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长吻鱼嗅觉神经纤维的初始产热

The initial heat production in garfish olfactory nerve fibres.

作者信息

Howarth J V, Ritchie J M, Stagg D

出版信息

Proc R Soc Lond B Biol Sci. 1979 Aug 31;205(1160):347-67. doi: 10.1098/rspb.1979.0069.

DOI:10.1098/rspb.1979.0069
PMID:41251
Abstract

A study has been made of the temperature changes associated with the passage of a single impulse in the non-myelinated fibres of the garfish olfactory nerve: and the time course of these temperature changes has been compared with the time course of the electrical events during the action potential. As in other non-myelinated nerves studied the observed temperature changes result from a biphasic initial heat production consisting of a transient evolution of heat (the positive heat) followed by a rapid heat reabsorption (referred to as the negative heat). There is no evidence of any additional phases of initial heat production. At 0 degrees C the measured positive initial heat is 224 mucal/g impulse (937 muJ/g impulse); and the corresponding negative initial heat is 230 mucal/g impulse (962 muJ/g impulse). The residual initial heat is very small, being about -6 mucal/g impulse (-25 muJ/g impulse). In the range 0-10 degrees C there is no significant effect of temperature on the magnitude of either the positive or the negative phases of heat production. The experimental thermal records were analysed to determine the true time course of the temperature changes in the nerve undistorted by the recording system. The time course of the temperature changes does not fit with that of the transmembrane voltage change as represented by the monophasic compound action potential recorded externally from the same point on the nerve. A better fit is obtained if the temperature changes are compared with the square of the voltage change in accordance with the view that the heat derives almost wholly from free energy changes and entropy changes in the membrane capacity. The best fit is obtained if it is assumed that the membrane potential does not discharge to zero during the action potential but that at the peak of the action potential the charge (and hence the p.d.) across the membrane capacity retains about 24% of its resting value.

摘要

一项关于与海鳗嗅神经无髓鞘纤维中单个冲动传导相关的温度变化的研究已经展开

并且这些温度变化的时间进程已与动作电位期间电活动的时间进程进行了比较。与其他已研究的无髓鞘神经一样,观察到的温度变化源于双相初始产热,包括短暂的热释放(正热),随后是快速的热再吸收(称为负热)。没有证据表明存在任何额外的初始产热阶段。在0摄氏度时,测得的正初始热为224微卡/克冲动(937微焦/克冲动);相应的负初始热为230微卡/克冲动(962微焦/克冲动)。残余初始热非常小,约为 -6微卡/克冲动(-25微焦/克冲动)。在0至10摄氏度范围内,温度对产热正相或负相的幅度均无显著影响。对实验热记录进行了分析,以确定神经中未被记录系统扭曲的温度变化的真实时间进程。温度变化的时间进程与从神经上同一点外部记录的单相复合动作电位所代表的跨膜电压变化的时间进程不相符。如果根据热几乎完全源于膜电容中的自由能变化和熵变化的观点,将温度变化与电压变化平方进行比较,则能得到更好的拟合。如果假设在动作电位期间膜电位不会放电至零,而是在动作电位峰值时,跨膜电容的电荷(以及因此的电位差)保留其静息值的约24%,则能得到最佳拟合。

相似文献

1
The initial heat production in garfish olfactory nerve fibres.长吻鱼嗅觉神经纤维的初始产热
Proc R Soc Lond B Biol Sci. 1979 Aug 31;205(1160):347-67. doi: 10.1098/rspb.1979.0069.
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The heat production associated with the passage of a single impulse in pike olfactory nerve fibres.与梭子鱼嗅觉神经纤维中单个冲动传导相关的产热。
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The origin of the initial heat associated with a single impulse in mammalian non-myelinated nerve fibres.哺乳动物无髓神经纤维中单个冲动相关的初始热的起源。
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Rapid mechanical and thermal changes in the garfish olfactory nerve associated with a propagated impulse.针鱼嗅觉神经中与传播冲动相关的快速机械和热变化。
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The recovery heat production in non-myelinated garfish olfactory nerve fibres.无髓海鳗嗅觉神经纤维中的恢复产热
J Physiol. 1979 Jul;292:167-75. doi: 10.1113/jphysiol.1979.sp012844.
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The movement of potassium ions during electrical activity, and the kinetics of the recovery process, in the non-myelinated fibres of the garfish olfactory nerve.雀鳝嗅神经无髓鞘纤维中钾离子在电活动期间的移动以及恢复过程的动力学。
J Physiol. 1975 Jul;249(2):327-48. doi: 10.1113/jphysiol.1975.sp011018.
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Action potential of the Garfish non-myelinated olfactory nerve.雀鳝无髓嗅神经的动作电位
Life Sci. 1975 Apr 1;16(7):1067-78. doi: 10.1016/0024-3205(75)90191-5.
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Increase in efflux of inorganic phosphate during electrical activity in small non-myelinated nerve fibres.小的无髓神经纤维电活动期间无机磷酸盐外流增加。
J Physiol. 1978 Jan;274:539-48. doi: 10.1113/jphysiol.1978.sp012165.
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Heat production non-myelinated nerves.无髓神经的产热。
Philos Trans R Soc Lond B Biol Sci. 1975 Jun 10;270(908):425-32. doi: 10.1098/rstb.1975.0020.
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The optical spike. Structure of the olfactory nerve of pike and rapid birefringence changes during excitation.光学峰。梭子鱼嗅神经的结构以及兴奋过程中的快速双折射变化。
Pflugers Arch. 1976 Nov 30;367(1):67-76. doi: 10.1007/BF00583658.

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