Lowitzsch K, Hopf H C, Galland J
J Neurol. 1977 Oct 7;216(3):181-8. doi: 10.1007/BF00313619.
Changes with temperature of maximum sensory nerve conduction velocity as well as absolute and relative refractory periods were tested in 14 human subjects. Corresponding to previously published findings maximum conduction velocity decreased with cooling following a Q10 of +1.4. The absolute and relative refractory periods were increased by cooling, the Q10 being -3.1 and -3.35 respectively. There was a tendency showing a more pronounced temperature effect at low temperatures. The Q10 and the steepness of the regressionline changed at the level of 26.9 degrees C, but were significant for the relative refractory period only.
在14名人类受试者中测试了最大感觉神经传导速度以及绝对和相对不应期随温度的变化。与先前发表的研究结果一致,最大传导速度随冷却而降低,Q10为+1.4。绝对和相对不应期因冷却而延长,Q10分别为-3.1和-3.35。在低温下有显示出更明显温度效应的趋势。Q10和回归线的斜率在26.9摄氏度水平发生变化,但仅对相对不应期具有显著性。