Nova Patents
CA2811606C

Generating artificial pulse

Abstract

In order to produce a pulsatile blood flow pattern that includes time periods of relatively high blood flow rates and time periods of relatively low blood flow rates, the operating speed of a blood pump can be selectively controlled to produce an operating speed pattern that includes time periods of relatively high rotation speeds and periods of relatively low rotation speeds. For example, the blood pump is rotated at a first speed for a first period of time. The speed of the blood pump is then decreased from the first speed to a second speed and is operated at the second speed for a second amount of time. The speed of the blood pump is then decreased to a third speed for a third amount of time. If desired, the operating speed pattern can be repeated to continue the pulsatile blood flow pattern.

CA2811606C, drawing sheet 1
Sheet 1 of 3

Term

Projected expiry 23 September 2031.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Projected expiry

16 claims: 12 independent, 4 dependent

  1. 1
    81637368
  2. 2
    5. The controller of any one of claims 1 to 4, wherein operating the blood pump at the first speed, reducing the speed of the blood pump from the first speed to the second speed, operating the blood pump at the second speed, reducing the speed of the blood pump from the second speed to the third speed, operating the blood pump at the third speed, and increasing the speed of the blood pump from the third speed to the first speed comprise a cycle, and wherein the generated waveform is configured to repeat the cycle.
  3. 5
    8. lhe controller of claim 5, wherein operating the blood pump at the second speed for the second period of time includes operating the blood pump to produce a blood flow rate that has a predetermined relationship relative to an average blood flow rate for the cycle, optionally wherein the predefined relationship is a predefined range of the average blood flow rate which is within 30% of lhe average flow rate.
  4. 7
    10. The controller of any one of claims 1 to 5, wherein the second period of time is longer than a sum of the first period of time and the third period of time.
  5. 8
    11. The controller of any one of claims 1 to 10, wherein the generated waveform is configured to change the speed of the blood pump from one or more of a step-wise change in speed and a curvilinear change in speed. Cft 2811606 2017-11-10 81637368
  6. 9
    12. The controller of any one of claims 1 to 11, wherein the generated waveform operates the blood pump at the second speed during a contraction of a ventricle of a human heart that is in blood flow communication with the blood pump.
  7. 10
    13. The controller of any one of claims 1 to 12, further comprising, a processor configured to determine, based on a relationship between a speed of the blood pump and a power consumption of the blood pump, a synchronization between operating the blood pump at the second speed and a contraction of a ventricle of a human heart that is in blood flow communication with the blood pump.
  8. 11
    14. The controller of any one of claims 1 to 13, wherein the generated waveform drives the blood pump to generate a temporal rate of change of blood pressure that approximates a temporal rate of change of blood pressure of a physiologic puise.
  9. 12
    15. The controller of any one of claims 1 to 14, wherein the generated waveform is further configured to produce a corresponding change in pump operating speed at a desired time.
  10. 13
    16. The controller of any one of claims 1 to 15, wherein the second period of time is greater than the first period of time.
  11. 14
    17. The controller of any one of claims 1 to 16, wherein increasing the speed of the blood pump from the third speed to the first speed comprises increasing the speed of the blood pump to cause a pulsed pressure of 10 mml Ig or more.
  12. 15
    18. The controller of any one of claims 1 to 16, wherein increasing the speed of the blood pump from the third speed to the first speed comprises increasing the speed of the blood pump to cause a pulsed pressure of between about 20 mml Ig and about 40 mmHg.
  13. 16
    19. The controller of any one of claims 1 to 18, wherein a speed differential between the third speed and the first speed is 1000 rpm or more. Cft 2811606 2017-11-10 OA 02811606 2013-03-18 (12) INTERNATIONAL APPLICATION PUBLISHED UNDER THE PATENT COOPERATION TREATY (PCT) (19) World Intellectual Property Organization International Bureau (43) International Publication Date 29 March 2012 (29.03.2012) PCT (10) International Publication Number WO 2012/040551 Al (51) International Pa tent Class iflcati on :A61M1/10 (2006.01) (21) International Application Number: PCT/US2011/052912 (22) International Filing Date: 23 September 2011 (23.09.2011) (25) Filing Language: English (26) Publication Language: English (30) Priority Data: 61/386,018 24 September 2010 (24.09.2010) US (71) Applicant (for all designated States except US): THOR- ATEC CORPORATION [US/US];6035 Stoneridge Drive, Pleasanton, California 94588 (US). (72) Inventor;and (75) Inventor/Applicant (for US only): BOURQUE, Kevin [US/US];25 Auburn Street, Reading, Massachusetts 08167-2135 (US). (74) Agents: JEPSEN, Nicholas et al.;Fish & Richardson P.C., P.O. Box 1022, Minneapolis, Minnesota 55440-1022 (US). (81) Designated States (unless otherwise indicated, for evenkind of national protection available): AE, AG, AL, AM, AO, AT, AU, AZ, BA, BB, BG, BH, BR, BW, BY, BZ, CA, CH, CL, CN, CO, CR, CU, CZ, DE, DK, DM, DO, DZ, EC, EE, EG, ES, FI, GB, GD, GE, GH, GM, GT, HN, HR, HU, ID, IL, IN, IS, IP, KE, KG, KM, KN, KP, KR, KZ, LA, LC, LK, LR, LS, LT, LU, LY, MA, MD, ME, MG, MK, MN, MW, MX, MY, MZ, NA, NG, NL NO, NZ, OM, PE, PG, PH, PL, PT, QA, RO, RS, RU, RW, SC, SD, SE, SG, SK, SL, SM, ST, SV, SY, TH, TJ, TM, TN, TR, TT, TZ, UA, UG, US, UZ, VC, VN, ZA, ZM, ZW. (84) Designated States (unless otherwise indicated, for evenkind of regional protection available): ARIPO (BW, GH, GM, KE, LR, LS, MU', MZ, NA, SD, SL, SZ, TZ, UG, ZM, ZW), Eurasian (AM, AZ, BY, KG, KZ, MD, RU, TJ, TM), European (AL, AT, BE, BG, CH, CY, CZ, DE, DK, EE, ES, FI, FR, GB, GR, HR, HU, Œ, IS, IT, LT, LU, LV, MC, MK, MT, NL, NO, PL, PT, RO, RS, SE, SL SK, SM, TR), OAPI (BF, BJ, CF, CG, CL CM, GA, GN, GQ, GW, ML, MR, NE, SN, TD, TG). Published: — with international search report (An. 21 (3)) wo 2012/040551 Al IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIW^ (57) Abstract: In order to produce a pulsatile blood flow pattern that includes time periods of relatively high blood flow rates and time periods of relatively low blood flow rates, the operating speed of a blood pump can be selectively controlled to produce an operating speed pattern that includes time periods of relatively high rotation speeds aud periods of relatively low rotation speeds. For example, the blood ptunp is rotated at a first speed for a first period of time. The speed of the blood pump is then decreased from the first speed to a second speed and is operated at the second speed for a second amount of time. The speed of the blood pump is then decreased to a third speed for a third amount of time. If desired, the operating speed pattern can be repeated to continue die pulsatile blood flow pattern.