连续流动人工心脏的体内压头评估及流速估算

A. Tanaka, M. Yoshizawa, T. Yamada, K. Abe, H. Takeda, T. Yambe, S. Nitta
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引用次数: 0

摘要

为了避免在植入式TAH系统中使用低生物相容性和低耐久性的传感器,作者先前提出了一种基于电机驱动离心泵的电压、电流和转速估算瞬时流量和压头值的新方法。先前的体外实验表明,该估计器可以通过采用两种自回归外源模型自动补偿血液粘度变化对估计精度的影响。本研究通过急性动物实验验证了该估计方法的有效性和可靠性。在实验中,将两个离心血泵作为全人工心脏植入一只成年山羊体内。将估计结果与注射生理盐水改变血液粘度时的真实值进行比较。结果表明,该系统可以通过补偿粘度的变化来成功地估计压力头,但体内估计的精度不如以往的体外测试高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vivo evaluation of pressure head and flow rate estimation in a continuous-flow artificial heart
To avoid using sensors with low biocompatibility and low durability in implantable TAH systems, the authors previously proposed a new method for estimating instantaneous values of flow rate and pressure head on the basis of voltage, current and rotational speed in a motor driven centrifugal pump. The previous in vitro experiments showed that the proposed estimator could automatically compensate for the effect of the change in blood viscosity on the estimation accuracy by employing two kinds of auto-regressive exogenous model. In this study, validity and reliability of this estimation method were ascertained in an acute animal experiment. In the experiment, two centrifugal blood pumps were implanted into an adult goat as a total artificial heart. Results of estimation were compared with true values when blood viscosity was changed by injecting physiological saline. The results indicated that the system could successfully estimate pressure head by compensating the change of viscosity although the estimation accuracy of the in vivo estimation was not so high as that of the previous in vitro tests.
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