled tip minor longitudinal axis 48 and the tip manipulation member major longitudinal axis 30 are parallel. In still further instances, the tip angle 70 comprises an obtuse angle, or a right angle, or any angle as desired. In various instances, the tip angle 70 is selected such that the clamp installation tool 2 is passable through a trocar 84 when in the coaxial configuration 80 (
In various embodiments, the angled tip 34 may comprise a relief inset 50. For instance, with reference to
Turning now to
Referencing
Referencing
With reference to
The tip manipulation member attachment mechanism 36 may also include an offset articulation aperture 62. The offset articulation aperture 62 may extend laterally (e.g., perpendicular to the tip manipulation member major longitudinal axis 30) through one or both of the first side flange 52 and the second side flange 54. The offset articulation aperture 62 is configured to receive a portion of a control aspect 12 (
Finally, with reference to
With specific reference to
The sealing channel 86 may comprise a sealing channel fastener 95. A sealing channel fastener 95 may comprise a mechanism whereby the sealing channel 86 is selectably engagable to the clamp installation tool 2. For example, the sealing channel 86 may be frictionally engagable to the clamp installation tool 2. In various embodiments, the sealing channel fastener 95 comprises a finger-tightenable bolt extending inwardly through the sealing channel 86 into the internal area of the sealing channel 86 and capable of pressing against the clamp installation tool 2.
Finally, and with reference to
As mentioned, the clamp 88 may have a distal retention aperture 96, an intermediate retention aperture 98, and a tip retention aperture 100. The clamp 88 may be installed onto the clamp installation tool 2, with the distal retention aperture 96 attached to the distal boss 28 of the selectable retention mechanism 8 of the clamp installation tool 2, with the intermediate retention aperture 98 attached to the intermediate boss 26 of the selectable retention mechanism 8 of the clamp installation tool 2, and with the tip retention aperture 100 attached to the retention hook 32 of the tip manipulation member 10 of the clamp installation tool 2. The clamp installation tool 2 may be configured in the coaxial configuration 80 (
In further instances, the clamp 88 may have an aft end retention nub 202 comprising an extension projecting normal to a surface of the clamp 88 at an end of the clamp 88. The aft end retention nub 202 may be receivable by an aspect of the selectable retention mechanism 8, such as an end point ramp 200 (
In still further instances, the clamp 88 may be retained proximate to the clamp installation tool 2 by one or more clip 244 (
A number of additional and alternative embodiments of the surgical clamps, installation tools and methods for installing can have characteristics that are different from those described above. For example, it is envisioned that a surgical clamp 88 not intended for bariatric surgery might not have a passage forming section, and that such a clamp 88 might be smaller or larger, depending on the purpose of the clamp 88. For example, the clamp 88 can be one-tenth of an inch in length to partition a blood vessel, or twenty-two centimeters in length to partition a stomach. Moreover, the clamp 88 can be configured to partition any internal organ, and can vary in length accordingly between these two example lengths, or be longer or shorter as required. Moreover, it is envisioned that the clamp installation tool 2 can be integrated with an endoscope and/or surgical robot and that appropriate robotic elements can be included in place of or in addition to those described above. These and other features can be included in various combinations without departing from the scope of the invention as defined in the following aspects.
This application claims the benefit of and priority from U.S. Provisional Patent Application Ser. No. 62/536,364, filed Jul. 24, 2017, entitled “IMPROVED CLAMP INSTALLATION TOOL” and naming C. Kenneth French as an inventor, the entirety of which is incorporated herein by reference for all purposes.
| Number | Name | Date | Kind |
|---|---|---|---|
| 600887 | Pettit | Mar 1898 | A |
| 3254651 | Collito | Jun 1966 | A |
| 3316914 | Collito | May 1967 | A |
| 3417752 | Butler | Dec 1968 | A |
| 3766925 | Rubricius | Oct 1973 | A |
| 4060089 | Noiles | Nov 1977 | A |
| 4274415 | Kanamoto et al. | Jun 1981 | A |
| 4346869 | MacNeill | Aug 1982 | A |
| 4390019 | Leveen et al. | Jun 1983 | A |
| 4414721 | Hufnagel | Nov 1983 | A |
| 4428374 | Auburn | Jan 1984 | A |
| 4458681 | Hopkins | Jul 1984 | A |
| 4548202 | Duncan | Oct 1985 | A |
| 4558699 | Bashour | Dec 1985 | A |
| 4610250 | Green | Sep 1986 | A |
| 4803985 | Hill | Feb 1989 | A |
| 4950284 | Green et al. | Aug 1990 | A |
| 4976721 | Blasnik et al. | Dec 1990 | A |
| 5062846 | Oh et al. | Nov 1991 | A |
| 5074868 | Kuzmak | Dec 1991 | A |
| 5127915 | Mattson | Jul 1992 | A |
| 5156609 | Nakao et al. | Oct 1992 | A |
| 5163945 | Ortiz et al. | Nov 1992 | A |
| 5226429 | Kuzmak | Jul 1993 | A |
| 5234454 | Bangs | Aug 1993 | A |
| 5236437 | Wilk et al. | Aug 1993 | A |
| 5250058 | Miller et al. | Oct 1993 | A |
| 5327914 | Shlain | Jul 1994 | A |
| 5345949 | Shlain | Sep 1994 | A |
| 5423831 | Nates | Jun 1995 | A |
| 5428871 | Iosif | Jul 1995 | A |
| 5456714 | Owen | Oct 1995 | A |
| 5464416 | Steckel | Nov 1995 | A |
| 5549621 | Bessler et al. | Aug 1996 | A |
| 5575802 | McQuilkin et al. | Nov 1996 | A |
| 5766189 | Matsuno | Jun 1998 | A |
| 5901993 | Lowery et al. | May 1999 | A |
| 6036704 | Yoon | Mar 2000 | A |
| 6102922 | Jakobsson | Aug 2000 | A |
| 6179850 | Goradia | Jan 2001 | B1 |
| 6273903 | Wilk | Aug 2001 | B1 |
| 6454700 | Forsell | Sep 2002 | B1 |
| 6464710 | Foster | Oct 2002 | B1 |
| 6503258 | Filho | Jan 2003 | B1 |
| 6537289 | Kayan et al. | Mar 2003 | B1 |
| 6572629 | Kalloo et al. | Jun 2003 | B2 |
| 6694982 | Latour | Feb 2004 | B2 |
| 6716226 | Sixto, Jr. et al. | Apr 2004 | B2 |
| 6814742 | Kimura et al. | Nov 2004 | B2 |
| 6869438 | Chao | Mar 2005 | B2 |
| 6926724 | Chu | Aug 2005 | B1 |
| 6981978 | Gannoe | Jan 2006 | B2 |
| 7022126 | De Canniere | Apr 2006 | B2 |
| 7105000 | McBrayer | Sep 2006 | B2 |
| 7135032 | Åkerfeldt | Nov 2006 | B2 |
| 7214233 | Gannoe et al. | May 2007 | B2 |
| 7223229 | Inman et al. | May 2007 | B2 |
| 7232445 | Kortenbach et al. | Jun 2007 | B2 |
| 7261725 | Binmoeller | Aug 2007 | B2 |
| 7288100 | Molina Trigueros | Oct 2007 | B2 |
| 7320701 | Haut et al. | Jan 2008 | B2 |
| 7338503 | Rosenberg et al. | Mar 2008 | B2 |
| 7416528 | Crawford et al. | Aug 2008 | B2 |
| 7645285 | Cosgrove et al. | Jan 2010 | B2 |
| 7691053 | Viola | Apr 2010 | B2 |
| 7758493 | Gingras | Jul 2010 | B2 |
| 7871416 | Phillips | Jan 2011 | B2 |
| 7892244 | Monassevitch et al. | Feb 2011 | B2 |
| 8287559 | Barker et al. | Oct 2012 | B2 |
| 8382775 | Bender et al. | Feb 2013 | B1 |
| 8529585 | Jacobs et al. | Sep 2013 | B2 |
| 8920305 | Jacobs et al. | Dec 2014 | B2 |
| 9808257 | Armenteros et al. | Nov 2017 | B2 |
| 9814614 | Jacobs et al. | Nov 2017 | B2 |
| 10369036 | Jacobs et al. | Aug 2019 | B2 |
| 10420664 | Armenteros et al. | Sep 2019 | B2 |
| 10456141 | Armenteros et al. | Oct 2019 | B2 |
| 20020022851 | Kalloo et al. | Feb 2002 | A1 |
| 20020055757 | Torre | May 2002 | A1 |
| 20020082625 | Huxel et al. | Jun 2002 | A1 |
| 20020138086 | Sixto et al. | Sep 2002 | A1 |
| 20040010271 | Kortenbach | Jan 2004 | A1 |
| 20040059289 | Garza Alvarez | Mar 2004 | A1 |
| 20040082963 | Gannoe et al. | Apr 2004 | A1 |
| 20040097989 | Molina Trigueros | May 2004 | A1 |
| 20040116945 | Sharkawy et al. | Jun 2004 | A1 |
| 20040147942 | Chao | Jul 2004 | A1 |
| 20050075652 | Byrum et al. | Apr 2005 | A1 |
| 20050119674 | Gingras | Jun 2005 | A1 |
| 20050125014 | Duluco et al. | Jun 2005 | A1 |
| 20050149069 | Bertolero et al. | Jul 2005 | A1 |
| 20050192599 | Demarais | Sep 2005 | A1 |
| 20050197714 | Sayet | Sep 2005 | A1 |
| 20050216042 | Gertner | Sep 2005 | A1 |
| 20050250980 | Swanstrom et al. | Nov 2005 | A1 |
| 20050251158 | Saadat et al. | Nov 2005 | A1 |
| 20050277959 | Cosgrove et al. | Dec 2005 | A1 |
| 20060011699 | Olson et al. | Jan 2006 | A1 |
| 20060074440 | Garner | Apr 2006 | A1 |
| 20060157067 | Saadat et al. | Jul 2006 | A1 |
| 20060178564 | Jones | Aug 2006 | A1 |
| 20060200179 | Barker et al. | Sep 2006 | A1 |
| 20060217757 | Horndeski | Sep 2006 | A1 |
| 20060241653 | Jones | Oct 2006 | A1 |
| 20060252983 | Lembo et al. | Nov 2006 | A1 |
| 20060264981 | Viola | Nov 2006 | A1 |
| 20060264982 | Viola et al. | Nov 2006 | A1 |
| 20060264987 | Sgro | Nov 2006 | A1 |
| 20070016231 | Jambor et al. | Jan 2007 | A1 |
| 20070021761 | Phillips | Jan 2007 | A1 |
| 20070032807 | Ortiz et al. | Feb 2007 | A1 |
| 20070088190 | Appel | Apr 2007 | A1 |
| 20070088191 | Appel | Apr 2007 | A1 |
| 20070149989 | Santilli et al. | Jun 2007 | A1 |
| 20070167962 | Gannoe et al. | Jul 2007 | A1 |
| 20070185373 | Tsonton | Aug 2007 | A1 |
| 20070213747 | Monassevitch et al. | Sep 2007 | A1 |
| 20070233005 | McMichael | Oct 2007 | A1 |
| 20070250090 | Makower | Oct 2007 | A1 |
| 20070265644 | Ichihara et al. | Nov 2007 | A1 |
| 20070282356 | Sonnenschein | Dec 2007 | A1 |
| 20080033457 | Francischelli et al. | Feb 2008 | A1 |
| 20080039879 | Chin et al. | Feb 2008 | A1 |
| 20080082114 | McKenna et al. | Apr 2008 | A1 |
| 20080092910 | Brooks | Apr 2008 | A1 |
| 20080177292 | Jacobs et al. | Jul 2008 | A1 |
| 20080208324 | Glithero et al. | Aug 2008 | A1 |
| 20080269788 | Phillips | Oct 2008 | A1 |
| 20080275480 | Jacobs | Nov 2008 | A1 |
| 20080287975 | Weaner | Nov 2008 | A1 |
| 20080287976 | Weaner et al. | Nov 2008 | A1 |
| 20080319435 | Rioux et al. | Dec 2008 | A1 |
| 20090012542 | N'diaye | Jan 2009 | A1 |
| 20090137870 | Bakos et al. | May 2009 | A1 |
| 20090138009 | Viswanathan et al. | May 2009 | A1 |
| 20090198266 | Cesare | Aug 2009 | A1 |
| 20090240105 | Smit | Sep 2009 | A1 |
| 20090281377 | Newell | Nov 2009 | A1 |
| 20090292163 | Kassab et al. | Nov 2009 | A1 |
| 20100030017 | Baker et al. | Feb 2010 | A1 |
| 20100082050 | Kassab et al. | Apr 2010 | A1 |
| 20100168768 | Sonnenschein | Jul 2010 | A1 |
| 20100174295 | Kassab et al. | Jul 2010 | A1 |
| 20100312050 | Forsell | Dec 2010 | A1 |
| 20110046641 | Kassab et al. | Feb 2011 | A1 |
| 20110092993 | Jacobs | Apr 2011 | A1 |
| 20110092998 | Hirszowicz et al. | Apr 2011 | A1 |
| 20110098732 | Jacobs | Apr 2011 | A1 |
| 20110112434 | Ghabrial | May 2011 | A1 |
| 20110172767 | Rathi | Jul 2011 | A1 |
| 20110190791 | Jacobs | Aug 2011 | A1 |
| 20110245593 | Kassab et al. | Oct 2011 | A1 |
| 20110270016 | Snow | Nov 2011 | A1 |
| 20120095484 | Dominguez | Apr 2012 | A1 |
| 20120123463 | Jacobs | May 2012 | A1 |
| 20120215061 | Fridez et al. | Aug 2012 | A1 |
| 20130261382 | Acosta | Oct 2013 | A1 |
| 20140012293 | Bertolero et al. | Jan 2014 | A1 |
| 20140046345 | Armenteros | Feb 2014 | A1 |
| 20140074131 | Armenteros | Mar 2014 | A1 |
| 20140200598 | Kassab et al. | Jul 2014 | A1 |
| 20140350664 | Tozzi | Nov 2014 | A1 |
| 20150038794 | Pattison | Feb 2015 | A1 |
| 20150051624 | Jacobs | Feb 2015 | A1 |
| 20150150595 | Pattison | Jun 2015 | A1 |
| 20160058594 | Armenteros | Mar 2016 | A1 |
| 20170258619 | Jacobs et al. | Sep 2017 | A1 |
| 20170360447 | Armenteros et al. | Dec 2017 | A1 |
| 20180008447 | Jacobs et al. | Jan 2018 | A1 |
| 20190358067 | Jacobs et al. | Nov 2019 | A1 |
| 20190358068 | Armenteros et al. | Nov 2019 | A1 |
| 20200054340 | Armenteros et al. | Feb 2020 | A1 |
| Number | Date | Country |
|---|---|---|
| 201399422 | Feb 2017 | AU |
| 2018247195 | Nov 2018 | AU |
| 2017200911 | Dec 2018 | AU |
| 2015306617 | Feb 2020 | AU |
| 2880155 | Feb 2014 | CA |
| 105007838 | Oct 2015 | CN |
| 107072660 | Aug 2017 | CN |
| 109316221 | Feb 2019 | CN |
| 30415 | Dec 2016 | CO |
| 19751733 | Dec 1998 | DE |
| 29822558 | Feb 1999 | DE |
| 0 201 344 | Nov 1986 | EP |
| 0 220 643 | May 1987 | EP |
| 1 397 998 | Mar 2004 | EP |
| 1 547 529 | Jun 2005 | EP |
| 1 600 108 | Nov 2005 | EP |
| 1 749 506 | Feb 2007 | EP |
| 1 806 101 | Jul 2007 | EP |
| 1 882 451 | Jan 2008 | EP |
| 2 528 512 | Dec 2012 | EP |
| 3 185 784 | Jul 2017 | EP |
| 3 398 538 | Nov 2018 | EP |
| 2 882 354 | Sep 2020 | EP |
| 9289989 | Nov 1997 | JP |
| 2002085414 | Mar 2002 | JP |
| 2007044517 | Feb 2007 | JP |
| 2007097664 | Apr 2007 | JP |
| 2007159794 | Jun 2007 | JP |
| 371177 | Jan 2020 | MX |
| 704680 | May 2017 | NZ |
| 2262896 | Jun 2005 | RU |
| 2386455 | Apr 2010 | RU |
| 2626875 | Aug 2017 | RU |
| 2703508 | Oct 2019 | RU |
| 2019131501 | Nov 2019 | RU |
| 6733 | Dec 2019 | SA |
| 158414 | Dec 2016 | TH |
| 174586 | Mar 2018 | TH |
| WO-8001752 | Sep 1980 | WO |
| WO-1998033437 | Aug 1998 | WO |
| WO-9833437 | Aug 1998 | WO |
| WO-199911179 | Mar 1999 | WO |
| WO-9911179 | Mar 1999 | WO |
| WO-2000078234 | Dec 2000 | WO |
| WO-0078234 | Dec 2000 | WO |
| WO-2000076432 | Dec 2000 | WO |
| WO-2002064041 | Aug 2002 | WO |
| WO-2004017839 | Mar 2004 | WO |
| WO-2005046453 | May 2005 | WO |
| WO-2006033385 | Mar 2006 | WO |
| WO-2006044640 | Apr 2006 | WO |
| WO-2007013995 | Feb 2007 | WO |
| WO-2008081436 | Jul 2008 | WO |
| WO-2008091537 | Jul 2008 | WO |
| WO-2008101048 | Aug 2008 | WO |
| WO-2011094700 | Aug 2011 | WO |
| WO-2014026170 | Feb 2014 | WO |
| WO-2016033221 | Mar 2016 | WO |
| WO-2018009669 | Jan 2018 | WO |
| WO-2019023279 | Jan 2019 | WO |
| Entry |
|---|
| U.S. Appl. No. 15/642,919, Non-Final Office Action dated Aug. 6, 2019, 22 pgs. |
| International Pat. Appl. No. PCT/US2018/043562, International Preliminary Report on Patentability dated Jan. 28, 2020, 9 pgs. |
| U.S. Appl. No. 15/642,919, Final Office Action dated Jan. 29, 2020, 22 pgs. |
| U.S. Appl. No. 15/677,227, Non-Final Office Action dated Nov. 27, 2019, 9 pgs. |
| U.S. Appl. No. 14/836,621, Advisory Action dated Apr. 10, 2019, 6 pgs. |
| U.S. Appl. No. 14/836,621, Notice of Allowance, dated Apr. 30, 2019, 13 pgs. |
| U.S. Appl. No. 13/963,998, Final Office Action dated Feb. 7, 2019, 36 pgs. |
| U.S. Appl. No. 14/836,621, Final Office Action dated Jan. 31, 2019, 11 pgs. |
| “A Pathway to Endoscopic Bariatric Therapies” Gastrointestinal Endoscopy Journal, www.giejournal.org, vol. 74, No. 5 (2011), pp. 943-953. |
| An espace English abstract of DE-19751733 (Dec. 10, 1998). |
| An espace English abstract of JP-2007097664-A (Apr. 19, 2007). |
| An espace English abstract of JP-2007159794-A (Jun. 28, 2007). |
| An espace English abstract of JP-9289989-A (Nov. 11, 1997). |
| Certificate of Grant of copending Singapore Application No. SG11201500782R, dated Jun. 15, 2017. |
| Copending International Patent Application No. PCT/US2013/54435 filed Aug. 9, 2013, entitled “Polymer Overmolded Bariatric Clamp and Method of Installing”; First Named Inventor: Armenteros, Jesus R. |
| Copending International Patent Application No. PCT/US2015/47005 filed Aug. 26, 2015; First Named Inventor: Moises Jacobs. |
| Copending International Patent Application No. PCT/US17/40908 filed Jul. 6, 2017; First Named Inventor: Jesus R. Armenteros. |
| Copending U.S. Appl. No. 13/963,998, filed Aug. 9, 2013; Inventors: Jesus R. Armenteros et al. |
| Copending U.S. Appl. No. 14/021,720, filed Sep. 9, 2013; Inventors: Jesus R. Armenteros et al. |
| Copending U.S. Appl. No. 14/531,300, filed Nov. 3, 2014; Inventors: Moises Jacobs et al. |
| Copending U.S. Appl. No. 14/836,621, filed Aug. 26, 2015; First-Named Inventor: Jesus R. Armenteros. |
| Copending U.S. Appl. No. 15/605,812, filed May 25, 2017; First-Named Inventor: Moises Jacobs. |
| Copending U.S. Appl. No. 15/642,919, filed Jul. 6, 2017; First-Named Inventor: Moises Jacobs. |
| Copending U.S. Appl. No. 15/677,227, filed Aug. 15, 2017; First-Named Inventor: Jes\'fas R. Armenteros. |
| Copending U.S. Appl. No. 62/042,117, filed Aug. 26, 2014; first named inventor: Jesus R. Armenteros. |
| Copending U.S. Appl. No. 62/118,455, filed Feb. 19, 2015; first named inventor: Jesus R. Armenteros. |
| Copending U.S. Appl. No. 62/536,364, filed Jul. 24, 2017; first named inventor: C. Kenneth French. |
| Copending U.S. Appl. No. 62/359,529, filed Jul. 7, 2016; first named inventor: Jesus R. Armenteros. |
| Final Office Action cited in U.S. Appl. No. 11/984,452 dated Jan. 30, 2014. |
| Final Office Action cited in U.S. Appl. No. 11/984,452, dated Jan. 31, 2013 (12 pgs). |
| Final Office Action cited in U.S. Appl. No. 11/964,452, dated Mar. 26, 2010 (11 pgs). |
| Final Office Action for U.S. Appl. No. 13/963,998 dated Apr. 18, 2017 (16 pgs). |
| Final Office Action for U.S. Appl. No. 14/021,720 dated Jul. 14, 2016 (14 pgs). |
| freedictionary.com definition of “stretchable”, accessed on Aug. 2, 2017, http://www.thefreedictionary.com/stretchable. |
| Geoffrey W.J. Vertical Ligated Gastroplasty by Clamp, Cut and Suture: A Series of 504 Cases Dating Back to 1977.0bes Surg. Nov. 1994;4(4):344-348, PMID: 10742799 [PubMed-as supplied by publisher], 5 pgs. |
| Helmut Kapczynski, Surgical Instruments 101, An Introduction to Kmedic Certified Instruments, Kmedic, Inc., 1997, Northvale, New Jersey (181 Pages). |
| International Preliminary Report on Patentability cited in PCT/US2008/000644, dated Nov. 17, 2009 (4 pgs). |
| International Preliminary Report on Patentability cited in PCT/US2011/023205, dated Jul. 31, 2012 (10 pgs). |
| International Preliminary Report on Patentability cited in PCT/US2013/054435, dated Jun. 9, 2015 (9 pgs). |
| International Preliminary Report on Patentability of PCT/US2015/047005, dated Mar. 9, 2017. |
| International Search Report and Written Opinion of PCT/US17/40908, dated Sep. 11, 2017. |
| International Search Report and Written Opinion of PCT/US18/43562, dated Nov. 21, 2018, 17 pgs. |
| International Search Report and Written Opinion of PCT/US2015/047005, dated Nov. 27, 2015. |
| International Search Report cited in PCT/US2013/54435, dated Jan. 16, 2014 (2 pgs). |
| International Search Report dated Nov. 27, 2015 in corresponding PCT Appln. PCT/US2015/047005, 13 pages. |
| Jacobs, Moises, et al., Presentation, “A Novel Procedure for Bariatric and Metabolic Surgery, a weight loss clamp” Apr. 2015 (20 pgs). |
| Machine Translation of DE29822558 U1. |
| Notice of Acceptance in AU Application No. 2013299422, (dated Nov. 1, 2016), 2 pgs. |
| Notice of Allowance for U.S. Appl. No. 14/021,720 dated May 16, 2016 (5 pgs). |
| Notice of Allowance for U.S. Appl. No. 14/021,720 dated Dec. 27, 2016 (8 pgs). |
| Notice of Allowance for U.S. Appl. No. 14/531,300 dated Apr. 12, 2016 (7 pgs). |
| Notice of Allowance for U.S. Appl. No. 14/531,300 dated Oct. 24, 2016 (7 pgs). |
| Notice of Allowance in U.S. Appl. No. 11/984,452 dated Jun. 30, 2014. |
| Office Action cited in U.S. Appl. No. 11/984,452, dated May 20, 2013 (14 pgs). |
| Office Action cited in U.S. Appl. No. 11/984,452, dated Aug. 6, 2012 (10 pgs). |
| Office Action cited in U.S. Appl. No. 11/984,452, dated Aug. 5, 2009 (13 pgs). |
| Office Action for U.S. Appl. No. 13/963,998 dated Nov. 15, 2016 (13 pgs). |
| Office Action for U.S. Appl. No. 14/021,720 dated Jan. 2, 2015 (8 pgs). |
| Office Action for U.S. Appl. No. 14/021,720 dated Jun. 12, 2015 (9 pgs). |
| Office Action for U.S. Appl. No. 14/021,720 dated Oct. 7, 2014 (6 pgs). |
| Office Action for U.S. Appl. No. 11/797,537 dated Jul. 16, 2009 (10 pages). |
| Office Action for U.S. Appl. No. 11/797,537 dated Jan. 7, 2010 (9 pages). |
| Office Action for U.S. Appl. No. 14/531,300 dated Oct. 19, 2015 (7 pages). |
| Office Action for U.S. Appl. No. 14/531,300 dated Dec. 29, 2014 (14 pages). |
| Office Action Restriction Requirement for U.S. Appl. No. 13/963,998 dated Jun. 1, 2016 (8 pgs). |
| Office Action, Translation and Search Report in Russian Patent Application No. 2015108054, (dated May 27, 2016), 6 pgs. |
| Patent Abstract of Japan of JP-2002085414-A (Mar. 26, 2002). |
| Patent Abstract of Japan of JP-2007044517-A (Feb. 22, 2007). |
| PCT International Search Report and Written Opinion cited in Patent Application No. PCT/US2011/023205, dated Apr. 5, 2011 (13 pgs). |
| PCT International Search Report cited in Patent Application No. PCT/US2008/000644, dated Jul. 7, 2008 (1 pg). |
| Publication of Co-Pending Singapore Patent Application No. 10201704073T, Jun. 29, 2017, 1 pg. |
| Rule 312 Amendment for U.S. Appl. No. 14/531,300 dated Jun. 8, 2016 (3 pgs). |
| Search Report of copending Singapore Application No. SG11201500782R, dated Oct. 8, 2015. |
| Shalimov, et al., Intestinal Track Surgery, Kiev, “Dzorovya”, 1987, c. 558, 2 pgs. |
| U.S. Appl. No. 13/963,998, Final Office Action dated Apr. 18, 2018 (29 pgs). |
| U.S. Appl. No. 13/963,998, Non-Final Office Action dated Aug. 8, 2018 (36 pgs). |
| U.S. Appl. No. 13/963,998, Non-Final Office Action dated Aug. 21, 2017 (23 pgs). |
| U.S. Appl. No. 15/605,812, Final Office Action dated Jan. 19, 2018 (18 pages). |
| U.S. Appl. No. 15/605,812, Non-Final Office Action dated May 18, 2018 (27 pages). |
| U.S. Appl. No. 15/605,812, Non-Final Office Action dated Aug. 7, 2017 (14 pages). |
| U.S. Appl. No. 14/836,621, Final Office Action dated Mar. 16, 2018 (17 pgs.). |
| U.S. Appl. No. 14/836,621, Non-Final Office Action dated Jul. 6, 2018 (13 pgs). |
| U.S. Appl. No. 14/836,621, Non-Final Office Action dated Aug. 22, 2017 (16 pgs). |
| Written Opinion cited in PCT/US2008/000644, dated Jul. 7, 2008 (3 pgs). |
| Written Opinion cited in PCT/US2013/54435 dated Jan. 16, 2014 (8 pgs). |
| Written Opinion of copending Singapore Application No. SG11201500782R, dated Oct. 12, 2015. |
| U.S. Appl. No. 15/642,919, filed Jul. 6, 2017, Inflatable Bariatric Clamp. |
| U.S. Appl. No. 15/677,227, filed Aug. 15, 2017, Surgical Clamp and Surgical Clamp Installation Tool. |
| U.S. Appl. No. 16/533,309, filed Aug. 6, 2019, Bariatric Clamp With Suture Portions, Magnetic Inserts and Curvature. |
| U.S. Appl. No. 16/531,974, filed Aug. 5, 2019, Vertically Oriented Band for Stomach. |
| U.S. Appl. No. 16/664,447, filed Oct. 25, 2019, Polymer Overmolded Bariatric Clamp and Method of Installing. |
| U.S. Appl. No. 15/642,919, Non-Final Office Action dated Apr. 30, 2020, 30 pgs. |
| PCT International Patent Application No. PCT/US2017/040908, International Preliminary Report on Patentability and Notification dated Jan. 17, 2019, 9 pgs. |
| U.S. Appl. No. 15/605,812, Final Office Action dated Dec. 27, 2018, 22 pgs. |
| U.S. Appl. No. 13/963,998, Notice of Allowance, dated May 30, 2019, 11 pgs. |
| U.S. Appl. No. 15/677,227, Non-Final Office Action, dated Jun. 13, 2019, 10 pgs. |
| U.S. Appl. No. 15/642,919, Final Office Action dated Oct. 28, 2020, 21 pgs. |
| Number | Date | Country | |
|---|---|---|---|
| 20190021892 A1 | Jan 2019 | US |
| Number | Date | Country | |
|---|---|---|---|
| 62536364 | Jul 2017 | US |