Claims
- 1. Instrumentation for delivering an implant into a vertebral space, comprising:
a die member defining an opening sized to receive the implant while in an initial configuration; and wherein said die member is configured such that relative displacement between the implant and said die member causes the implant to transition from the initial configuration to a deformed configuration having a reduced lateral profile relative to the initial configuration.
- 2. The instrumentation of claim 1, wherein said die member includes a number of guides to facilitate transitioning of the implant from the initial configuration to a folded configuration.
- 3. The instrumentation of claim 1, wherein said opening comprises a passage extending along an axis, said passage including:
a first portion defining a first transverse dimension sized to receive the implant while in the initial configuration; and a second portion defining a second transverse dimension less than said first transverse dimension; and wherein axial displacement of the implant toward said second portion of said passage transitions the implant from the initial configuration toward the deformed configuration.
- 4. The instrumentation of claim 3, wherein said first portion of said passage has a substantially rectangular cross-section.
- 5. The instrumentation of claim 3, wherein said second portion of said passage has a substantially circular cross-section.
- 6. The instrumentation of claim 3, wherein said first portion of said passage has a substantially rectangular cross-section and wherein said second portion of said passage has a substantially circular cross-section.
- 7. The instrumentation of claim 3, wherein said passage is inwardly tapered in a transverse direction from said first portion toward said second portion to facilitate transitioning of the implant from the initial configuration toward the deformed configuration.
- 8. The instrumentation of claim 3, wherein said die member includes a number of folding elements extending axially along at least a portion of said passage to facilitate transitioning of the implant from the initial configuration toward the deformed configuration.
- 9. The instrumentation of claim 8, wherein said folding elements have a triangular configuration.
- 10. The instrumentation of claim 8, wherein said folding elements are inwardly tapered toward one another in a transverse direction from said first portion of said passage toward said second portion of said passage to facilitate transitioning of the implant from the initial configuration toward the deformed configuration.
- 11. The instrumentation of claim 8, wherein said passage is bound by a first surface and an oppositely facing second surface, a first series of said folding elements extending from said first surface, a second series of said folding elements extending from said second surface.
- 12. The instrumentation of claim 11, wherein said first series of said folding elements are transversely offset relative to said second series of said folding elements.
- 13. The instrumentation of claim 12, wherein said first series of said folding elements are transversely disposed in an alternating manner relative to said second series of said folding elements.
- 14. The instrumentation of claim 3, wherein said die member defines a series of grooves extending axially along at least a portion of said passage to facilitate transitioning of the implant from the initial configuration toward the deformed configuration.
- 15. The instrumentation of claim 3, wherein said second transverse dimension is less than half of said first transverse dimension.
- 16. The instrumentation of claim 15, wherein said second transverse dimension is less than one-third of said first transverse dimension.
- 17. The instrumentation of claim 1, further comprising a delivery member adapted to engage and selectively retain the implant in the deformed configuration prior to insertion into the vertebral space.
- 18. The instrumentation of claim 17, wherein said delivery member is releasably coupled to said die member.
- 19. The instrumentation of claim 18, wherein said delivery member is releasably coupled to said die member by a frangible connection portion.
- 20. The instrumentation of claim 17, wherein said die member and said delivery member are unitarily formed as a single-piece structure.
- 21. The instrumentation of claim 17, wherein said delivery member defines a cavity extending at least partially therethrough, said cavity sized to receive the implant while in the deformed configuration.
- 22. The instrumentation of claim 21, wherein said delivery member comprises a cannula tube.
- 23. The instrumentation of claim 21, wherein said delivery member includes a discharge member at least partially disposed within said cavity and adapted to discharge the implant from said cavity and into the vertebral space.
- 24. The instrumentation of claim 23, wherein said discharge member comprises a rod axially displaceable along said cavity to engage the implant and to discharge the implant from said cavity and into the vertebral space.
- 25. The instrumentation of claim 1, further comprising at least one force application member adapted to engage the implant and displace the implant relative to said die member to cause the implant to transition from the initial configuration toward the deformed configuration.
- 26. The instrumentation of claim 25, wherein said at least one force application member comprises at least one filament member engaged with the implant whereby axial tensioning of said at least one filament member results in axial displacement of the implant relative to said die member to cause the implant to transition from the initial configuration toward the deformed configuration.
- 27. The instrumentation of claim 24, wherein said at least one filament member comprises a suture.
- 28. The instrumentation of claim 27, wherein said suture comprises a suture loop extending through an aperture defined by the implant.
- 29. The instrumentation of claim 1, wherein said die member is formed from a block of material.
- 30. Instrumentation for delivering an implant into a vertebral space, comprising:
a carrier cartridge defining a cavity configured to receive the implant; a deployment cannula having a proximal end and a distal end, said distal end configured to insert the implant into the vertebral space; and at least one folding die defined by at least one of said carrier cartridge and said deployment cannula, said folding die forming an inwardly decreasing taper in a direction from said cavity to said deployment cannula so as to reconfigure the implant from a relatively flat configuration toward a substantially cylindrical configuration as the implant is displaced through said cavity toward said deployment cannula.
- 31. The instrumentation of claim 30, further comprising means for applying a force onto the implant to displace the implant from said cavity toward said deployment cannula.
- 32. The instrumentation of claim 30, further comprising means for discharging the implant from said deployment cannula and into the vertebral space.
- 33. The instrumentation of claim 30, further comprising means for releasably connecting said carrier cartridge to said deployment cannula.
- 34. Instrumentation for delivering an implant into a vertebral space, comprising:
means for transitioning the implant from a substantially planar configuration to a non-planar configuration; means for selectively retaining the implant in said non-planar configuration; and means for inserting the implant into the vertebral space.
- 35. A system for treatment of a portion of the spine, comprising:
an implant; and a die member defining an opening sized to receive the implant while in an initial configuration; and wherein said die member is configured such that relative displacement between the implant and said die member causes the implant to transition from the initial configuration toward a deformed configuration having a reduced lateral profile relative to the initial configuration.
- 36. The system of claim 35, wherein said opening comprises a passage extending along an axis, said passage including:
a first portion defining a first transverse dimension sized to receive the implant while in the initial configuration; and a second portion defining a second transverse dimension less than said first transverse dimension; and wherein axial displacement of the implant toward said second portion of said passage transitions the implant from the initial configuration toward the deformed configuration.
- 37. The system of claim 36, wherein said second transverse dimension is less than half of said first transverse dimension.
- 38. The system of claim 36, wherein said second transverse dimension is less than one-third of said first transverse dimension.
- 39. The system of claim 35, wherein said initial configuration of said implant is substantially planar.
- 40. The system of claim 35, wherein said deformed configuration of said implant is substantially cylindrical.
- 41. The system of claim 35, wherein said initial configuration of said implant is substantially planar, and wherein said deformed configuration of said implant is substantially cylindrical.
- 42. The system of claim 35, wherein said deformed configuration of said implant comprises a folded configuration.
- 43. The system of claim 35, wherein said deformed configuration of said implant comprises a rolled configuration.
- 44. The system of claim 35, wherein said deformed configuration of said implant comprises a curled configuration.
- 45. The system of claim 35, further comprising at least one filament member attached to the implant whereby tensioning of said at least one filament member results in axial displacement of said implant relative to said die member to cause the implant to transition from said initial configuration toward said deformed configuration.
- 46. The system of claim 35, wherein said implant is formed of a thin, flexibly deformable material to facilitate transitioning from said initial configuration toward said deformed configuration.
- 47. The system of claim 46, wherein said implant is formed of an elastically deformable material to facilitate reformation from said deformed configuration back toward said initial configuration.
- 48. The system of claim 35, wherein said implant includes one or more features that facilitate deformation of said implant from said initial configuration to said deformed configuration and reformation back toward said initial configuration.
- 49. The system of claim 35, wherein said implant is a prosthetic nucleus pulposus adapted for delivery into an intervertebral space between adjacent vertebrae.
- 50. A method for delivering an implant into a vertebral space, comprising:
providing an implant; providing a die member defining an opening sized to receive the implant while in an initial configuration; displacing the implant relative to the die member; and transitioning the implant from the initial configuration to a deformed configuration having a reduced lateral profile relative to the initial configuration.
- 51. The method of claim 50, further comprising temporarily retaining the implant in the deformed configuration.
- 52. The method of claim 50, further comprising inserting the implant into the vertebral space while in the deformed configuration.
- 53. The method of claim 52, further comprising:
providing a delivery member; engaging the delivery member with the implant while in the deformed configuration; and selectively retaining the implant in the deformed configuration prior to the inserting.
- 54. The method of claim 53, wherein the delivery member is releasably coupled to the die member; and
further comprising selectively detaching the die member from the delivery member prior to the inserting.
- 55. The method of claim 54, wherein the detaching comprises breaking.
- 56. The method of claim 52, further comprising reforming the implant back toward the initial configuration.
- 57. The method of claim 50, wherein the opening in the forming die comprises a passage extending along an axis, the passage including a first portion defining a first transverse dimension and a second portion defining a second transverse dimension less than the first transverse dimension, the first portion of the passage sized to receive the implant while in the initial configuration; and
wherein the method further comprises axial displacing the implant toward the second portion of the passage to transition the implant from the initial configuration toward the deformed configuration.
- 58. The method of claim 57, further comprising pre-loading the implant within the first portion of the passage.
- 59. The method of claim 50, wherein the transitioning comprises folding.
- 60. The method of claim 50, wherein the transitioning comprises rolling.
- 61. The method of claim 50, wherein the transitioning comprises curling.
- 62. The method of claim 50, wherein the displacing comprises applying a pulling force onto the implant.
- 63. The method of claim 50, wherein the transitioning comprises drawing the implant across a number of guides defined by the die member.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of pending U.S. Provisional Application Serial No. 60/341,343, filed Dec. 13, 2001, and is a continuation-in-part application of pending U.S. patent application Ser. No. 09/998,978, filed Nov. 15, 2001, which claims the benefit of U.S. Provisional Application Serial No. 60/248,807, filed Nov. 15, 2000, and is also a continuation-in-part application of pending U.S. patent application Ser. No. 09/559,899, filed Apr. 26, 2000, which claims the benefit of U.S. Provisional Application Serial No. 60/131,053, filed Apr. 26, 1999, the contents of each application hereby being incorporated by reference in their entirety.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60341343 |
Dec 2001 |
US |
|
60248807 |
Nov 2000 |
US |
|
60131053 |
Apr 1999 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09998978 |
Nov 2001 |
US |
Child |
10317632 |
Dec 2002 |
US |
Parent |
09559899 |
Apr 2000 |
US |
Child |
10317632 |
Dec 2002 |
US |