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冷适应对大鼠丘脑和中脑热反应神经元活动的影响。

Influence of cold adaptation on the activity of thermoresponsive neurons in thalamus and midbrain of the rat.

作者信息

Werner J, Schingnitz G, Hensel H

出版信息

Pflugers Arch. 1981 Oct;391(4):327-30. doi: 10.1007/BF00581517.

Abstract

A group of 25 rats was adapted to cold by housing for five weeks at +3 degrees C. Using thermal stimuli of the scrotal skin, 53 recordings of warm-responsive thalamic and midbrain neurons were analyzed and compared with 84 control recordings from non-adapted rats. The activity of the analyzed neurons is characterized by a steep increase of firing rate above a certain temperature threshold zone. Between scrotal skin temperatures of 36 degrees and 38 degrees C the percentage of neurons with firing rates above the basal rate is higher, both in the thalamic and midbrain population of the cold adapted rats. It is concluded that after cold-adaptation the increase of firing rate starts on average at a lower temperature. The results are discussed in the context of findings of other authors on peripheral structures and on effector behaviour.

摘要

将25只大鼠置于3摄氏度的环境中饲养5周,使其适应寒冷环境。利用阴囊皮肤的热刺激,分析了53个对温暖有反应的丘脑和中脑神经元的记录,并与84个来自未适应寒冷环境大鼠的对照记录进行了比较。所分析神经元的活动特征是,在一定温度阈值区域以上,放电频率急剧增加。在阴囊皮肤温度为36摄氏度至38摄氏度之间时,适应寒冷环境大鼠的丘脑和中脑群体中,放电频率高于基础频率的神经元百分比更高。得出的结论是,经过寒冷适应后,放电频率的增加平均在较低温度时开始。结合其他作者关于外周结构和效应器行为的研究结果对这些结果进行了讨论。

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