Medical device for implanting in boney tissue and characterization of bone fractures
A smart medical device includes a structure configured to be at least partially implanted in a body, and an electronics cartridge that is configured to be inserted into the structure after the structure is implanted in the body. The structure may be a cannulated screw for use in treating bone fractures. The medical device includes an impedance sensor for monitoring and reporting on the healing state of bone fractures. The sensor includes components of the electronics cartridge and electrodes that are either associated with the cannulated screw or with the insertable electronics cartridge.
1. A medical device comprising:
a structure having a lumen extending at least partially therethrough, and configured to be at least partially implanted in a body;
an electronics cartridge including electronics and configured to be inserted into the lumen after implant of the structure; and
a sensor for measuring an electrical property of tissue, the sensor comprising:
a plurality of electrodes; and
a sensing module of the electronics cartridge, coupled to the plurality of electrodes; wherein
the plurality of electrodes comprises a first electrode and a second electrode; and
the sensing module is configured to enable the first electrode and the second electrode to function in either of an application mode during which a signal is applied across the electrodes, or a sensing mode during which an impedance between the electrodes is sensed.
2. The medical device of claim 1 , wherein the sensing module comprises a signal generator configured to apply signals at different frequencies to measure tissue impedance in accordance with electrical impedance spectroscopy (EIS) techniques.
3. The medical device of claim 1 , wherein:
the sensor further comprises an electrode switch;
the plurality of electrodes further comprises a third electrode and a fourth electrode switchably coupled to the sensing module through the electrode switch; and
the sensing module is further configured to enable a sensing mode during which an impedance between the third electrode and the fourth electrode is sensed.
4. The medical device of claim 3 , wherein the sensing module comprises a signal generator configured to apply signals at different frequencies to measure tissue impedance in accordance with electrical impedance spectroscopy (EIS) techniques.
5. The medical device of claim 1 , wherein the electrical property of tissue comprises impedance measurements, and further comprising a controller configured to process impedance measurements over time to determine a characterization of a bone fracture, the characterization corresponding to a healing state of the bone fracture.
6. The medical device of claim 5 , wherein the healing state corresponds to one of union, likely non-union, and non-union.
7. The medical device of claim 1 , wherein:
the plurality of electrodes are associated with the structure and spaced apart to enable placement of the first electrode and the second electrode on opposite sides of a bone fracture; and
the electronics cartridge comprises a plurality of electrical contacts located to electrically couple with the plurality of electrodes when the electronics cartridge is inserted into the lumen of the structure.
8. The medical device of claim 1 , wherein:
the plurality of electrodes are associated with the electronics cartridge and spaced apart to enable placement of the first electrode and the second electrode on opposite sides of a bone fracture.