Weber Stephan, Doi Kazuyoshi, Massiello Alex L, Byerman Bryan P, Takagaki Masami, Fukamachi Kiyotaka, Donahue Arthur, Chapman Peter, Hirschman Gordon, Vitale Nicolas, Smith William A
Department of Biomedical Engineering, Cleveland Clinic Foundation, Ohio 44195, USA.
ASAIO J. 2002 Nov-Dec;48(6):606-11. doi: 10.1097/00002480-200211000-00006.
The purpose of this study was to evaluate the in vitro responses to preload and afterload of our total artificial heart (TAH), the MagScrew TAH. The TAH consists of two blood pumps and a control logic, developed at the Cleveland Clinic, OH, and the MagScrew actuator and its electronic control system, developed by Foster-Miller Technologies, Inc., Albany, NY. Tests were performed on a mock circulatory loop, using water as a test fluid. Preload sensitivity of the Mag-Screw TAH demonstrated a Frank-Starling response to preload in automatic mode. A peak flow of 10 L/min was obtained, with a left atrial pressure of 13 mm Hg. The relationship between right atrial pressure and left atrial pressure was well balanced when tested with a left bronchial shunt flow of 5% and a range of pulmonary artery and aortic pressures. With respect to afterload response, the left pump showed a relatively low sensitivity, which allowed the pump to maintain perfusion over a wide range of aortic pressures. The right pump, on the other hand, was much more sensitive to pulmonary artery pressure, which provided a measure of protection against pulmonary congestion. The very effective physiologic response of the MagScrew TAH is believed to result from employment of a left master, alternating ejection control logic, high inherent sensitivity of the blood pumps to atrial pressure, a lower effective stroke volume for the right pump, and a scaling of right side motor ejection voltage to 80% of that used for the left side ejection.
本研究的目的是评估我们的全人工心脏(TAH)——磁螺旋TAH对前负荷和后负荷的体外反应。该TAH由两个血泵和一个控制逻辑组成,由俄亥俄州克利夫兰诊所研发,以及磁螺旋驱动器及其电子控制系统,由纽约州奥尔巴尼的福斯特-米勒技术公司研发。测试在模拟循环回路上进行,使用水作为测试流体。磁螺旋TAH的前负荷敏感性在自动模式下对前负荷表现出Frank-Starling反应。在左心房压力为13mmHg时获得了10L/min的峰值流量。当用5%的左支气管分流流量以及一系列肺动脉和主动脉压力进行测试时,右心房压力和左心房压力之间的关系得到了很好的平衡。关于后负荷反应,左泵显示出相对较低的敏感性,这使得该泵能够在很宽的主动脉压力范围内维持灌注。另一方面,右泵对肺动脉压力更为敏感,这为防止肺充血提供了一种保护措施。磁螺旋TAH非常有效的生理反应被认为是由于采用了左主泵、交替射血控制逻辑、血泵对心房压力的高固有敏感性、右泵较低的有效搏出量以及将右侧电机射血电压缩放至左侧射血所用电压的80%。