Vermariën H, Coremans J, Vereecke F, Bourgain R H
Adv Exp Med Biol. 1986;200:143-50. doi: 10.1007/978-1-4684-5188-7_20.
As our experimental set-up for continuous recording of local blood flow in the cerebral cortex of a laboratory animal with chronically implanted miniature thermistors (based on the heat clearance principle) gave satisfactory results for routine tests of pharmacological agents during anoxia, hypoxia, hypercapnia, etc., experiments, we intended to standardize the apparatus, to increase accuracy, to facilitate calibration and to enhance flexibility with respect to the operator. The exponential aspect in the thermistor resistance/temperature characteristic is linearized by applying a logarithmic converter in the thermistor amplifier. Calibration to the centigrade temperature scale is performed by a three digit numerical adaptation of two thermistor constants determined in a thermostatic-cryostatic bath (zero and slope). A heating power measuring circuit is provided so that the dissipation constant of the thermistor implanted in tissue can be obtained and the thermal conductivity of the tissue can be estimated. Linearity of the relation between cooling of the heated thermistor and local flow, for small cooling values as they are registered in vivo, is still being investigated.
由于我们基于热清除原理使用长期植入的微型热敏电阻对实验动物大脑皮层局部血流进行连续记录的实验装置,在缺氧、低氧、高碳酸血症等实验期间对药理试剂的常规测试中取得了令人满意的结果,我们打算对该仪器进行标准化,提高准确性,便于校准,并增强对操作员的灵活性。通过在热敏电阻放大器中应用对数转换器,使热敏电阻电阻/温度特性中的指数部分线性化。通过对在恒温-低温浴中确定的两个热敏电阻常数(零点和斜率)进行三位数字适配,实现对摄氏温度标度的校准。提供了一个加热功率测量电路,以便能够获得植入组织中的热敏电阻的耗散常数,并估计组织的热导率。对于在体内记录的小冷却值,加热的热敏电阻冷却与局部血流之间关系的线性仍在研究中。