Use of Magnetic Fields in Orthopedic Implants
An orthopedic device is adapted to be implanted between a first bone and a second bone of a skeletal structure. The device includes magnetically charged members that emit magnetic fields that determine the interaction of members of the device.
1 . An orthopedic device adapted to be implanted between a first bone and a second bone of a skeletal structure, comprising:
a first member having an abutment surface adapted to contact a surface of the first bone, wherein the first member emits a first magnetic field of a first polarity;
a second member having an abutment surface adapted to contact a surface of the second bone, wherein the second member emits a second magnetic field of the same polarity as the first polarity; and
at least one bearing member between the first and second members that permits relative movement between the first and second members and that bears a load between the first and second members, wherein the load on the bearing surface is reduced as a result of an interaction of the magnetic fields.
2 . A device as in claim 1 , wherein the first and second bones are first and second vertebrae.
3 . A device as in claim 1 , wherein at least one of the first and second members is partially manufactured of a magnetic material.
4 . A device as in claim 1 , wherein at least one of the first and second members is entirely manufactured of a magnetic material.
5 . A device as in claim 1 , wherein a magnet is removably mounted in at least one of the first and second members.
6 . An orthopedic device adapted to be implanted between a first bone and a second bone of a skeletal structure, comprising:
a first abutment member having an abutment surface adapted to contact a surface of the first bone;
a first magnetic member at least partially contained within the first abutment member, wherein the first magnetic member emits a first magnetic field of a first polarity;
a second abutment member having an abutment surface adapted to contact a surface of the second bone; and
a second magnetic member at least partially contained within the second abutment member, wherein the second magnetic member emits a second magnetic field of the same polarity as the first polarity;
wherein the first and second abutment members have a spatial relationship that is at least partially determined by an interaction of the first and second magnetic fields.
7 . A device as in claim 6 , wherein the first and second abutment members can translate relative to one another and wherein the extent of translation is at least partially determined by an interaction of the first and second magnetic fields.
8 . A device as in claim 6 , wherein the first and second abutment members can rotate relative to one another and wherein the extent of rotation is at least partially determined by an interaction of the first and second magnetic fields.
9 . An orthopedic device adapted to be implanted between a first bone and a second bone of a skeletal structure, comprising:
a first abutment member having an abutment surface adapted to contact a surface of the first bone;
a first magnetic member at least partially contained within the first abutment member, wherein the first magnetic member emits a first magnetic field;
a second abutment member having an abutment surface adapted to contact a surface of the second bone; and
a second magnetic member at least partially contained within the second abutment member, wherein the second magnetic member emits a second magnetic field;
wherein the first and second abutment members have a default spatial relationship and wherein movement of the first and second members away from the default spatial relationship is opposed by interaction of the first and second magnetic fields.
10 . A device as in claim 9 , wherein the first and second magnetic fields are of the same polarity.
11 . A device as in claim 9 , wherein the first and second magnetic members attract one another.
12 . A device as in claim 9 , wherein the first and second magnetic members repel one another.
13 . An orthopedic device adapted to be implanted between a first bone and a second bone of a skeletal structure, comprising:
a first abutment member having an abutment surface adapted to contact a surface of the first bone;
a first magnetic member at least partially contained within the first abutment member, wherein the first magnetic member emits a first magnetic field; and
a second abutment member having an abutment surface adapted to contact a surface of the second bone;
a second magnetic member at least partially contained within the second abutment member, wherein the second magnetic member emits a second magnetic field;
wherein the first and second members can move relative to one another and wherein relative movement between the first and second members is at least partially hindered by interaction of the magnetic fields.
14 . A device as in claim 13 , wherein the first and second magnetic members attract one another.
15 . A device as in claim 13 , wherein the first and second magnetic members repel one another.
16 . An orthopedic device adapted to be implanted in a patient, comprising:
a first member having an abutment surface adapted to attach to a surface of a bone so as to aid in segmental stabilization of the patient's skeletal system; and
a first magnetic member at least partially contained within the first abutment member, wherein the first magnetic member emits a first magnetic field such that the magnetic field reaches a tissue of the patient.