Suppr超能文献

猫有髓神经纤维直径对峰电位上升和下降阶段及其恢复的影响。

The influence of diameter of medullated nerve fibres of cats on the rising and falling phases of the spike and its recovery.

作者信息

Paintal A S

出版信息

J Physiol. 1966 Jun;184(4):791-811. doi: 10.1113/jphysiol.1966.sp007948.

Abstract
  1. The relation of conduction velocity, i.e. fibre diameter (Hursh, 1939a) to certain temporal dimensions of the nerve impulse recorded monophasically was studied in medullated fibres of cats in vivo at temperatures mostly ranging between 21 and 37 degrees C.2. Contrary to existing belief, it was demonstrated unequivocally that spike duration varies inversely with the conduction velocities of the fibres; so also the durations of the rising and the falling phases (rise-time and fall-time) of the impulse. The fall-time is linearly related to conduction velocity at all recorded temperatures. The rise-time varies steeply with conduction velocity at the lower levels of conduction rate, and very gradually at the higher conduction rates.3. The spike duration of preganglionic sympathetic fibres is identical with that of somatic medullated fibres with similar conduction velocities. There is therefore little justification for classifying them separately as so-called B fibres.4. The rate of recovery of spike amplitude following a preceding impulse also varies inversely with conduction velocity, and in the same manner as the absolute refractory period (ARP). In fact the relation of time for 40% recovery of spike amplitude to conduction velocity is identical with the relation of conduction velocity to ARP. The Q(10) for 40% recovery of spike amplitude is 4.7 between 13 and 29 degrees C.5. Rise-time increases exponentially with fall in temperature in all medullated fibres, fast (say 64 m/sec) and slow (say 16 m/sec), the Q(10) being 2.5. Fall-time varies exponentially with temperature in slow fibres (Q(10) = 3.5); in fast fibres it varies linearly. The Q(10) for spike duration is the same in all fibres between 27 and 37 degrees C only, its value being about 3.4. Below 27 degrees C the Q(10) depends on the conduction velocity of the fibres. Only in slow fibres does spike duration tend to vary exponentially with temperature.6. Only abortive spikes are generated during the interval between the end of a preceding spike and the end of the ARP which is about 1(1/2) times spike duration in fast fibres and about twice spike duration in slow fibres.
摘要
  1. 在体猫的有髓纤维中,研究了传导速度即纤维直径(赫什,1939a)与单相记录的神经冲动某些时间维度之间的关系,温度大多在21至37摄氏度之间。

  2. 与现有观点相反,明确证明了锋电位持续时间与纤维的传导速度成反比;冲动的上升相和下降相(上升时间和下降时间)的持续时间也是如此。在所有记录的温度下,下降时间与传导速度呈线性关系。在较低传导速率水平时,上升时间随传导速度急剧变化,而在较高传导速率时变化非常缓慢。

  3. 节前交感纤维的锋电位持续时间与传导速度相似的躯体有髓纤维的锋电位持续时间相同。因此,几乎没有理由将它们分别归类为所谓的B纤维。

  4. 在前一个冲动之后锋电位幅度的恢复速率也与传导速度成反比,并且与绝对不应期(ARP)的方式相同。实际上,锋电位幅度恢复40%的时间与传导速度的关系与传导速度与ARP的关系相同。在13至29摄氏度之间,锋电位幅度恢复40%的Q(10)为4.7。

  5. 在所有有髓纤维中,无论是快纤维(如64米/秒)还是慢纤维(如16米/秒),上升时间都随温度下降呈指数增加,Q(10)为2.5。下降时间在慢纤维中随温度呈指数变化(Q(10)=3.5);在快纤维中呈线性变化。仅在27至37摄氏度之间,所有纤维的锋电位持续时间的Q(10)相同,其值约为3.4。低于27摄氏度时,Q(10)取决于纤维的传导速度。只有在慢纤维中,锋电位持续时间才倾向于随温度呈指数变化。

  6. 在前一个锋电位结束到ARP结束的间隔期间,只产生顿挫性锋电位,在快纤维中ARP约为锋电位持续时间的1(1/2)倍,在慢纤维中约为锋电位持续时间的两倍。

相似文献

6
Effect of temperature on sensory and motor conduction of the rat tail nerves.温度对大鼠尾神经感觉和运动传导的影响。
Neurophysiol Clin. 2008 Oct;38(5):297-304. doi: 10.1016/j.neucli.2008.08.002. Epub 2008 Sep 18.

引用本文的文献

5
Modulation of axonal excitability by high-frequency biphasic electrical current.高频双相电流对轴突兴奋性的调节作用。
IEEE Trans Biomed Eng. 2009 Sep;56(9):2167-76. doi: 10.1109/TBME.2009.2020296. Epub 2009 Apr 21.

本文引用的文献

1
Electric interaction between two adjacent nerve fibres.两条相邻神经纤维之间的电相互作用。
J Physiol. 1940 Feb 14;97(4):471-88. doi: 10.1113/jphysiol.1940.sp003823.
3
The recovery process of excitable tissues: Part II.可兴奋组织的恢复过程:第二部分。
J Physiol. 1921 Aug 3;55(3-4):193-225. doi: 10.1113/jphysiol.1921.sp001963.
5
A theory of the effects of fibre size in medullated nerve.有髓神经中纤维大小影响的理论。
J Physiol. 1951 Sep;115(1):101-22. doi: 10.1113/jphysiol.1951.sp004655.
8

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验