Borgdorff P, Versteeg P G
Eur J Appl Physiol Occup Physiol. 1984;53(2):175-9. doi: 10.1007/BF00422583.
An implantable nerve cooler has been constructed to block cervical vago-sympathetic activity in the exercising dog reversibly. An insulated gilt brass container implanted around the nerve is perfused with cooled alcohol via silicone tubes. The flow of alcohol is controlled by an electromagnetic valve to keep nerve temperature at the required value. Nerve temperature is measured by a thermistor attached to the housing and in contact with the nerve. It is shown that, during cooling, temperature at this location differs less than 2 degrees C from nerve core temperature. Measurement of changes in heart rate revealed that complete vagal block in the conscious animal is obtained at a nerve temperature of 2 degrees C and can be achieved within 50 s. During steady-state cooling in the exercising animal nerve temperature varied less than 0.5 degree C. When the coolers after 2 weeks of implantation were removed they showed no oxydation and could be used again.
已制造出一种可植入式神经冷却器,用于可逆地阻断运动中犬的颈迷走交感神经活动。围绕神经植入的一个绝缘镀金黄铜容器通过硅胶管灌注冷却酒精。酒精的流动由电磁阀控制,以将神经温度保持在所需值。神经温度由连接到外壳并与神经接触的热敏电阻测量。结果表明,在冷却过程中,该位置的温度与神经核心温度相差不到2摄氏度。心率变化的测量显示,清醒动物在神经温度为2摄氏度时可实现完全迷走神经阻滞,且可在50秒内完成。在运动动物的稳态冷却过程中,神经温度变化小于0.5摄氏度。植入两周后取出冷却器时,它们没有氧化现象,可再次使用。