Prosthesis revision systems and methods
View Patent ↗A system and method for allowing any surgeon, including those surgeons who perform a fewer number of a revision procedure as compared to a more experienced surgeon who performs a greater number of procedures, to provide an improved likelihood of a favorable outcome approaching, if not exceeding, a likelihood of a favorable outcome as performed by a very experienced surgeon with the revision procedure.
1. An extraction device for a prosthesis disposed in a bone having an exposed portion, comprising:
a controller including a trigger;
a support having a proximal end and a distal end opposite of said proximal end, said support further having a longitudinal axis extending from said proximal end to said distal end with said proximal end coupled to said controller, said support further having an adapter coupled to said distal end with said adapter configured to engage the exposed portion of the prosthesis; and
an oscillator coupled to said controller and to said support, said oscillator configured to control a set of vibratory pulses produced within said support;
wherein said set of vibratory pulses includes a first series of vibratory pulses applied in a first degree of freedom, said vibratory pulses of said first series of vibratory pulses having a first oscillation frequency of said support and a first oscillation magnitude of said support;
wherein said set of vibratory pulses includes a second series of vibratory pulses applied in a second degree of freedom different from said first degree of freedom, said vibratory pulses of said second series of vibratory pulses having a second oscillation frequency of said support and a second oscillation magnitude of said support; and
wherein said oscillation frequencies and said oscillation magnitudes are configured to permit extraction of the prosthesis responsive to said set of vibratory pulses without impact forces.
2. The extraction device of claim 1 wherein said first series of vibratory pulses includes a vibratory motion having a frequency greater than or equal to about 20 kHz.
3. The extraction device of claim 2 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
4. The extraction device of claim 1 wherein said first degree of freedom includes a longitudinal direction parallel to said longitudinal axis.
5. The extraction device of claim 4 wherein said second degree of freedom includes a longitudinal direction perpendicular to said longitudinal axis.
6. The extraction device of claim 5 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
7. The extraction device of claim 4 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
8. The extraction device of claim 1 wherein said first degree of freedom includes a longitudinal direction perpendicular to said longitudinal axis.
9. The extraction device of claim 8 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
10. The extraction device of claim 1 wherein said first oscillation frequency is less than about 20 kHz.
11. The extraction device of claim 10 wherein said second oscillation frequency is less than about 20 kHz.
12. The extraction device of claim 11 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
13. The extraction device of claim 10 wherein said second oscillation frequency is greater than or equal to about 20 kHz.
14. The extraction device of claim 13 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
15. The extraction device of claim 10 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
16. The extraction device of claim 1 wherein said second oscillation frequency is less than about 20 kHz.
17. The extraction device of claim 16 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
18. The extraction device of claim 1 further comprising a force applicator configured to apply an extractive force to said support during a production of said set of vibratory pulses.
19. An apparatus for extracting a bonded implant from a live bone of a patient, the prosthesis having an exposed portion, wherein non-vibratory revision forces for removing the bonded prosthesis from the live bone are in a first range, the method comprising:
means for vibrating the bonded implant to produce a vibrating bonded implant having a predetermined vibration pattern including an oscillation; and
means for extracting the vibrating bonded implant from the live bone using vibratory extraction forces in a second range, said second range including a set of values less than a lowest value of the first range.