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Generating pulsatility by pump speed modulation with continuous-flow total artificial heart in awake calves.

Kiyotaka FukamachiJamshid H KarimovGengo SunagawaDavid J HorvathNicole ByramBarry D KubanRaymond DessoffyShiva SaleLeonard A R GoldingNader Moazami
Published in: Journal of artificial organs : the official journal of the Japanese Society for Artificial Organs (2017)
The purpose of this study was to evaluate the effects of sinusoidal pump speed modulation of the Cleveland Clinic continuous-flow total artificial heart (CFTAH) on hemodynamics and pump flow in an awake chronic calf model. The sinusoidal pump speed modulations, performed on the day of elective sacrifice, were set at ±15 and ± 25% of mean pump speed at 80 bpm in four awake calves with a CFTAH. The systemic and pulmonary arterial pulse pressures increased to 12.0 and 12.3 mmHg (±15% modulation) and to 15.9 and 15.7 mmHg (±25% modulation), respectively. The pulsatility index and surplus hemodynamic energy significantly increased, respectively, to 1.05 and 1346 ergs/cm at ±15% speed modulation and to 1.51 and 3381 ergs/cm at ±25% speed modulation. This study showed that it is feasible to generate pressure pulsatility with pump speed modulation; the platform is suitable for evaluating the physiologic impact of pulsatility and allows determination of the best speed modulations in terms of magnitude, frequency, and profiles.
Keyphrases
  • heart failure
  • primary care
  • blood pressure
  • patients undergoing
  • atrial fibrillation
  • high throughput
  • high resolution
  • drug induced
  • molecularly imprinted