Spinal implant having a post-operative adjustable dimension
A spinal implant ( 40 ) including first spinal attachment member ( 44 ) for attaching to a first spinal portion ( 41 ), second spinal attachment member ( 46 ) for attaching to a second spinal portion ( 42 ), and a post-implantation variable dimension device disposed between the first and second spinal attachment members, which is operable after completing surgery in which said spinal implant was installed into a patient, to cause relative movement between the first and second spinal attachment members.
1. A spinal implant comprising:
first spinal attachment member, having a top surface and an inner surface, for attaching to a first spinal portion;
second spinal attachment member, having a bottom surface and an inner surface, for attaching to a second spinal portion; and
a post-implantation variable dimension device disposed between said first and second spinal attachment members, which is operable after completing surgery in which said spinal implant was installed into a patient, to cause relative movement between said first and second spinal attachment members;
wherein said post-implantation variable dimension device comprises threaded shafts, which do not have a common longitudinal axis, driven by a gear train activated by a remotely controlled motor, wherein said first and second spinal attachment members are each tapped with threaded through holes to accept said threaded shafts to allow said threaded shafts to move through said top surface of said first spinal attachment member and said bottom surface of said second spinal attachment member and to thereby move said first spinal attachment member with respect to said second spinal attachment member.
2. The spinal implant according to claim 1 , further comprising a processor that is programmable to be activated at any desired time interval for any desired load and travel limits.
3. The spinal implant according to claim 1 , wherein said post-implantation variable dimension device comprises circuitry for operating in a sleep mode.
4. The spinal implant according to claim 1 , wherein said post-implantation variable dimension device is powered by a battery disposed in said spinal implant.
5. The spinal implant according to claim 4 , wherein said battery is chargeable using remote energy transfer.
6. The spinal implant according to claim 1 , wherein said first and second spinal attachment members are each tapped with threaded holes to accept said threaded shafts, and gear pulleys are connected to said threaded shafts and are driven by a gear, wherein rotation of said gear changes a distance between said first and second spinal attachment members.
7. The spinal implant according to claim 1 , wherein some of said threaded shafts have left-handed threads and some of said threaded shafts have right-handed threads.
8. A spinal implant for causing distraction between a superior spinous process and an inferior spinous process in a body, the implant comprising:
a first support plate, having a top surface and an inner surface, positioned inferiorly to the superior spinous process;
a second support plate, having a bottom surface and an inner surface, positioned superiorly to the inferior spinous process; and
a post-implantation variable dimension device disposed between said first and second support plates, which is operable after completing surgery in which said spinal implant was installed into a patient to cause relative movement between said first and second spinal attachment members, wherein said post-implantation variable dimension device comprises threaded shafts, which do not have a common longitudinal axis, and which are turned by a gear train activated by a remotely controlled motor, wherein rotation of said gear train causes said first support plate to push against the superior spinous process in a superior direction and said second support plate to push against the inferior spinous process in an inferior direction and changes a distance between said first and second support plates; and
wherein said first and second support plates are each tapped with threaded through holes to accept said threaded shafts to allow said threaded shafts to move through said top surface of said first support plate and said bottom surface of said second support plate and to thereby move said first support plate with respect to said second support plate.
9. The spinal implant according to claim 8 , wherein said first and second support plates are positioned between said threaded shafts.
10. The spinal implant according to claim 1 , wherein said threaded shafts are encapsulated in said first and second attachment members.