Literature DB >> 21243383

A novel counterpulse drive mode of continuous-flow left ventricular assist devices can minimize intracircuit backward flow during pump weaning.

Masahiko Ando1, Takashi Nishimura, Yoshiaki Takewa, Daisuke Ogawa, Kenji Yamazaki, Koichi Kashiwa, Shunei Kyo, Minoru Ono, Yoshiyuki Taenaka, Eisuke Tatsumi.   

Abstract

Recent developments in adjunct therapeutic options for end-stage heart failure have enabled us to remove implanted left ventricular assist devices (LVADs) from more patients than before. However, a safe and proper protocol for pump-off trials is yet to be established, because diastolic backward flow in a pump circuit turns up when it is driven at low-flow conditions. We have developed a novel drive mode of centrifugal pumps that can change its rotational speed in synchronization with the cardiac cycle of the native heart. The purpose of this study was to test-drive this novel system of a centrifugal pump in a mock circulation and to evaluate the effect of the counterpulse mode, which increases pump speed just in diastole, on the amount of this nonphysiological intracircuit retrograde flow. A rotary pump (EVAHEART, Sun Medical Technology Research Corporation) was connected to the mock circulation by left ventricular uptake and ascending aortic return. We drove it in the following four conditions: (A) continuous mode at 1500 rpm, (B) counterpulse mode (systolic 1500 rpm, diastolic 2500 rpm), (C) continuous mode at 2000 rpm, and (D) counterpulse mode (systolic 2000 rpm, diastolic 2500 rpm). Data concerning the rotation speed, pump flow, left ventricular pressure, aortic pressure, and pressure head (i.e., aortic pressure-left ventricular pressure) in each condition were collected. After data collection, we analyzed pump flow, and calculated its forward and backward flow. Counterpulse mode decreased the amounts of pump backward flow compared with the continuous mode [mean backward flow, -4, -1, -0.5, 0 l/min, in (A), (B), (C), and (D) conditions, respectively]. The actual amounts of mean backward flow can be different from those in clinical situations; however, this novel drive mode for rotary pumps can relatively decrease pump backward flow during pump weaning and can be beneficial for safe and proper pump-off trials. Further investigations in in vivo settings are currently ongoing.

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Year:  2011        PMID: 21243383     DOI: 10.1007/s10047-010-0544-6

Source DB:  PubMed          Journal:  J Artif Organs        ISSN: 1434-7229            Impact factor:   1.731


  9 in total

1.  Completely pulsatile high flow circulatory support with a constant-speed centrifugal blood pump: mechanisms and early clinical observations.

Authors:  Kenji Yamazaki; Satoshi Saito; Shinichiro Kihara; Osamu Tagusari; Hiromi Kurosawa
Journal:  Gen Thorac Cardiovasc Surg       Date:  2007-04

2.  Prediction of cardiac stability after weaning from left ventricular assist devices in patients with idiopathic dilated cardiomyopathy.

Authors:  Michael Dandel; Yuguo Weng; Henryk Siniawski; Evgenij Potapov; Thorsten Drews; Hans B Lehmkuhl; Christoph Knosalla; Roland Hetzer
Journal:  Circulation       Date:  2008-09-30       Impact factor: 29.690

3.  The safety system for the rotary blood pump, combination of the valve and LVAD pulsatile mode: in vitro test.

Authors:  E Tayama; Y Ohashi; Y Niimi; Y Takami; G Ohtsuka; K Nakata; R Benkowski; J A Glueck; Y Nosé
Journal:  Artif Organs       Date:  1998-04       Impact factor: 3.094

4.  EVAHEART: an implantable centrifugal blood pump for long-term circulatory support.

Authors:  Kenji Yamazaki; Shinichiro Kihara; Takehide Akimoto; Osamu Tagusari; Akihiko Kawai; Mitsuo Umezu; Jun Tomioka; Robert L Kormos; Bartley P Griffith; Hiromi Kurosawa
Journal:  Jpn J Thorac Cardiovasc Surg       Date:  2002-11

Review 5.  Intraaortic balloon counterpulsation. A review of physiological principles, clinical results, and device safety.

Authors:  K T Weber; J S Janicki
Journal:  Ann Thorac Surg       Date:  1974-06       Impact factor: 4.330

6.  Hemodynamics and patient safety during pump-off studies of an axial-flow left ventricular assist device.

Authors:  Timothy J Myers; O H Frazier; Hernando S Mesina; Branislav Radovancevic; Igor D Gregoric
Journal:  J Heart Lung Transplant       Date:  2006-04       Impact factor: 10.247

7.  Left ventricular assist device and drug therapy for the reversal of heart failure.

Authors:  Emma J Birks; Patrick D Tansley; James Hardy; Robert S George; Christopher T Bowles; Margaret Burke; Nicholas R Banner; Asghar Khaghani; Magdi H Yacoub
Journal:  N Engl J Med       Date:  2006-11-02       Impact factor: 91.245

8.  Advanced heart failure treated with continuous-flow left ventricular assist device.

Authors:  Mark S Slaughter; Joseph G Rogers; Carmelo A Milano; Stuart D Russell; John V Conte; David Feldman; Benjamin Sun; Antone J Tatooles; Reynolds M Delgado; James W Long; Thomas C Wozniak; Waqas Ghumman; David J Farrar; O Howard Frazier
Journal:  N Engl J Med       Date:  2009-11-17       Impact factor: 91.245

9.  Which factors predict the recovery of natural heart function after insertion of a left ventricular assist system?

Authors:  A Mano; T Nakatani; N Oda; T Kato; K Niwaya; O Tagusari; H Nakajima; T Funatsu; S Hashimoto; K Komamura; A Hanatani; I H Ueda; M Kitakaze; J Kobayashi; T Yagihara; S Kitamura
Journal:  J Heart Lung Transplant       Date:  2008-07-03       Impact factor: 10.247

  9 in total
  8 in total

1.  Alteration of LV end-diastolic volume by controlling the power of the continuous-flow LVAD, so it is synchronized with cardiac beat: development of a native heart load control system (NHLCS).

Authors:  Akihide Umeki; Takashi Nishimura; Masahiko Ando; Yoshiaki Takewa; Kenji Yamazaki; Shunei Kyo; Minoru Ono; Tomonori Tsukiya; Toshihide Mizuno; Yoshiyuki Taenaka; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2011-11-12       Impact factor: 1.731

Review 2.  Journal of Artificial Organs 2011: the year in review.

Authors:  Y Sawa; E Tatsumi; A Funakubo; T Horiuchi; K Iwasaki; A Kishida; T Masuzawa; K Matsuda; A Myoui; M Nishimura; T Nishimura; S Tokunaga; Y Tomizawa; T Tomo; T Tsukiya; T Yamaoka
Journal:  J Artif Organs       Date:  2012-02-29       Impact factor: 1.731

3.  Novel control system to prevent right ventricular failure induced by rotary blood pump.

Authors:  Mamoru Arakawa; Takashi Nishimura; Yoshiaki Takewa; Akihide Umeki; Masahiko Ando; Yuichiro Kishimoto; Yutaka Fujii; Shunei Kyo; Hideo Adachi; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2014-02-07       Impact factor: 1.731

4.  Influence of a novel electrocardiogram-synchronized rotational-speed-change system of an implantable continuous-flow left ventricular assist device (EVAHEART) on hemolytic performance.

Authors:  Satoru Kishimoto; Kazuma Date; Mamoru Arakawa; Yoshiaki Takewa; Takashi Nishimura; Tomonori Tsukiya; Toshihide Mizuno; Nobumasa Katagiri; Yukihide Kakuta; Daisuke Ogawa; Motonobu Nishimura; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2014-09-02       Impact factor: 1.731

5.  Changing pulsatility by delaying the rotational speed phasing of a rotary left ventricular assist device.

Authors:  Kazuma Date; Takashi Nishimura; Mamoru Arakawa; Yoshiaki Takewa; Satoru Kishimoto; Akihide Umeki; Masahiko Ando; Toshihide Mizuno; Tomonori Tsukiya; Minoru Ono; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2016-07-19       Impact factor: 1.731

6.  Shifting the pulsatility by increasing the change in rotational speed for a rotary LVAD using a native heart load control system.

Authors:  Kazuma Date; Takashi Nishimura; Yoshiaki Takewa; Satoru Kishimoto; Mamoru Arakawa; Akihide Umeki; Masahiko Ando; Toshihide Mizuno; Tomonori Tsukiya; Minoru Ono; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2016-05-14       Impact factor: 1.731

7.  Change in myocardial oxygen consumption employing continuous-flow LVAD with cardiac beat synchronizing system, in acute ischemic heart failure models.

Authors:  Akihide Umeki; Takashi Nishimura; Yoshiaki Takewa; Masahiko Ando; Mamoru Arakawa; Yuichiro Kishimoto; Tomonori Tsukiya; Toshihide Mizuno; Shunei Kyo; Minoru Ono; Yoshiyuki Taenaka; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2013-01-17       Impact factor: 1.731

8.  Development of a novel drive mode to prevent aortic insufficiency during continuous-flow LVAD support by synchronizing rotational speed with heartbeat.

Authors:  Yuichiro Kishimoto; Yoshiaki Takewa; Mamoru Arakawa; Akihide Umeki; Masahiko Ando; Takashi Nishimura; Yutaka Fujii; Toshihide Mizuno; Motonobu Nishimura; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2013-01-23       Impact factor: 1.731

  8 in total

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