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猫小脑间位核与浦肯野细胞在不同条件下运动时的放电情况。

Discharges of interpositus and Purkinje cells of the cat cerebellum during locomotion under different conditions.

作者信息

Armstrong D M, Edgley S A

机构信息

Department of Physiology, Medical School, University of Bristol.

出版信息

J Physiol. 1988 Jun;400:425-45. doi: 10.1113/jphysiol.1988.sp017130.

Abstract
  1. Extracellular microelectrodes were used in free-to-move cats to study the locomotor-related discharges of Purkinje cells in the intermediate part of lobule V of the cerebellar anterior lobe and of neurones in the underlying nucleus interpositus anterior. All cells studied discharged rhythmically during locomotion. 2. The discharges during walking at a speed of 0.5 m/s on a horizontal exercise belt were compared with those during (a) walking at 0.9 m/s (when the duration of the step cycle is shortened considerably and the amplitudes of the locomotor electromyograms (EMGs) recorded from flexor and extensor muscles of the limbs are markedly increased) and (b) during walking at 0.5 m/s with the belt tilted uphill by 30 deg (when step duration is little changed but locomotor EMGs are increased by 70-100%). 3. In each of thirty Purkinje cells the timing of the discharges relative to the forelimb step cycle showed no major difference between the two speeds of walking. Most cells discharged at slightly higher overall rates at the faster walking speed but the increase was usually modest, the average being only 5.6 impulses/s (i.e. an increase of 8%). Peak rates sometimes underwent larger increases but the average was only 11.9 impulses/s (+11%). Changes in minimum rate were generally small (an average increase of 0.3 impulses/s). 4. Among twenty-one interpositus neurones there was only one in which discharge timing relative to the step cycle was different between the two speeds. Like the Purkinje cells, most neurones discharged slightly faster at the higher speed but the average increase was only 5.5 impulses/s (+8.5%). Peak firing rates also usually showed a modest increase (averaging 6.2 impulses/s; +6.5%) while minimum rates were little changed. 5. Among nineteen Purkinje cells compared between walking uphill and on the flat only one showed any major difference in discharge phasing; overall firing rates were on average only 1.3 impulses/s (2%) higher for uphill locomotion. 6. Among twenty-one interpositus neurones discharge phasing differed markedly between walking uphill and on the flat in only two cells. Overall discharge rates were on average slightly higher uphill (by 3.5 impulses/s; 6.7%) and peak rates also usually increased slightly (on average, by 6 impulses/s; 7.7%). Minimum rates were higher, on average, by 1.6 impulses/s (+5%). 7. The findings are discussed in relation to current notions of how the intermediate part of the cerebellum may contribute to movement control and it is concluded that the neurones studies probably make little contribution to determining the vigour of the movements of steady walking.
摘要
  1. 细胞外微电极被用于自由活动的猫,以研究小脑前叶V小叶中部浦肯野细胞以及其下方的前间位核神经元的运动相关放电。所有研究的细胞在运动过程中均有节律地放电。2. 将在水平运动带上以0.5米/秒的速度行走时的放电情况与以下两种情况进行比较:(a) 以0.9米/秒的速度行走(此时步周期持续时间大幅缩短,从四肢屈肌和伸肌记录到的运动肌电图(EMG)幅度显著增加);(b) 在水平运动带倾斜30度的情况下以0.5米/秒的速度行走(此时步持续时间变化不大,但运动EMG增加70 - 100%)。3. 在30个浦肯野细胞中,相对于前肢步周期的放电时间在两种行走速度之间没有重大差异。大多数细胞在较快行走速度下的总体放电频率略高,但增加通常不大,平均仅为5.6次/秒(即增加8%)。峰值频率有时增加幅度较大,但平均仅为11.9次/秒(+11%)。最小频率的变化通常较小(平均增加0.3次/秒)。4. 在21个间位核神经元中,只有一个神经元相对于步周期的放电时间在两种速度之间有所不同。与浦肯野细胞一样,大多数神经元在较高速度下放电略快,但平均增加仅为5.5次/秒(+8.5%)。峰值放电频率通常也有适度增加(平均为6.2次/秒;+6.5%),而最小频率变化不大。5. 在比较上坡行走和平地行走的19个浦肯野细胞中,只有一个在放电相位上有任何重大差异;上坡运动时的总体放电频率平均仅高出1.3次/秒(2%)。6. 在21个间位核神经元中,只有两个细胞在上坡行走和平地行走时的放电相位有明显差异。上坡时的总体放电频率平均略高(高出3.5次/秒;6.7%),峰值频率通常也略有增加(平均高出6次/秒;7.7%)。最小频率平均高出1.6次/秒(+5%)。7. 结合当前关于小脑中部如何可能有助于运动控制的观点对这些发现进行了讨论,并得出结论:所研究的神经元可能对确定稳定行走运动的活力贡献不大。

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