首页> 美国卫生研究院文献>The Journal of Physiology >Effects of activity in single sensory fibres on the discharge patterns of dorsal spinocerebellar tract cells.
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Effects of activity in single sensory fibres on the discharge patterns of dorsal spinocerebellar tract cells.

机译:单个感觉纤维中的活性对脊髓小脑背侧细胞放电模式的影响。

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摘要

1. Electrical activity of dorsal spinocerebellar tract (DSCT) was recorded extracellularly and intracellularly in Clarke's column nucleus. 2.Trains of impluses were elicited in DSCT cells by static stretch of the hind limb muscles, and the distributions of intervals between the impulses were computed. These distributions were essentially similar before and after impalement of the cells with the micropipette, suggesting that cell injury caused by penetration was insignificant. 3. Patterns of synaptic activity revealed that the DSCT cells examined were innervated by a limited number of muscle afferents. 4. In some DSCT neurons, all excitatory post-synaptic potentials (e.p.s.p.s) elicited by a single fibre were suprathreshold, and e.p.s.p.s elicited by other afferents were usually subthreshold. These neurons discharge very regularly during muscle stretch, and the spike initiation followed nearly one-to-one relation in response to activity of the sensory fibre eliciting suprathreshold e.p.s.p.s. 5. The discharge pattern was irregular in other DSCT cells. In these cases, single sensory fibres evoked e.p.s.p.s. which did not always reach the firing threshold because of random fluctuation in their amplitude. 6. DSCT neurons often show low frequency discharges (about 10/sec) in the absence of sensory activation. In these conditions only small e.p.s.p.s. were detected (average, 0.53 mV) suggesting that the average membrane potential is very close (1-i mV) to the firing threshold. 7. It is concluded that the statistical properties of firing patterns in DSCT neurons activated by muscle afferents depend on (a) the large amplitude of e.p.s.p.s., (b) their firing threshold and (c) random fluctuations in the e.p.s.p.s. amplitude.
机译:1.克拉克柱状核的胞外和胞内记录了脊髓背小脑束(DSCT)的电活动。 2.通过静态拉伸后肢肌肉在DSCT细胞中诱发多余物的训练,并计算出脉冲之间的间隔分布。在用微量移液管刺穿细胞之前和之后,这些分布基本相似,表明由渗透引起的细胞损伤微不足道。 3.突触活动的模式显示,所检查的DSCT细胞受数量有限的肌肉传入神经支配。 4.在某些DSCT神经元中,由单根纤维引起的所有兴奋性突触后电位(e.p.s.p.s)都处于阈值之上,而其他传入神经引起的e.p.s.p.s通常处于阈值以下。这些神经元在肌肉拉伸过程中非常规律地放电,并且响应于引起超阈值e.p.s.p.s的感觉纤维的活动,峰的启动遵循几乎一对一的关系。 5.其他DSCT电池的放电模式不规则。在这些情况下,单条感觉纤维会诱发e.p.s.p.s。由于其振幅的随机波动,它并不总是达到触发阈值。 6. DSCT神经元通常在没有感觉激活的情况下表现出低频放电(约10 / sec)。在这些情况下,只有小e.p.s.p.s检测到(平均,0.53 mV),表明平均膜电位非常接近(1-i mV)点火阈值。 7.结论是,肌肉传入神经激活的DSCT神经元放电模式的统计特性取决于(a)e.p.s.p.s.的大幅度,(b)它们的放电阈值和(c)e.p.s.p.s.的随机波动。振幅。

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