Body position and activity based flow control for ventricular assist device (VAD) with fully implantable controller
A controller for an implantable blood pump, includes an accelerometer configured to measure at least one from the group consisting of position and movement of the controller. Processing circuitry is configured to control operation of the implantable blood pump, the processing circuitry being in communication with the accelerometer, the processing circuitry being configured to adjust a speed of the implantable blood pump if the measured at least one from the group consisting of position and movement deviates from a respective predetermined threshold.
1. A controller for an implantable blood pump, comprising:
a sensor configured to measure a set of factors comprising at least one of position or movement of the controller; and
processing circuitry configured to control operation of the implantable blood pump, the processing circuitry being in communication with the sensor, the processing circuitry being configured to:
adjust a speed of the implantable blood pump in response to:
an initial detection of at least one factor of the set of factors deviating from a respective predetermined threshold; and
a duration of movement measured by the sensor being greater than or equal to a predetermined amount of time, wherein the duration of movement measured by the sensor coincides with or follows the initial detection.
2. The controller of claim 1 , wherein the respective predetermined threshold for the position is a change in position of the controller from supine to upright or upright to supine.
3. The controller of claim 1 , wherein the respective predetermined threshold for the measured movement is a predetermined activity level.
4. The controller of claim 1 , wherein the processing circuitry is further configured to maintain a predetermined average flow rate in response to adjusting the speed of the implantable blood pump.
5. The controller of claim 1 , wherein adjusting the speed of the implantable blood pump comprises increasing or reducing the speed by a predetermined incremental amount.
6. The controller of claim 5 , wherein the predetermined incremental amount is between 50-400RPM.
7. The controller of claim 5 , wherein the predetermined incremental amount is set by a clinician.
8. The controller of claim 1 , wherein the controller is configured to be implanted within a patient.
9. The controller of claim 1 , wherein the sensor is an accelerometer.
10. A method comprising:
measuring, by a sensor of a controller for an implantable blood pump, a set of factors comprising at least one of position or movement of the controller; and
adjusting, by processing circuitry of the implantable blood pump, a speed of the implantable blood pump in response to:
an initial detection of at least one factor of the set of factors deviating from a respective predetermined threshold; and
a duration of movement measured by the sensor being greater than or equal to a predetermined amount of time, wherein the duration of movement measured by the sensor coincides with or follows the initial detection.
11. The method of claim 10 , wherein the respective predetermined threshold for the position is a change in position of the controller from supine to upright or upright to supine.
12. The method of claim 10 , wherein the respective predetermined threshold for the measured movement is a predetermined activity level.
13. The method of claim 10 , further comprising maintaining, by the processing circuitry, a predetermined average flow rate in response to adjusting the speed of the implantable blood pump.
14. The method of claim 10 , wherein adjusting the speed of the implantable blood pump comprises increasing or reducing the speed by a predetermined incremental amount.
15. The method of claim 14 , wherein the predetermined incremental amount is between 50-400RPM.
16. The method of claim 14 , wherein the predetermined incremental amount is set by a clinician.
17. The method of claim 10 , wherein the controller is configured to be implanted within a patient.
18. The method of claim 10 , wherein the sensor is an accelerometer.