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使用振动流泵和带有非晶纤维的经皮能量传输系统的全植入式心室辅助系统的开发与评估。

Development and evaluation of totally implantable ventricular assist system using a vibrating flow pump and transcutaneous energy transmission system with amorphous fibers.

作者信息

Yambe T, Hashimoto H, Kobayashi S, Sonobe T, Naganuma S, Nanka S S, Matsuki H, Yoshizawa M, Tabayashi K, Takayasu H, Takeda H, Nitta S

机构信息

Department of Medical Engineering and Cardiology, Tohoku University, Sendai, Japan.

出版信息

Heart Vessels. 1997;Suppl 12:41-3.

PMID:9476541
Abstract

We have developed a vibrating flow pump (VFP) that can generate oscillated blood flow with a relatively high frequency (10-50 Hz) for a totally implantable ventricular assist system (VAS). To evaluate the newly developed VAS, left heart bypasses, using the VFP, were performed in chronic animal experiments. Hemodynamic parameters were recorded in a data recorder in healthy adult goats during an awake condition and analyzed in a personal computer system through an alternating-direct current converter. Basic performance of the total system with a transcutaneous energy transmission system were satisfactory. During left ventricular assistance with the VFP, Mayer wave fluctuations of hemodynamics were decreased in the power spectrum, the fractal dimensions of the hemodynamics were significantly decreased, and peripheral vascular resistance was significantly decreased. These results suggest that cardiovascular regulatory nonlinear dynamics, which mediate the hemodynamics, may be affected by left ventricular bypass with oscillated flow. The decreased power of the Mayer wave in the spectrum caused the limit cycle attractor of the hemodynamics and decreased peripheral resistance. These results suggest that this newly developed VAS is useful for the totally implantable system with unique characteristics that can control hemodynamic properties.

摘要

我们已经开发出一种振动流泵(VFP),它可以为完全植入式心室辅助系统(VAS)产生相对高频(10 - 50 Hz)的振荡血流。为了评估新开发的VAS,在慢性动物实验中使用VFP进行了左心旁路手术。在清醒状态下,将健康成年山羊的血流动力学参数记录在数据记录器中,并通过交直流转换器在个人计算机系统中进行分析。带有经皮能量传输系统的整个系统的基本性能令人满意。在用VFP进行左心室辅助期间,血流动力学的迈尔波波动在功率谱中降低,血流动力学的分形维数显著降低,外周血管阻力显著降低。这些结果表明,介导血流动力学的心血管调节非线性动力学可能受到振荡流左心室旁路的影响。频谱中迈尔波功率的降低导致了血流动力学的极限环吸引子并降低了外周阻力。这些结果表明,这种新开发的VAS对于具有可控制血流动力学特性的独特特征的完全植入式系统是有用的。

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