Ferrari G, De Lazzari C, Mimmo R, Ambrosi D, Tosti G
Istituto di Tecnologie Biomediche, CNR, Rome, Italy.
J Med Eng Technol. 1994 May-Jun;18(3):87-95. doi: 10.3109/03091909409030237.
A modular physical circuit for testing monoventricular and biventricular heart assist devices (HAD) is under development. The modules now available are assembled in an open-loop circuit and reproduce the function of the left ventricle and the systemic arterial tree. The left ventricle model reproduces Starling's law of the heart and can be easily controlled to modify other parameters such as contractility and timing (i.e. heart rate and systole/diastole ratio). This circuit, in connection with a left ventricular assist device (LVAD), can be used to evaluate the LVAD performance, its effect on the circulatory system and as a training system. This paper is devoted to a description of the circuit and of its interaction with a LVAD, which is analysed after the simulation of a low contractility pathology of the ventricle. Results obtained in these experiments are reported.
一种用于测试单心室和双心室心脏辅助装置(HAD)的模块化物理电路正在研发中。目前可用的模块组装在一个开环电路中,可再现左心室和体循环动脉树的功能。左心室模型再现了心脏的斯塔林定律,并且可以很容易地进行控制,以修改其他参数,如收缩性和时间(即心率和收缩期/舒张期比率)。该电路与左心室辅助装置(LVAD)相连,可用于评估LVAD的性能、其对循环系统的影响,并作为一个训练系统。本文致力于描述该电路及其与LVAD的相互作用,在模拟心室低收缩性病理情况后对其进行了分析。报告了这些实验中获得的结果。