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In vivo measurements of the heat convection coefficient on the endocardial surface.

机译:心内膜表面热对流系数的体内测量。

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This work describes the fundamentals, calibration procedure and in vivo results of an instrument for the measurement of the heat convection coefficient between the endocardium and the circulating blood flow. The heat transfer parameters will assist calculating the proper dose for radio-frequency ablation. The probe is a thermistor mounted in a Swan-Ganz catheter, and it is driven by a constant temperature anemometer circuit. A 1-D thermal model of the sensor behavior in a convective medium, the calibration procedure, and the apparatus are explained in detail. A performance analysis of the instrument in the range tested showed that the average absolute error of full scale was 7.4%, and its time-constant was 0.05 s. This instrument was used to measure the heat transfer on the right atrial and ventricular endocardial surfaces of two pigs in vivo. The average heat convection coefficients found were between 510 and 4800 Wm−2K −1. It was found that the average heat convection coefficient varied significantly both spatially and temporally on the endocardium.
机译:这项工作描述了一种用于测量心内膜和循环血流之间的热对流系数的仪器的基本原理,校准程序和体内的结果。传热参数将有助于计算射频消融的合适剂量。探头是安装在Swan-Ganz导管中的热敏电阻,由恒温风速计电路驱动。详细说明了对流介质中传感器行为的一维热模型,校准过程和设备。在测试范围内对仪器的性能分析表明,满量程的平均绝对误差为7.4%,其时间常数为0.05 s。该仪器用于测量两只猪的“体内” /“体内”的右心房和心室心内膜表面的热传递。发现的平均热对流系数在510和4800 Wm −2 K -1 之间。已经发现,平均热对流系数在心内膜上在空间和时间上均显着变化。

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