Mulieri L A, Luhr G, Trefry J, Alpert N R
Am J Physiol. 1977 Nov;233(5):C146-56. doi: 10.1152/ajpcell.1977.233.5.C146.
A method of fabricating Hill-Downing type, planar thermopiles by vacuum-deposition techniques is described in detail. The present model was designed for initial heat measurements on rabbit papillary muscles as small as 1 mg blotted wt, but it is also suitable for small bundles of frog muscle fibers (30-75). The thermopile has 20 or 14 junctions, an active length of 5 or 3.5 mm, and an actual thickness of 20 micrometer. It has an effective heat capacity of about 0.3 mcal/degrees C, a heat loss coefficient of about 0.3 mcal/degrees C - s, a temperature sensitivity of 1.4 mV/degrees C (20 junctions), and an electrical resistance of 180-200 omega. Infrared-emitting diodes are used to heat the thermopile and muscle artificially for thermal time constant and conduction-delay measurements. Performance of the thermopiles is demonstrated with initial heat records from rabbit right ventricular papillary muscles and a bundle of frog semitendinosus muscle fibers. Results of preliminary experiments concerning latency for heat generation, initial rate of heat generation, and activation heat in both types of muscles are presented.
详细描述了一种通过真空沉积技术制造希尔 - 唐宁型平面热电堆的方法。本模型设计用于对湿重低至1毫克的兔乳头肌进行初始热测量,但它也适用于小束青蛙肌肉纤维(30 - 75)。热电堆有20个或14个结,有效长度为5毫米或3.5毫米,实际厚度为20微米。它的有效热容量约为0.3毫卡/摄氏度,热损失系数约为0.3毫卡/摄氏度·秒,温度灵敏度为1.4毫伏/摄氏度(20个结),电阻为180 - 200欧姆。使用红外发光二极管对热电堆和肌肉进行人工加热,以测量热时间常数和传导延迟。通过兔右心室乳头肌和一束青蛙半腱肌纤维的初始热记录展示了热电堆的性能。给出了关于两种肌肉中产热潜伏期、初始产热速率和激活热的初步实验结果。