Niesler R A, Axon D W
Phys Med Biol. 1981 Nov;26(6):1069-85. doi: 10.1088/0031-9155/26/6/007.
An isothermic flow microcalorimeter system for fluid rates of 1-50 cm3 min -1 has been developed to measure the total heat flow produced by isolated perfused small animal hearts and its rate of change. The heat, which is absorbed by the perfusion fluid flowing through the coronary capillary system, is detected by passing the coronary effluent through a plate heat exchanger mounted in intimate contact with the internal surface of a gradient layer calorimeter. By employing electrical calibration, this heat flow detector gives a precision of +/- 0.2 m W for average effluent rates of about 15 cm3 min-1. The method provides direct comparison of the biologically produced heat flow with electrically generated energy flows. The response time to step changes in heat flow is 1 min to 90% of the total change. Possible systematic errors are analysed and quantified, using a heart bypass flow technique and a thermoelectric differential temperature meter. The accuracy of the measurement of constant heat sources with the complete system over the range of 5-40 mW is +/- 2% for fluid rates up to 40 cm3 min-1. Measurements with small rat hearts have given absolute values between 17 and 36 mW measured with an accuracy of +/- 3%. The rate of total myocardial energy turnover can be studied with the system.
已开发出一种等温流动微量热计系统,用于测量1-50立方厘米每分钟的流体速率,以测量离体灌注的小动物心脏产生的总热流及其变化率。流经冠状毛细血管系统的灌注液所吸收的热量,通过使冠状流出液流经一个板式换热器来检测,该换热器与梯度层量热计的内表面紧密接触安装。通过采用电校准,对于约15立方厘米每分钟的平均流出速率,该热流检测器的精度为±0.2毫瓦。该方法可将生物产生的热流与电产生的能量流进行直接比较。对热流阶跃变化的响应时间为总变化的90%时为1分钟。使用心脏旁路流动技术和热电差示温度计对可能的系统误差进行了分析和量化。对于高达40立方厘米每分钟的流体速率,整个系统在5-40毫瓦范围内测量恒定热源的准确度为±2%。用小老鼠心脏进行的测量得出的绝对值在17至36毫瓦之间,测量准确度为±3%。该系统可用于研究心肌总能量周转的速率。