INTELLIGENT KNEE JOINT PROSTHESIS
Tibial inserts and tibial extensions coupled to a sensor, and systems including such devices, can generate data and analysis based on that data, which may be used to identify and/or address problems associated with the implanted medical device, including incorrect placement of the device, unanticipated degradation of the device, and undesired movement of the device. Also provided are tibial inserts and tibial extensions coupled to a sensor, and devices and methods to address problems that have been identified with an implanted medical device.
1 - 4 . (canceled)
5 . A tibial insert, comprising:
a tibial portion configured to engage a tibial plate of a knee prosthesis;
a femoral portion configured to engage a femoral head of the knee prosthesis and attached to the tibial portion; and
a circuit.
6 - 8 . (canceled)
9 . The tibial insert of claim 5 wherein the circuit is configured:
to generate at least one signal representative of a movement;
to determine whether the signal meets at least one first criterion; and
to send the signal to a remote location in response to determining that the signal meets the at least one first criterion.
10 . The tibial insert of claim 5 wherein the circuit includes at least one load sensor.
11 . The tibial insert of claim 10 wherein each of at least one of the at least one load sensor includes a respective piezoelectric load sensor.
12 . The tibial insert of claim 10 wherein each of at least one of the at least one load sensor includes a respective energy-wave load sensor.
13 . The tibial insert of claim 5 wherein the circuit comprises an implantable circuit that includes:
at least one load sensor each configured to generate a respective load signal representative of a movement;
a control circuit configured to determine whether each respective load signal meets at least one first criterion; and
a transceiver circuit configured to send, to a remote location, each load signal that the control circuit determines as meeting the at least one first criterion.
14 . The tibial insert of claim 5 , further comprising:
a medial region;
a lateral region; and
wherein the circuit comprises
a medial load sensor disposed in the medial region, and
a lateral load sensor disposed in the lateral region.
15 . The tibial insert of claim 5 wherein the circuit includes a power supply configured to receive power from a tibial extension.
16 . The tibial insert of claim 5 wherein the circuit includes a power supply configured to receive power from a battery disposed on a tibial extension.
17 . The tibial insert of claim 5 wherein the circuit includes:
a first battery; and
a power supply configured to receive power from a second battery located on a tibial extension and to charge the first battery in response to the power received from the second battery.
18 . The tibial insert of claim 5 wherein the circuit includes a transceiver configured to communicate with the tibial extension.
19 . The tibial insert of claim 5 wherein the circuit includes a transceiver configured to communicate with another circuit located on the tibial extension.
20 . The tibial insert of claim 5 wherein the circuit includes:
a power supply configured to receive power from a tibial extension; and
a transceiver configured to communicate with the tibial extension.
21 . The tibial insert of claim 5 wherein the circuit includes:
a power supply configured to receive power from battery located on a tibial extension; and
a transceiver configured to communicate with another circuit located on the tibial extension.
22 . The tibial insert of claim 5 wherein the circuit includes:
a first battery;
a power supply configured to receive power from a second battery located on a tibial extension and to charge the first battery in response to the received power; and
a transceiver configured to communicate with another circuit located on the tibial extension.
23 - 136 . (canceled)