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温度对感觉器官的发生器电位和动作电位的影响。

Effects of temperature on the generator and action potentials of a sense organ.

作者信息

ISHIKO N, LOEWENSTEIN W R

出版信息

J Gen Physiol. 1961 Sep;45(1):105-24. doi: 10.1085/jgp.45.1.105.

Abstract

Charge transfer through the receptor membrane of the nonmyelinated ending of Pacinian corpuscles is markedly affected by temperature. The rate of rise and the amplitude of the generator potential in response to a constant mechanical stimulus increase with temperature coefficients of 2.5 and 2.0 respectively. The duration of the falling phase, presumably a purely passive component, and the rise time of the generator potential are but little affected by temperature. The following interpretation is offered: Mechanical stimulation causes the conductance of the receptor membrane to increase and ions to flow along their electrochemical gradients. An energy barrier of about 16,000 cal/mole limits the conductance change. The latter increases, thus, steeply with temperature, causing both the rate of rise and the intensity of the generator current to increase. The membrane of the adjacent Ranvier node behaves in a distinctly different manner. The amplitude of the nodal action potential is little changed over a wide range of temperature, while the durations of its rising and falling phases increase markedly. The electrical threshold of the nodal membrane is rather constant between 40 and 12 degrees C. Below 12 degrees C the threshold rises, and the mechanically elicited generator current fails to meet the threshold requirements of the first node. Cold block of nerve impulse initiation then ensues, although the receptor membrane still continues to produce generator potentials in response to mechanical stimulation.

摘要

温度对通过帕西尼小体无髓神经末梢的受体膜的电荷转移有显著影响。在恒定机械刺激下,发生器电位的上升速率和幅度分别以2.5和2.0的温度系数随温度升高。下降相的持续时间(可能是一个纯被动成分)以及发生器电位的上升时间受温度影响很小。现给出如下解释:机械刺激导致受体膜电导增加,离子沿其电化学梯度流动。约16,000卡/摩尔的能垒限制了电导变化。因此,电导随温度急剧增加,导致发生器电流的上升速率和强度都增加。相邻郎飞结的膜表现出明显不同的行为。在很宽的温度范围内,结处动作电位的幅度变化很小,而其上升相和下降相的持续时间则显著增加。结膜的电阈值在40℃至12℃之间相当恒定。低于12℃时阈值升高,机械诱发的发生器电流无法满足第一个结的阈值要求。尽管受体膜仍继续对机械刺激产生发生器电位,但随后会发生神经冲动起始的冷阻断。

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