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在离体心脏实验研究中分析局部心外膜温度的电生理效应。

Analyzing the electrophysiological effects of local epicardial temperature in experimental studies with isolated hearts.

作者信息

Tormos Alvaro, Chorro Francisco J, Millet José, Such Luis, Cánoves Joaquín, Mainar Luis, Trapero Isabel, Such-Miquel Luis, Guill Antonio, Alberola Antonio

机构信息

Bioengineering, Electronics and Telemedicine Group, Polytechnic University of Valencia, Camino de Vera 14, 46022 Valencia, Spain.

出版信息

Physiol Meas. 2008 Jul;29(7):711-28. doi: 10.1088/0967-3334/29/7/002. Epub 2008 Jun 18.

Abstract

As a result of their modulating effects upon myocardial electrophysiology, both hypo- and hyperthermia can be used to study the mechanisms that generate or sustain cardiac arrhythmias. The present study describes an original electrode developed with thick-film technology and capable of controlling regional temperature variations in the epicardium while simultaneously registering its electrical activity. In this way, it is possible to measure electrophysiological parameters of the heart at different temperatures. The results obtained with this device in a study with isolated and perfused rabbit hearts are reported. An exploration has been made of the effects of local temperature changes upon the electrophysiological parameters implicated in myocardial conduction. Likewise, an analysis has been made of the influence of local temperature upon ventricular fibrillation activation frequency. It is concluded that both regional hypo- and hyperthermia exert reversible and opposite effects upon myocardial refractoriness and conduction velocity in the altered zone. The ventricular activation wavelength determined during constant pacing at 250 ms cycles is not significantly modified, however. During ventricular fibrillation, the changes in the fibrillatory frequency do not seem to be transmitted to normal temperature zones.

摘要

由于低温和高温对心肌电生理学具有调节作用,因此它们均可用于研究引发或维持心律失常的机制。本研究描述了一种采用厚膜技术开发的新型电极,该电极能够控制心外膜区域的温度变化,同时记录其电活动。通过这种方式,可以在不同温度下测量心脏的电生理参数。报告了在离体灌注兔心脏研究中使用该装置获得的结果。研究了局部温度变化对心肌传导相关电生理参数的影响。同样,分析了局部温度对心室颤动激活频率的影响。得出的结论是,局部低温和高温对改变区域的心肌不应期和传导速度均产生可逆且相反的影响。然而,在250毫秒周期的恒定起搏过程中测定的心室激活波长没有明显改变。在心室颤动期间,颤动频率的变化似乎不会传导至正常温度区域。

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