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莫特纳尔细胞的运动输出,一种网状脊髓指令神经元。

The motor output of the Mauthner cell, a reticulospinal command neuron.

作者信息

Nissanov J, Eaton R C, DiDomenico R

机构信息

Department of Biology, University of Colorado, Boulder 80309.

出版信息

Brain Res. 1990 May 28;517(1-2):88-98. doi: 10.1016/0006-8993(90)91012-6.

Abstract

We electrically stimulated individual Mauthner (M-) cells to determine their motor contribution to C-starts of swimming goldfish. In comparison with sensory-evoked C-starts, M-reflexes triggered by electrical stimulation of single M-cells were significantly weaker and less variable. Stage 1 turns were both longer in duration and smaller in angle for the M-reflex when compared with the sensory-evoked C-start. This translates to an average reduction of 22% in angular velocity during stage 1. Likewise, during stage 2, the distance moved by the fish was reduced by 15% and the absolute value of stage 2 turning angle was reduced by 47%. In addition, the normal mechanical or neural coupling between stages 1 and 2 appeared to be altered for the M-reflex. From this and our other recent studies, we conclude that there must be two primary groups of reticulospinal neurons in the escape triggering network. The first group includes the M-cell and determines the initial left-right direction of the response and the extent of stage 1 angle. From previous EMG recordings we know that the second group of neurons can fire within 5-15 ms (average, 9 ms) after the stage 1 cells. These determine the onset time and direction of stage 2. Together the coupling of the two primary groups results in the full propulsive force and turning flexibility of the C-start.

摘要

我们对单个莫特纳尔(M-)细胞进行电刺激,以确定它们对金鱼游泳时C形启动动作的运动贡献。与感觉诱发的C形启动动作相比,单个M细胞电刺激引发的M反射明显较弱且变化较小。与感觉诱发的C形启动动作相比,M反射的第1阶段转向持续时间更长、角度更小。这意味着在第1阶段角速度平均降低了22%。同样,在第2阶段,鱼移动的距离减少了15%,第2阶段转向角的绝对值减少了47%。此外,M反射的第1阶段和第2阶段之间正常的机械或神经耦合似乎发生了改变。基于此以及我们最近的其他研究,我们得出结论,在逃逸触发网络中必定存在两组主要的网状脊髓神经元。第一组包括M细胞,它决定了反应的初始左右方向以及第1阶段角度的大小。从之前的肌电图记录中我们知道,第二组神经元可在第1阶段细胞活动后的5 - 15毫秒内(平均9毫秒)放电。这些神经元决定了第2阶段的起始时间和方向。这两组主要神经元的耦合共同产生了C形启动动作的全部推进力和转向灵活性。

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