Monitoring of a cardiac assist device
A control system for a cardiac assist device includes a sensor implantable in the body at the heart or at an implanted pump of the cardiac assist device, the sensor being for detecting motion of the pump within the body and hence being for monitoring movement of the pump, where the control system is arranged to, in use: receive signals from the sensor, the signals providing information on the movement of the pump; and to process the signals to monitor the pump speed and/or to identify pump malfunction and/or cardiac assist treatment complications.
1. A method for cardiac assistance of a patient, the method comprising using a control system with a cardiac assist device, the cardiac assist device comprising an implanted pump and a graft, and the control system including a sensor implanted in the body at the heart or at the implanted pump or the graft of the cardiac assist device, wherein the sensor is a motion sensor, the method further including the steps of:
detecting, with the sensor, a motion of the pump within the body and thereby monitoring the motion of the pump relative to the body;
receiving signals by the control system from the motion sensor, the signals providing information on the motion of the pump relative to the body;
determining information about pump function, including vibrations caused by an impeller and blood flow patterns through the pump using the signals from the sensor;
processing the signals received from the motion sensor in order to determine an acceleration signal associated with the cardiac assist device, the processing further comprising determining a presence or absence of a third harmonic in the acceleration signal;
providing an indication of a thromboembolism when the third harmonic in the acceleration signal is determined to be present; and
guiding medical treatment of the patient in an acute phase or a follow-up phase based on the indication of the thromboembolism.
2. A method as claimed in claim 1 , wherein the motion sensor is one of: an accelerometer, an inertia based sensor, an electro-mechanical position sensor, or an acoustic sensor element.
3. A method as claimed in claim 1 , wherein the motion sensor monitors physical movement of the pump and is not used to detect pump rotation speed.
4. A method of controlling a cardiac assist device associated with a body of a patient comprising: monitoring of a pump of the cardiac assist device by detecting motion of the pump within the body and hence measuring pump movement relative to the body using an implanted motion sensor; determining an acceleration signal associated with the cardiac assist device based on the movement of the pump relative to the body as measured by the motion sensor; determining a presence or absence of a third harmonic in the acceleration signal; providing an indication of a thromboembolism when the third harmonic in the acceleration signal is determined to be present; and controlling the operation of the cardiac assist device based on the indication of the thromboembolism.
5. A method as claimed in claim 4 , wherein the motion sensor is one of: an accelerometer, an inertia based sensor, an electro-mechanical position sensor, or an acoustic sensor element.
6. A method as claimed in claim 4 , wherein the motion sensor monitors physical movement of the pump and is not used to detect pump rotation speed.