A servo-controlled canine model of stable severe ischemic left ventricular failure.

Richard L Wagner, William B Hood, Peter A Howland
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Abstract

Reversible left ventricular failure was produced in conscious dogs by compromise of the coronary circulation. In animals with prior left anterior descending coronary artery occlusion, mean left atrial pressure (LAP) was incorporated into an automatic feedback control system used to inflate a balloon cuff on the circumflex (Cfx) coronary artery. The system could produce stable increases in LAP to 15-20 mm Hg. The dominating system transfer function was the ratio of LAP to balloon volume (BV), which was characterized by a fixed delay (5 s), with LAP/BV = (8e(-jomegatau ))/(0.02 + jomega). The system was stabilized by a phase lead network to reduce oscillations of LAP. A total of seven experiments were conducted in three dogs, and testing of inotropic agents was possible in three experiments under stable conditions with the pump off after an hour or more of operation. Problems encountered were 0.003-0.008 Hz oscillations in LAP in three experiments, which could usually be controlled by reducing the system gain. Late stage ventricular fibrillation occurred in all three animals, but defibrillation was easily accomplished after deflating the Cfx balloon. This system produces reversible left ventricular failure solely due to ischemia, thus closely simulating clinical heart failure due to coronary insufficiency.

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稳定型严重缺血性左心室衰竭犬伺服控制模型。
可逆性左心室衰竭是产生在有意识的狗妥协冠状动脉循环。在先前有左冠状动脉前降支闭塞的动物中,将平均左心房压(LAP)纳入自动反馈控制系统,用于给旋冠状动脉(Cfx)上的气球袖带充气。系统的主要传递函数为LAP/气球体积比(BV),具有固定的延迟(5 s), LAP/BV = (8e(-jomegatau))/(0.02 + jomega)。采用相引线网络对系统进行稳定,以减小LAP的振荡。在3只狗身上共进行了7次实验,其中有3次实验是在稳定的条件下进行的,在运行1小时或更长时间后关闭泵。在三个实验中遇到的问题是LAP振荡为0.003-0.008 Hz,通常可以通过降低系统增益来控制。所有三只动物都发生了晚期心室颤动,但在Cfx球囊放气后很容易实现除颤。该系统仅因缺血而产生可逆性左心室衰竭,从而密切模拟临床因冠状动脉功能不全引起的心力衰竭。
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