Cervical Plate Ratchet Pedicle Screws

التفاصيل البيبلوغرافية
العنوان: Cervical Plate Ratchet Pedicle Screws
Document Number: 20110118784
تاريخ النشر: May 19, 2011
Appl. No: 12/906691
Application Filed: October 18, 2010
مستخلص: A dynamic cervical plate has a ratchet and pawl mechanism that allows the cervical plate to post operatively shorten the length of the plate and maintain compression between adjacent vertebrae. The plate has an elongated shaft with teeth on one surface and a groove along each longitudinal edge. A lateral plate is attached on one end of the shaft. The plate has screw holes for connecting with the head of a spinal screw. Another lateral plate is slidably engaged in the longitudinal grooves along the shaft and has a spring clip acting as a pawl with the teeth on the shaft. The sliding bar has screw holes on each side of the shaft. The clip is configured to span the screw holes to automatically engage and prevent screws from backing out of the holes.
Inventors: Baynham, Bret O. (Jupiter, FL, US); Baynham, G. Clay (Jupiter, FL, US); Baynham, Matthew G. (Jupiter, FL, US); Campbell, David R. (Jupiter, FL, US)
Claim: 1. A dynamic spinal plate adapted to stabilize adjacent vertebrae comprising an elongated shaft with a proximal surface and a distal surface, said elongated shaft having a first bar near one end adapted for connection with a vertebra, said shaft having an opposite end, at least a second bar movably attached near said opposite end, said first and second bars each having a screw hole adapted to seat a screw head, a first resilient spring clip attached to said second bar, wherein said elongated shaft has transverse teeth formed in said distal surface along the length thereof, said first resilient spring clip having a pawl portion seated between adjacent said transverse teeth and securing said second bar along the length of said elongated shaft thereby maintaining the space between said first bar and said second bar, said resilient spring clip having a retainer spanning said screw hole, said retainer including a wedge element, said wedge element having a camming and locking surface, said screw head having camming and locking surfaces located about the circumference of the screw head, whereby the first resilient spring clip will flex so as to allow the head of the screw to seat on said screw hole and upon seating of the screw head the first resilient spring clip will release on top of the screw head, and, the cooperation of wedge element and said camming and locking surfaces on said screw head provides a ratcheting relationship between the wedge element and the screw head in one rotational direction and a locking relationship in a counter rotational direction.
Claim: 2. A dynamic spinal plate of claim 1 wherein said first bar is fixed to said shaft, said first bar extending transverse to said elongated shaft, screw holes in said first bar on each side of said elongated shaft, a second resilient spring clip attached to said first bar, said second resilient spring clip having a retainer spanning each of said screw holes, whereby the resilient spring clip will flex so as to allow the head of the screw to seat on said screw hole and upon seating of the screw head the resilient spring clip will release on top of the screw head.
Claim: 3. A dynamic spinal plate of claim 2 wherein said second bar extends transverse to said elongated shaft, screw holes in said second bar on each side of said elongated shaft, said first resilient spring clip attached to said second bar having a retainer spanning each of said screw holes.
Claim: 4. A dynamic spinal plate of claim 1 wherein said elongated shaft has a longitudinal groove along each side, said second bar including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said second bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 5. A dynamic spinal plate of claim 2 wherein said elongated shaft has a longitudinal groove along each side, said second bar including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said second bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 6. A dynamic spinal plate of claim 3 wherein said elongated shaft has a longitudinal groove along each side, said second bar including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said second bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 7. A dynamic spinal plate of claim 3 wherein a third bar is slidably attached near said opposite end of said elongated shaft, said third bar extends transverse to said elongated shaft, screw holes in said third bar on each side of said elongated shaft, a third resilient spring clip fixed to said third bar having a retainer spanning each of said screw holes.
Claim: 8. A dynamic spinal plate of claim 7 wherein said elongated shaft has a longitudinal groove along each side, said second bar and said third bar each including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said third bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 9. A dynamic spinal plate of claim 2 wherein said shaft has transverse teeth formed in said distal surface along the length thereof, said first resilient spring clip attached to said second bar having a pawl portion seated between adjacent teeth.
Claim: 10. A dynamic spinal plate of claim 3 wherein said shaft has transverse teeth formed in said distal surface along the length thereof, said first resilient spring clip attached to said second bar having a pawl portion seated between adjacent teeth.
Claim: 11. A dynamic spinal plate of claim 4 wherein said shaft has transverse teeth formed in said distal surface along the length thereof, said first resilient spring clip attached to said second bar having a pawl portion seated between adjacent teeth.
Claim: 12. A dynamic spinal plate of claim 7 wherein said shaft has transverse teeth formed in said distal surface along the length thereof, each said resilient spring clip attached to said second and said third bar having a pawl portion seated between adjacent teeth.
Claim: 13. A dynamic spinal plate of claim 1 wherein said transverse teeth are angled toward said opposite end whereby said shaft may advance through said second bar shortening the distance between said first bar and said second bar, said pawl portion and said transverse teeth preventing lengthening said distance.
Claim: 14. A dynamic spinal plate of claim 13 wherein said first bar is fixed to said shaft, said first bar extending transverse to said elongated shaft, screw holes in said first bar on each side of said elongated shaft, a second resilient spring clip attached to said first bar, said second resilient spring clip having a retainer spanning each of said screw holes, said second bar extends transverse to said elongated shaft, screw holes in said second bar on each side of said elongated shaft, said first resilient spring clip attached to said second bar having a retainer spanning each of said screw holes, said elongated shaft having a longitudinal groove along each side, said second bar including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said second bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 15. A dynamic spinal plate of claim 14 wherein a third bar is slidably attached near said opposite end of said elongated shaft, said third bar extends transverse to said elongated shaft, screw holes in said third bar on each side of said elongated shaft, a third resilient spring clip fixed to said third bar having a retainer spanning each of said screw holes, said third resilient spring clip fixed to said third bar including a pawl portion, whereby said shaft may advance through said third bar shortening the distance between said first bar, said second bar, and said third bar, said pawl portion of said third resilient spring clip fixed to said third bar and said transverse teeth preventing lengthening said distance.
Claim: 16. A dynamic spinal plate adapted to stabilize vertebrae comprising an elongated shaft with a proximal surface and a distal surface, said shaft having one bar fixed at one end adapted for connection with a vertebra, said bar extending laterally normal to said elongated shaft, screw holes in said one bar on each side of said elongated shaft, said shaft having an opposite free end, said shaft having a set of transverse teeth formed on said distal surface, at least a second bar movably attached near said free end of said plate, said second bar adapted for connection with an adjacent vertebra, said second bar extending laterally normal to said elongated shaft, screw holes in said second bar on each side of said elongated shaft, said second bar including an attached resilient spring clip, said resilient spring clip having a flange engaging said teeth and securing said second bar along the length of said plate thereby maintaining the space between said one bar and said second bar, whereby upon a flexing of the resilient spring clip with an instrument the flange can be disengaged from said teeth and repositioned at a different position along said set of teeth; said resilient spring clip having a retainer spanning said screw hole, said retainer including a wedge element, said wedge element having a camming and locking surface, said screw head having camming and locking surfaces located about the circumference of the screw head, whereby the first resilient spring clip will flex so as to allow the head of the screw to seat on said screw hole and upon seating of the screw head the first resilient spring clip will release on top of the screw head, and, the cooperation of wedge element and said camming and locking surfaces on said screw head provides a ratcheting relationship between the wedge element and the screw head in one rotational direction and a locking relationship in a counter rotational direction.
Claim: 17. A dynamic spinal plate of claim 16 wherein said elongated shaft has a longitudinal groove along each side, said second bar including a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said second bar along said shaft with said central depression in close contact with said elongated shaft.
Claim: 18. A dynamic spinal plate of claim 17 wherein said transverse teeth are angled toward said opposite end whereby said shaft may advance through said second bar shortening the distance between said first bar and said second bar, said flange and said transverse teeth preventing lengthening said distance.
Claim: 19. A dynamic spinal plate of claim 18 including a third bar movably attached near said free end, said third bar having a central depression with shoulders on each side, each of said shoulders engaging said longitudinal groove along each side of said shaft for slidable movement of said third bar along said shaft with said central depression in close contact with said elongated shaft, said third bar including an additional attached resilient spring clip, said additional resilient spring clip having a flange engaging said teeth and securing said third bar along the length of said plate thereby maintaining the space between said one bar and said second bar.
Current U.S. Class: 606/264
Current International Class: 61
رقم الانضمام: edspap.20110118784
قاعدة البيانات: USPTO Patent Applications