IL277236A

Systems and methods for estimating a position of a heart pump

Abstract

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19 claims: 10 independent, 9 dependent

  1. 1
    1846265 201-WO1 We claim:1. A method for estimating a position of a heart pump system in a patient, the method comprising: receiving first data indicative of a time-varying motor current during a first period of time in the heart pump system, wherein the time-varying motor current corresponds to an amount of current delivered to a motor of the heart pump system, while the heart pump system is operating in the patient;receiving second data indicative of a time-varying differential pressure during the first period of time, wherein the time-varying differential pressure corresponds to a difference in pressure between an inner portion of the heart pump system and an outside of the heart pump system and is further indicative of a position of the heart pump system relative to patient’s heart;receiving third data indicative of time-varying motor current during a second period of time later than the first period of time;and determining an estimate of time-varying differential pressure during the second period of time from the third data and a relationship between the first data and the second data, wherein the estimate is usable to predict the position of the heart pump system in the patient.
  2. 4
    The method of any of claims 1-3, further comprising:providing a first indicator that the differential pressure sensor has failed;and providing a second indicator that the estimate of time-varying differential pressure during the second period of time is simulated.
  3. 5
    The method of any of the above claims, wherein the determining the estimate of time-varying differential pressure during the second period of time comprises determining a time series of estimated points by determining whether the third data corresponds to a first phase or a second phase in the relationship between the first data and the second data.
  4. 7
    The method of any of the above claims, further comprising:determining, based on the estimate of time-varying differential pressure, at least one of: flow rate, position, and suction associated with the heart pump system
  5. 8
    The method of any of the above claims, further comprising displaying at least one of:the time-varying differential pressure, the motor current, and the estimate of time-varying differential pressure.
  6. 9
    The method of any of the above claims, further comprising determining the time-varying differential pressure is drifting.
  7. 10
    The method of claim any of the above claims, wherein determining the timevarying differential pressure is drifting comprises:comparing the time-varying differential pressure to the estimate of time-varying differential pressure for a second period of time;calculating, based on comparing the time-varying differential pressure to the estimate of time-varying differential pressure, a difference between the time-varying differential pressure and the estimate of time-varying differential pressure over the second period of time;comparing the difference to a differential pressure signal threshold;and determining, based on comparing the difference to the differential pressure signal threshold, the difference is greater than the differential pressure signal threshold.
  8. 11
    The method of claim any of the above claims, further comprising:AMERICAS 99119272 1846265 201-WO1 based on determining the time-varying differential pressure is drifting, displaying a notice indicating the differential pressure sensor needs to be re-calibrated.
  9. 12
    The method of claim any of the above claims, further comprising:based on determining the time-varying differential pressure is drifting, automatically re-calibrating the differential pressure sensor.
  10. 13
    The method of any of the above claims, wherein the relationship between the relationship between the first data and the second data is determined by:determining a correlation, for each point of time in the first period of time, between the motor current and the time-varying differential pressure;and calculating a multilinear fit for correlation, wherein the multilinear fit is indicative of operating characteristics of the heart pump system.
  11. 14
    The method of any of the above claims, wherein the first data and second data are representative of the heart pump system operating at a first operating level, and wherein the method further comprises:changing operation of the heart pump system to a second operating level;and scaling, based on changing the operation of the heart pump system to the second level, the relationship between the first and second data to account for the second operating level, wherein determining the estimate of time-varying differential pressure is further based on scaling the relationship. AMERICAS 99119272 1846265 201-WO1
  12. 15
    A system comprising a controller configured to perform the method of any of claims 1-14.
  13. 16
    A heart pump system comprising:a pump comprising a pump housing and a rotor, the pump housing having a proximal end;a cannula comprising a proximal end that interfaces with the distal end of the pump housing and a distal end, the pump being configured to be operated by a motor;an elongate catheter extending proximal of the pump housing;one or more sensors, including a differential pressure sensor;and a controller configured to: perform the method of any of claims 1-14.