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Hyperthermia Dependence of Cardiac Conduction Velocity in Rat Myocardium: Optical Mapping and Cardiac Near Field Measurements

机译:大鼠心肌导电速度的热疗依赖性:光学映射和心脏近场测量

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Hyperthermia during radiofrequency ablation causes reversible and irreversible changes of the electrophysiological properties of cardiac tissue. However, the mechanisms are incompletely understood. We studied changes of conduction velocity (CV) in rat myocardium under hyperthermic conditions from macroscopic to microscopic scale by using simultaneous optical mapping and a miniaturized electrode array. Atrial preparations from five rats were superfused at tissue bath temperatures between 36.7°C and 43.8°C. Optical mapping data showed an elevated median CV by 21% when increasing the temperature from 36.7°C to 42.0°C. CV did not increase above 42.0°C. Electrical measurements revealed a similar temperature dependence of CV between 36.7°C and 42.0°C, i.e. an increase of median CV by 26%. The consolidation of optical and electrical data in this study allowed investigation of excitation during global hyperthermia. Macroscopic optical mapping and micro-scopic electrical measurements demonstrated that hyperthermia strongly influenced electrical propagation at a microscopic scale.
机译:射频消融期间的热疗导致心脏组织电生理学特性的可逆性和不可逆的变化。然而,机制被不完全了解。通过使用同时光学映射和小型电极阵列,我们在高温条件下研究了大鼠心肌中的传导速度(CV)的变化。在36.7°C和43.8℃之间的组织浴温度下,来自五只大鼠的心房制剂。当将温度从36.7°C增加至42.0°C时,光学映射数据显示21%的中值21%。 CV未增加42.0°C。电测量显示出在36.7℃和42.0℃之间的类似温度依赖性,即中位CV的增加26%。本研究中的光学和电气数据的整合允许在全球热疗期间激发激发。宏观光学映射和微型电气测量表明,热疗强烈影响了微观规模的电传播。

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