Surgical instrument

Information

  • Patent Grant
  • 9011450
  • Patent Number
    9,011,450
  • Date Filed
    Wednesday, August 8, 2012
    12 years ago
  • Date Issued
    Tuesday, April 21, 2015
    9 years ago
Abstract
A surgical instrument for positioning a rod includes a rod holder, a sleeve, and a pusher rod. The rod holder is configured to releasably grip a first end of a rod therebetween. The sleeve is disposed about the rod holder and slideable between an extended position to hold the tines in a rod gripping position and a retracted position to permit release of the rod from the tines. The pusher rod is slidably disposed within the rod holder and has a plurality of rod receiving notches configured to engage the rod such that the rod is held at a selected angle with respect to the pusher rod.
Description
BACKGROUND OF THE INVENTIVE CONCEPTS

1. Field of the Inventive Concepts


The inventive concepts disclosed and claimed herein relate generally to surgical instruments, and more particularly, but not by way of limitation, to a surgical instrument for introducing a rod into a body and placing the rod in a minimally invasive manner.


2. Brief Description of Related Art


Traditional open surgical procedures in locations deep within a patient's body can result in extensive tissue traumatization, which in turn leads to prolonged recovery time and increased risk of infections. To reduce such trauma, laparoscopic surgical devices, remote-control instrument manipulation, minimal incision procedures, and the like have been developed. Such “minimally invasive” surgical procedures are especially desirable for spine surgeries because spine pathologies are located deep within the body without clear muscle planes, and there is danger of damaging the adjacent neural and vascular tissues.


Spine surgery often involves use of connecting elements, such as rods, screws, plates, or wires, which are placed and fixed between two or more locations of the spine. For example, spinal fixation is a neurosurgical procedure in which two or more vertebrae are anchored to each other to reduce vertebral mobility and to avoid potential damage to the spinal cord. Numerous spinal fixation devices and designs have been developed, but they typically all include combinations of rods, plates, and screws, and these devices must be transported through significant tissue without causing extensive tissue traumatization.


Placement of these connecting elements remains a challenging step in spine surgery, often requiring multiple incisions. Further difficulties arise due to the angle variation between, for example, an initial vertical insertion trajectory for a stabilization rod, and the desired final horizontal position of the rod.


In view of the foregoing, there is a need for surgical tools and methods that can avoid multiple incisions for rod insertion. There is also a need for surgical instruments that can provide a controlled rod insertion by allowing for changes in rod angulation with respect to the holding tool. It is to such a surgical instrument that the presently disclosed and claimed inventive concepts are directed.





BRIEF DESCRIPTION OF THE DRAWINGS

Like reference numerals in the figures represent and refer to the same or similar element or function. Implementations of the disclosure may be better understood when consideration is given to the following detailed description thereof. Such description makes reference to the annexed pictorial illustrations, schematics, graphs, and drawings. The figures are not necessarily to scale and certain features and certain views of the figures may be shown exaggerated, to scale or in schematic in the interest of clarity and conciseness. In the drawings:



FIG. 1A is a perspective view of a surgical instrument constructed in accordance with the inventive concepts disclosed herein.



FIG. 1B is a sectional view taken along line 1B-1B of FIG. 1A.



FIG. 2 is a sectional view of a portion of the surgical instrument.



FIG. 3A is a sectional view of the surgical instrument shown with a pusher rod engaged with a rod.



FIG. 3B is a sectional view of the surgical instrument shown with the rod released from the rod holder and the pusher rod in an extended position.



FIG. 4 is a perspective view of a portion of a rod holder.



FIG. 5 is an elevational view illustrating movement of the rod relative to the rod holder.



FIG. 6 is a perspective view of a portion of a rod.



FIG. 7 is a perspective view of a portion of another embodiment of a rod.



FIG. 8 is an elevational view of a portion of the surgical instrument shown with a sleeve in an extended position.



FIGS. 9A-9D are sectional views showing the rod held at different selected angles by the surgical instrument.



FIG. 10 is a perspective view of a distal end of the pusher rod.



FIG. 11 is a perspective view of the surgical instrument shown with a handle and holding a rod.



FIG. 12 is an exploded perspective view of the surgical instrument.



FIG. 13 is a sectional view of a portion of the surgical instrument showing a lever of the handle in association with the pusher rod.



FIG. 14 is a perspective view of a portion of the surgical instrument illustrating a sleeve catch.





DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS

Before explaining at least one embodiment of the inventive concepts disclosed herein in detail, it is to be understood that the inventive concepts are not limited in their application to the details of construction, experiments, exemplary data, and/or the arrangement of the components set forth in the following description, or illustrated in the drawings. The presently disclosed and claimed inventive concepts are capable of other embodiments or of being practiced or carried out in various ways. Also, it is to be understood that the phraseology and terminology employed herein is for purpose of description only and should not be regarded as limiting in any way.


In the following detailed description of embodiments of the inventive concepts, numerous specific details are set forth in order to provide a more thorough understanding of the inventive concepts. However, it will be apparent to one of ordinary skill in the art that the inventive concepts within the disclosure may be practiced without these specific details. In other instances, well-known features have not been described in detail to avoid unnecessarily complicating the instant disclosure.


Further, unless expressly stated to the contrary, “or” refers to an inclusive or and not to an exclusive or. For example, a condition A or B is satisfied by any one of the following: A is true (or present) and B is false (or not present), A is false (or not present) and B is true (or present), and both A and B are true (or present).


In addition, use of the “a” or “an” are employed to describe elements and components of the embodiments herein. This is done merely for convenience and to give a general sense of the inventive concepts. This description should be read to include one or at least one and the singular also includes the plural unless it is obvious that it is meant otherwise.


References to orthopedic or spinal surgery methods and rods are for example only, and the inventive concepts can be used with any surgical procedure requiring insertion and/or placement of a rod shaped article within a patient's body.


Finally, as used herein, any reference to “one embodiment” or “an embodiment” means that a particular element, feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. The appearances of the phrase “in one embodiment” in various places in the specification are not necessarily all referring to the same embodiment.


Referring now to the drawings, and more particularly to FIGS. 1A, 1B, 11 and 12, shown therein is an exemplary embodiment of a surgical instrument 10 constructed in accordance with the inventive concepts disclosed and claimed herein. The surgical instrument 10 includes a rod holder 12, a sleeve 20 disposed about the rod holder 12, and a pusher rod 22 disposed within the rod holder 12. The surgical instrument 10 may further include a handle 42 (FIGS. 11 and 12). The surgical instrument 10 can be used by a surgeon to insert and place a rod 18 (FIG. 11) in a patient's body while allowing variation of the angulation of the rod before and during rod insertion and placement.


Components of the surgical instrument can be made of materials including, but not limited to, titanium, titanium alloys, stainless steel, ceramics, and/or polymers. Some components may be autoclaved and/or chemically sterilized. Components that cannot be autoclaved and/or chemically sterilized may be made of sterile materials.


The rod holder 12 is hollow and has a pair of opposing yieldable tines 14 for releasably gripping at least a first end 16 of a rod 18. As best illustrated in FIGS. 1B and 4, each of the tines 14 of the rod holder 12 has an inwardly extending detent 30 on an inner surface 32. The detents 30 are shaped so that the first end 16 of the rod 18 is pivotably engageable with the rod 18 as shown, for example, in FIG. 5. The detents 30 are in axial alignment with one another so as to define a pivot axis 33 (FIG. 4) located between the centers of the two detents 30. The rod 18 is rotatable about the pivot axis 33. The detents 30 can be spherical, or a partial sphere, pin, cone, or other shape allowing pivotal motion of the rod 18 held between the tines 14.


As best shown in FIG. 6, the rod 18 may include a pair of recesses 34 (only one of the recesses 34 visible) shaped to receive the detent 30. The design and dimensions of the detents 30, recesses 34, and tines 14, and the spring strength of the tines, can be selected to allow for a secure hold on the rod 18 while providing an easy “snap” when the rod 18 and tines 14 are coupled. The snap provides the user with a positive feedback indicating successful coupling.


It will be understood that the positioning of the detents and the recesses can be reversed where recesses are positioned on the inner surface 32 of the rod holder 12 and shaped to receive the detents present on the rod 18. In this embodiment, the axial alignment of the centers of the two recesses 34 defines the pivot axis 33 about which the rod 18 is rotatable. The first end 16 of the rod 18 is substantially cylindrical in shape where the rod 18 has a flat end surface 35a and a convex side surface 35b which intersect one another to define a curved edge 35c.



FIG. 7 illustrates another embodiment of a rod 18a with a first end 16a. The first end 16a is similar to the first end 16 of the rod 18 except that the first end 16a of the rod 18a has two opposing flat faces 36 with a recess 34a provided on each of the flat faces 36. The flat faces 36 result in the first end 16a of the rod 18a having reduced diameter which in turn allows the rod holder 12 to be reduced in diameter.


Referring to FIGS. 3A and 3B, the sleeve 20 is disposed about the rod holder 12 and is slideable between an extended position (FIG. 3A) and a retracted position (FIG. 3B). In the extended position, the sleeve 20 is disposed about the tines 14 so as to hold the tines 14 in a rod gripping position when the rod 18 is positioned between the tines 14. In the retracted position, the sleeve 20 is retracted from the tines 14 leaving the tines 14 outwardly moveable to permit release of the rod 18 from the tines 14.


Referring now to FIGS. 1A and 14, the position of the sleeve 20 with respect to the rod holder 12 is adjusted with a sleeve handle 47 provided on a proximal end of the sleeve 20. The position of the sleeve 20 with respect to the rod holder 12 may be maintained using a spring plate 43 having a proximal end 45 attached to the rod holder 12. A push knob 44 attached to a distal end of the spring plate 43 can be depressed to align a narrowing 53 in the push knob 44 with a neck 55 of the sleeve handle 42, thereby allowing movement of the sleeve handle 42 to reposition the push knob 44 between a first aperture 52 and a second aperture 54, thereby moving the sleeve 20 between the retracted and extended positions, respectively.


Referring now to FIGS. 1B, 8 and 9A-9D, the sleeve 20 is provided with notches 40 and 40′ to allow the rod 18 to pivot while secured to the rod holder 12 by the sleeve 20. In one embodiment (not shown), the notch 40′ has substantially the same shape as the notch 40, thereby allowing the rod 18 to pivot 180°. In many instances, only a 90° pivot or less is necessary, and greater rod gripping strength may be provided when the size of the notch 40′ is minimized to allow rotation only through the notch 40. For example, as shown in FIGS. 1B, 8 and 9A-9D, the notch 40′ does not extend through the thickness of the sleeve. In one embodiment, the shape of the notch 40 is made to receive and cradle the rod 18 when the rod 18 is positioned at a 90° angle 28 with respect to the pusher rod 22.


When the sleeve 20 is in the extended position, the rotational position of the sleeve 20 with respect to the rod holder 12 is such that the notch 40 is positioned along the axis 33 connecting the centers of the two detents 30. This position is maintained by the push knob 45 on the rod holder 12 being restricted to either the first or second apertures 52 and 54, respectively, on the sleeve 20.


The pusher rod 22 is disposed within the rod holder 12 and has a distal end 24 provided with a plurality of rod receiving notches 25a-25c. The pusher rod 22 is slideable between a retracted position, a holding position, and an extended position. In the retracted position, the distal end 24 of the pusher rod 22 is positioned so as to disengage from the rod 18 and permit the rod 18 to freely pivot relative to the rod holder 12, as shown in FIG. 5. In the holding position (FIGS. 3A and 9A-9D), the distal end 24 of the pusher rod 22 is positioned to engage the first end 16 of the rod 18 when the rod 18 is positioned between the tines 14 of the rod holder 12. In the extended position (FIG. 3B), the distal end 24 of the pusher rod 22 is positioned to push and release the rod 18 from the tines 14 of the rod holder 12.


Each of the rod receiving notches 25a-25c is configured to matingly engage at least a portion of the first end 16 of the rod 18, as illustrated by way of example in FIGS. 3A and 9A-9D, in such a way that when the rod 18 is gripped by the tines 14 of the rod holder 12 with the sleeve 20 in the extended position and the distal end 24 of the pusher rod 22 is in engagement with the first end 16 of the rod 18, the rod 18 is held at a selected angle 28 with respect to the pusher rod 22 dependent upon in which of the rod receiving notches 25a-25c the rod 18 is disposed. In the exemplary embodiment, the rod receiving notches 25a-25c are configured to engage with a portion of the rod 18 one at a time.


As best shown in FIGS. 9A-9D and 10, the rod receiving notches 25a-25c are each defined by a pair of notch surfaces 26a and 26b formed at an angle relative to one another which substantially matches the angle between the end surface 35a and the side surface 35b of the rod 18. To this end, the angle between the notch surfaces 26a and 26b can vary depending on the angle between the end surface 35a and the side surface 35b of the rod 18. In one exemplary embodiment, the angle between the notch surfaces 26a and 26b is about 90 degrees.


The notch surface 26a and 26b are configured to conform to the contour of a corresponding surface of the rod 18. With the embodiments of the rods 18 and 18a illustrated in FIGS. 6 and 7, respectively, the notch surfaces 26a are concave in shape to correspond to the shape of the curved side surface 35b, and the notch surfaces 26b are substantially flat to correspond to the shape of the end surface 35a.


The intersection of the notch surfaces 26a and 26b defines a trough line 26c. The trough lines 26c of the rod receiving notches 25a-25c are parallel to one another. Due to the shapes of the notch surfaces 26a and 26b, the trough lines 26c are curvilinear or concave in shape so as to correspond to the curved shape of the edge 35c of the rod 18.


To accommodate various positions of the rod 18, the rod receiving notches 25a-25c are provided in the distal end 24 of the pusher rod 22 so that the rod receiving notches 25a-25c are radially oriented about the rod pivot axis 33 at equal angular intervals when the pusher rod 18 is in the holding position. It should be appreciated that while the pusher rod 22 is illustrated as having three rod receiving notches, the number of rod receiving notches may be varied from one, two, three, or more.


To support the rod 18 at a 90 degree angle relative to the pusher rod 22, the distal end 24 of the pusher rod 22 is provided with a pair of lateral end surfaces 55a and 55b (FIG. 10). The lateral end surfaces 55a and 55b are arranged in a diametrically opposing relationship with another and configured to conform to the contour of the side surface 35b of the rod 18 so as to matingly engage the rod 18 when the rod 18 is positioned at a 90 degree angle relative to the pusher rod 22 (FIG. 9A). More particularly, the lateral end surfaces 55 are concave in shape to mate with the convex shape of side surface 35b of the rod 18.


To provide further support to the rod 18, the distal end 24 of the pusher rod 22 may be configured to contact the rod 18 at multiple points. In particular, the lateral end surface 55a intersects the notch surface 26a of the rod receiving notch 25a to define an edge 57a, and the lateral end surface 55b intersects the notch surface 26b of the rod receiving notch 25c to define and edge 57b. The edges 57a and 57b are in a diametrically opposing relationship with another. As illustrated in FIGS. 9B and 9C, the notch surface 26a of the rod receiving notch 25b and the notch surface 26a of the rod receiving notch 25c are in alignment with the edge 57a. As such, the side surface 35b of the rod 18 contacts at least a portion of the edge 57a when the rod 18 is positioned in the rod receiving notch 25b and the rod receiving notch 25c to provide another point of supporting contact between the pusher rod 22 and the rod 18. Similarly, the notch surface 26b of the rod receiving notch 25a and the notch surface 26b of the rod receiving notch 25b are in alignment with the edge 57b. As such, the end surface 35a of the rod 18 contacts at least a portion of the edge 57b when the rod 18 is positioned in the rod receiving notch 25a and the rod receiving notch 25b to provide another point of supporting contact between the pusher rod 22 and the rod 18.


As illustrated in FIG. 2, the pusher rod 18 may include a first section 56 that is threadingly engageable with a second section 58 to facilitate disassembling and cleaning. A pin 60 extending from the pusher rod 22 is slideably positioned in slots 62 in the rod holder 12 to maintain the rotational position of the pusher rod 22 with respect to the rod holder 12.


Referring now to FIGS. 11-13, the handle 42 facilitates a surgeon in inserting and positioning the rod 18 during surgery. The handle 42 may be connected to a proximal end of the rod holder 12 and be provided with a lever 46 for pushing the rod 18 from the rod holder 12. A spring 50 is provided to bias the pusher rod 22 in the retracted position. By maintaining pressure on the lever 46, the surgeon can keep the pusher rod engaged with the rod 18. By releasing pressure on the lever 46, the pusher rod 22 is retracted by the spring 50 and the rod 18 is allowed to pivot. With the sleeve 20 in the retracted position, the lever 46 of the handle 42 can be used to push the pusher rod 22 toward the extended position disengaging the rod 18 from the rod holder 12. The rod holder 12 can then be pulled away from the rod 18 at any angulation.


The handle 42 can be connected to the rod holder 12 using cylindrical opposing surfaces as shown in FIG. 12, allowing the handle 42 to be readily connected and removed from the rod holder 12. To insure the proper orientation of the handle 42, an orientation mark 64 on the rod holder 12 can be positioned in a respective opening 66 on the handle 42. An eccentric (not shown) on a locking lever 68 on the handle 42 can be used to engage a groove 70 on the rod holder 12 and lock the handle 42 onto the surgical instrument 10. By disengaging the locking lever 68 from the groove 70, the handle 42 can be readily removed.


During surgery, following the first rod insertion, the handle 42 can be connected to a second rod holder 12 in order to insert a contra lateral rod 18. Both rod holders 12 can be disconnected after the entire construct is finished. When the handle 42 is disconnected, the rod holder 12 can be held in one hand and pulled away from the rod 18 in a manner similar to a syringe.


During the insertion process of surgery, a surgeon will be able to modify the angulation of the rod 18 in order to optimize the insertion trajectory and to minimize the strain on the soft tissue. The surgical instrument 10 can be used in any surgical indication requiring stabilization using screw and rod type constructs. The presently disclosed surgical instrument 10 can be used in open or minimally invasive surgeries. Additional incisions for the rod insertion are avoided and a controlled rod insertion is provided by allowing changes of the rod angulation with respect to the rod holder.


From the above description, it is clear that the inventive concepts disclosed herein are well adapted to carry out the objects and to attain the advantages mentioned herein as well as those inherent in the inventive concepts disclosed herein. While exemplary embodiments of the inventive concepts disclosed herein have been described for purposes of this disclosure, it will be understood that numerous changes may be made which will readily suggest themselves to those skilled in the art and which are accomplished without departing from the scope of the inventive concepts disclosed herein and defined by the appended claims.

Claims
  • 1. A surgical instrument, comprising: a rod holder having a pair of opposing yieldable tines configured to releasably grip a rod therebetween;a sleeve disposed about the rod holder and slideable between an extended position wherein the sleeve is positioned about the tines so as to hold the tines in a rod gripping position when the rod is positioned between the tines, and a retracted position wherein the sleeve is positioned such that the tines are outwardly moveable to permit release of the rod from the tines; anda pusher rod slidably disposed within the rod holder, the pusher rod having a distal end with a plurality of rod receiving notches configured to engage at least a portion of one end of the rod in such a way that when the rod is gripped by the tines of the rod holder with the sleeve in the extended position and the distal end of the pusher rod is in engagement with the end of the rod, the rod is held at a selected angle with respect to the pusher rod.
  • 2. The surgical instrument of claim 1, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces formed at an angle relative to one another, wherein the notch surfaces intersect to define a trough line, and wherein the trough lines of the rod receiving notches are parallel to one another.
  • 3. The surgical instrument of claim 2, wherein the trough line of the rod receiving notches is curvilinear.
  • 4. The surgical instrument of claim 3, wherein the trough line of the rod receiving notches is concave.
  • 5. The surgical instrument of claim 2, wherein the angle between the notch surfaces is about 90 degrees.
  • 6. The surgical instrument of claim 2, wherein the pair of notch surfaces is configured to conform to the contour of a corresponding surface of the rod.
  • 7. The surgical instrument of claim 5, wherein one of the notch surfaces is concave and wherein the other notch surface is substantially flat.
  • 8. The surgical instrument of claim 1, wherein the rod receiving notches are radially oriented.
  • 9. The surgical instrument of claim 1, wherein the tines cooperate to define a rod pivot axis and wherein the rod receiving notches are radially oriented about the rod pivot axis when the pusher rod is in the holding position.
  • 10. The surgical instrument of claim 1, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces formed at an angle relative to one another, wherein the distal end of the pusher rod has a pair of diametrically opposed edges, and wherein one of the notch surfaces of each of the rod receiving notches is aligned with at least a portion of one of the edges and the other notch surface of each of the rod receiving notches is aligned with at least a portion of the other edge.
  • 11. The surgical instrument of claim 10, wherein the pusher rod has three rod receiving notches.
  • 12. The surgical instrument of claim 1, wherein each of the tines has an inwardly extending detent pivotally engageable with the first end of the rod, and wherein each of the detents is in axial alignment with one another so as to define a pivot axis.
  • 13. The surgical instrument of claim 1, wherein the pusher rod is slideable between a retracted position wherein the distal end of the pusher rod is positioned so as to be disengaged from the rod to permit the rod to pivot relative to the rod holder, a holding position wherein the distal end of the pusher rod is positioned to engage the first end of the rod, and an extended position wherein the distal end of the pusher rod is positioned to cause the rod to release from the tines of the rod holder.
  • 14. The surgical instrument of claim 13, wherein the pusher rod is biased toward the retracted position.
  • 15. The surgical instrument of claim 1, further comprising a handle attached to the rod holder.
  • 16. The surgical instrument of claim 15, wherein the handle is detachable from the rod holder.
  • 17. The surgical instrument of claim 15, wherein the handle has a lever in association with the pusher rod to move the pusher rod from the retracted position to the holding position and the extended position.
  • 18. A surgical instrument, comprising: a rod holder having a pair of opposing yieldable tines configured to releasably grip at least at least one end of a rod therebetween; anda pusher rod disposed within the rod holder and slideable between a retracted position wherein a distal end of the pusher rod is positioned so as to be disengaged from the rod to permit the rod to pivot relative to the rod holder, a holding position wherein the distal end of the pusher rod is positioned to engage the first end of the rod, and an extended position wherein the distal end of the pusher rod is positioned beyond the holding position to push and thereby release the rod from the tines of the rod holder, the distal end of the pusher rod having a plurality of rod receiving notches configured to engage the first end of the rod in such a way that when the rod is gripped by the tines of the rod holder and the distal end of the pusher rod is engaged with the end of the rod in the holding position, the rod is held at a selected angle with respect to the pusher rod.
  • 19. The surgical instrument of claim 18, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces formed at an angle relative to one another, wherein the notch surfaces intersect to define a trough line, and wherein the trough lines of the rod receiving notches are parallel to one another.
  • 20. The surgical instrument of claim 19, wherein the trough line of the rod receiving notches is curvilinear.
  • 21. The surgical instrument of claim 20, wherein the trough line of the rod receiving notches is concave.
  • 22. The surgical instrument of claim 19, wherein the angle is about 90 degrees.
  • 23. The surgical instrument of claim 19, wherein the pair of notch surfaces is configured to conform to the contour of a corresponding surface of the rod.
  • 24. The surgical instrument of claim 23, wherein one of the notch surfaces is concave and wherein the other notch surface is substantially flat.
  • 25. The surgical instrument of claim 18, wherein the rod receiving notches are radially oriented.
  • 26. The surgical instrument of claim 18, wherein the tines cooperate to define a rod pivot axis and wherein the rod receiving notches are radially oriented about the rod pivot axis when the pusher rod is in the holding position.
  • 27. The surgical instrument of claim 18, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces formed at an angle relative to one another, wherein the distal end of the pusher rod has a pair of diametrically opposed edges, and wherein one of the notch surfaces of each of the rod receiving notches is aligned with at least a portion of one of the edges and the other notch surface of each of the rod receiving notches is aligned with at least a portion of the other edge.
  • 28. The surgical instrument of claim 27, wherein the pusher rod has three rod receiving notches.
  • 29. The surgical instrument of claim 18, wherein each of the tines has a detent pivotally engageable with the first end of a rod, the detents in axial alignment with one another so as to define a pivot axis.
  • 30. The surgical instrument of claim 18, wherein the pusher rod is biased toward the retracted position.
  • 31. The surgical instrument of claim 18, further comprising a handle attached to the rod holder.
  • 32. The surgical instrument of claim 31, wherein the handle has a lever in association with the pusher rod to move the pusher rod from the retracted position to the holding position and the extended position.
  • 33. A surgical kit, comprising: at least one rod;a rod holder having a pair of opposing yieldable tines configured to releasably grip at least one end of the rod therebetween;a sleeve disposed about the rod holder and slideable between an extended position wherein the sleeve is positioned about the tines so as to hold the tines in a rod gripping position when the rod is positioned between the tines, and a retracted position wherein the sleeve is positioned such that the tines are outwardly moveable to permit release of the rod from the tines; anda pusher rod disposed within the rod holder and slideable between a retracted position wherein a distal end of the pusher rod is positioned so as to be disengaged from the rod to permit the rod to pivot relative to the rod holder, a holding position wherein the distal end of the pusher rod is positioned to engage the end of the rod, and an extended position wherein the distal end of the pusher rod is positioned beyond the holding position to push and thereby release the rod from the tines of the rod holder, the distal end of the pusher rod having a plurality of rod receiving notches configured to engage at least a portion of the end of the rod in such a way that when the rod is gripped by the tines of the rod holder and the distal end of the pusher rod is in engagement with the end of the rod in the holding position, the rod is held at a selected angle with respect to the pusher rod.
  • 34. The surgical kit of claim 33, wherein the end of the rod has an end surface and a side surface oriented relative to the end surface to define an edge, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces configured and angled relative to one another to define a trough line and matingly engage the end of the rod.
  • 35. The surgical kit of claim 34, wherein the edge of the rod is curved, and wherein the trough lines of the rod receiving notches are curved to correspond to the curve of the edge of the rod.
  • 36. The surgical kit of claim 35, wherein the trough line of the rod receiving notches is concave.
  • 37. The surgical kit of claim 34, wherein the angle between the notch surfaces is about 90 degrees.
  • 38. The surgical kit of claim 34, wherein the pair of notch surfaces is configured to conform to the contour of the end surface and the side surface of the rod.
  • 39. The surgical kit of claim 38, wherein the end surface of the rod is substantially flat and the side surface of the rod is convex, and wherein one of the notch surfaces is concave and wherein the other notch surface is substantially flat.
  • 40. The surgical kit of claim 33, wherein the rod receiving notches are radially oriented.
  • 41. The surgical kit of claim 33, wherein the tines cooperate to define a rod pivot axis and wherein the rod receiving notches are radially oriented about the rod pivot axis when the pusher rod is in the holding position.
  • 42. The surgical kit of claim 33, wherein each of the rod receiving notches is defined by at least a pair of notch surfaces formed at an angle relative to one another, wherein the distal end of the pusher rod has a pair of diametrically opposed edges, and wherein one of the notch surfaces of each of the rod receiving notches is aligned with at least a portion of one of the edges and the other notch surface of each of the rod receiving notches is aligned with at least a portion of the other edge.
  • 43. The surgical kit of claim 42, wherein the pusher rod has three rod receiving notches.
  • 44. The surgical kit of claim 33, wherein each tine has a detent pivotally engageable with the first end of the rod.
  • 45. The surgical kit of claim 33, wherein the pusher rod is biased toward the retracted position.
  • 46. The surgical kit of claim 33, wherein at least one end of the rod is configured to pivotally engage the tines of the rod holder.
  • 47. The surgical kit of claim 33, further comprising a handle attached to the rod holder, wherein the handle is provided with a lever in association with the pusher rod to move the pusher rod from the retracted position to the holding position and the extended position.
  • 48. The surgical kit of claim 33, wherein the rod receiving notches engage with the rod one at a time.
US Referenced Citations (120)
Number Name Date Kind
1710092 Hitchcock Apr 1929 A
2250417 Ettinger Jul 1941 A
2333033 Mraz Oct 1943 A
2373478 Kuhn Apr 1945 A
3575405 Harding Apr 1971 A
3861432 Rothenberger Jan 1975 A
4733657 Kluger Mar 1988 A
4848368 Kronner Jul 1989 A
4957495 Kluger Sep 1990 A
5219349 Krag et al. Jun 1993 A
5443467 Biedermann et al. Aug 1995 A
5529571 Daniel Jun 1996 A
5676664 Allard et al. Oct 1997 A
5688276 Shaffer Nov 1997 A
5735842 Krueger et al. Apr 1998 A
5782830 Farris Jul 1998 A
5797900 Madhani et al. Aug 1998 A
5910141 Morrison et al. Jun 1999 A
5957927 Magee et al. Sep 1999 A
6102934 Li Aug 2000 A
6113605 Storer Sep 2000 A
6120503 Michelson Sep 2000 A
6156037 LeHuec et al. Dec 2000 A
6183472 Lutz Feb 2001 B1
6224598 Jackson May 2001 B1
6361535 Jackson Mar 2002 B2
6451019 Zucherman et al. Sep 2002 B1
6530929 Justis et al. Mar 2003 B1
6660006 Markworth et al. Dec 2003 B2
6723100 Biedermann et al. Apr 2004 B2
6746443 Morley et al. Jun 2004 B1
6790208 Oribe et al. Sep 2004 B2
6830574 Heckele et al. Dec 2004 B2
7011658 Young Mar 2006 B2
7223268 Biedermann May 2007 B2
7250052 Landry et al. Jul 2007 B2
7306603 Boehm, Jr. et al. Dec 2007 B2
7341587 Molz, IV et al. Mar 2008 B2
7452359 Michelson Nov 2008 B1
7476240 Raymond et al. Jan 2009 B2
7497869 Justis Mar 2009 B2
7520879 Justis et al. Apr 2009 B2
7527638 Anderson et al. May 2009 B2
7572276 Lim et al. Aug 2009 B2
7578822 Rezach et al. Aug 2009 B2
7648507 Techiera et al. Jan 2010 B2
7666189 Gerber et al. Feb 2010 B2
7686809 Triplett et al. Mar 2010 B2
7708763 Selover et al. May 2010 B2
7717944 Foley et al. May 2010 B2
7749232 Salerni Jul 2010 B2
7758584 Bankoski et al. Jul 2010 B2
7758617 Iott et al. Jul 2010 B2
7776051 Colleran et al. Aug 2010 B2
7871424 Abdelgany Jan 2011 B2
7909835 Oribe et al. Mar 2011 B2
7918878 Songer et al. Apr 2011 B2
7922727 Songer et al. Apr 2011 B2
7955359 Matthis et al. Jun 2011 B2
7967821 Sicvol et al. Jun 2011 B2
7967826 Colleran et al. Jun 2011 B2
8002798 Chin et al. Aug 2011 B2
8007516 Chao et al. Aug 2011 B2
8100951 Justis et al. Jan 2012 B2
8105361 Anderson et al. Jan 2012 B2
8192439 Songer et al. Jun 2012 B2
8192440 Jones et al. Jun 2012 B2
8197488 Sorrenti et al. Jun 2012 B2
8197512 Hunt et al. Jun 2012 B1
8202304 Boehm, Jr. et al. Jun 2012 B2
8206395 McLean et al. Jun 2012 B2
8211145 Dalton Jul 2012 B2
8235997 Hoffman et al. Aug 2012 B2
8277491 Selover et al. Oct 2012 B2
8343160 Techiera et al. Jan 2013 B2
8382802 Boehm, Jr. et al. Feb 2013 B2
8425531 Salerni Apr 2013 B2
8512383 McLean Aug 2013 B2
8579942 Boehm, Jr. et al. Nov 2013 B2
8579943 Nichols et al. Nov 2013 B2
8641720 Solitario, Jr. Feb 2014 B2
20010021853 Heckele et al. Sep 2001 A1
20030100896 Biedermann et al. May 2003 A1
20050021040 Bertagnoli Jan 2005 A1
20050090824 Shluzas et al. Apr 2005 A1
20050171542 Biedermann et al. Aug 2005 A1
20050203516 Biedermann et al. Sep 2005 A1
20050203532 Ferguson et al. Sep 2005 A1
20050277934 Vardiman Dec 2005 A1
20070055241 Matthis et al. Mar 2007 A1
20070260246 Biedermann Nov 2007 A1
20080077138 Cohen et al. Mar 2008 A1
20080077139 Landry et al. Mar 2008 A1
20080077155 Diederich et al. Mar 2008 A1
20080119849 Beardsley et al. May 2008 A1
20080177270 Sorrenti et al. Jul 2008 A1
20080255567 Accordino Oct 2008 A1
20090012567 Biedermann et al. Jan 2009 A1
20090171391 Hutton et al. Jul 2009 A1
20090182382 Justis et al. Jul 2009 A1
20090209965 Lewis Aug 2009 A1
20090228052 Beardsley et al. Sep 2009 A1
20100024487 Khoo et al. Feb 2010 A1
20100030283 King et al. Feb 2010 A1
20100036443 Hutton et al. Feb 2010 A1
20100049206 Biyani Feb 2010 A1
20100131016 Gerber et al. May 2010 A1
20100145389 Triplett et al. Jun 2010 A1
20100249856 Iott et al. Sep 2010 A1
20100274252 Bottomley et al. Oct 2010 A1
20100314817 Li et al. Dec 2010 A1
20100331849 Riesinger et al. Dec 2010 A1
20100331901 Iott et al. Dec 2010 A1
20110015677 Biedermann et al. Jan 2011 A1
20110077690 Shin et al. Mar 2011 A1
20110093014 Davis et al. Apr 2011 A1
20110152940 Frigg et al. Jun 2011 A1
20110166610 Altarac et al. Jul 2011 A1
20110313464 McLean Dec 2011 A1
20120130429 Mitchell et al. May 2012 A1
Foreign Referenced Citations (131)
Number Date Country
2007208137 Aug 2007 AU
3809793 Oct 1989 DE
19549426 Feb 1997 DE
19754869 Jun 1999 DE
10011678 Sep 2001 DE
20310433 Sep 2003 DE
69433088 Jul 2004 DE
202004014120 Nov 2004 DE
0333990 Sep 1989 EP
0419564 Apr 1991 EP
0436697 Jul 1991 EP
0465158 Jan 1992 EP
0571619 Dec 1993 EP
0703757 Apr 1996 EP
0712607 May 1996 EP
0719118 Jul 1996 EP
0734703 Oct 1996 EP
0752830 Jan 1997 EP
0812167 Dec 1997 EP
0814718 Jan 1998 EP
0888099 Jan 1999 EP
1027004 Aug 2000 EP
1058520 Dec 2000 EP
1092395 Apr 2001 EP
1093760 Apr 2001 EP
1129668 Sep 2001 EP
1138267 Oct 2001 EP
1146821 Oct 2001 EP
1147751 Oct 2001 EP
1153574 Nov 2001 EP
1219248 Jul 2002 EP
1219268 Jul 2002 EP
1221901 Jul 2002 EP
1259198 Nov 2002 EP
1346695 Sep 2003 EP
1413257 Apr 2004 EP
1488755 Dec 2004 EP
1503684 Feb 2005 EP
1504732 Feb 2005 EP
1508307 Feb 2005 EP
1618848 Jan 2006 EP
1639954 Mar 2006 EP
1648316 Apr 2006 EP
1667616 Jun 2006 EP
1682022 Jul 2006 EP
1694225 Aug 2006 EP
1711112 Oct 2006 EP
1744694 Jan 2007 EP
1796560 Jun 2007 EP
1796565 Jun 2007 EP
1942821 Jul 2008 EP
1981411 Oct 2008 EP
1990016 Nov 2008 EP
1545355 Dec 2008 EP
2258292 Dec 2010 EP
1814476 May 2011 EP
2320819 May 2011 EP
1781194 Dec 2011 EP
1641403 Jan 2012 EP
1792588 Dec 2013 EP
2083719 Jun 2014 EP
2269753 Feb 1994 GB
2360215 Sep 2001 GB
2309707 Nov 2007 RU
8912431 Dec 1989 WO
9311715 Jun 1993 WO
9410944 May 1994 WO
9428824 Dec 1994 WO
9526164 Oct 1995 WO
9627321 Sep 1996 WO
9627345 Sep 1996 WO
9639988 Dec 1996 WO
9731517 Aug 1997 WO
9829047 Jul 1998 WO
9915097 Apr 1999 WO
9921500 May 1999 WO
9921501 May 1999 WO
0042898 Jul 2000 WO
0067651 Nov 2000 WO
0207624 Jan 2002 WO
03007791 Jan 2003 WO
03007829 Jan 2003 WO
03008016 Jan 2003 WO
03024298 Mar 2003 WO
03057055 Jul 2003 WO
03063714 Aug 2003 WO
03094741 Nov 2003 WO
03096917 Nov 2003 WO
2004017837 Mar 2004 WO
2005025461 Mar 2005 WO
2005034781 Apr 2005 WO
2005039392 May 2005 WO
2005051247 Jun 2005 WO
2005055868 Jun 2005 WO
2006025919 Mar 2006 WO
2006025921 Mar 2006 WO
2006042188 Apr 2006 WO
2006042335 Apr 2006 WO
2006044920 Apr 2006 WO
2006055448 May 2006 WO
2006057837 Jun 2006 WO
2006089085 Aug 2006 WO
2006105068 Oct 2006 WO
2006116544 Nov 2006 WO
2007019391 Feb 2007 WO
2007035326 Mar 2007 WO
2007035441 Mar 2007 WO
2007035892 Mar 2007 WO
2007050640 May 2007 WO
2007059207 May 2007 WO
2007075375 Jul 2007 WO
2007075791 Jul 2007 WO
2007127918 Nov 2007 WO
2007147093 Dec 2007 WO
2008057506 May 2008 WO
2008085445 Jul 2008 WO
2008097974 Aug 2008 WO
2008098054 Aug 2008 WO
2008103781 Aug 2008 WO
2008121613 Oct 2008 WO
20080136877 Nov 2008 WO
2008149223 Dec 2008 WO
2009017656 Feb 2009 WO
2009025884 Feb 2009 WO
2009052315 Apr 2009 WO
2009055541 Apr 2009 WO
2009056113 May 2009 WO
2009064949 May 2009 WO
2009067486 May 2009 WO
2009094493 Jul 2009 WO
2011002847 Jan 2011 WO
Non-Patent Literature Citations (1)
Entry
European Search Report (EP 13178205.4); Nov. 11, 2013.
Related Publications (1)
Number Date Country
20140046388 A1 Feb 2014 US