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猫脊髓中腰段运动前中间神经元终末的诱发性兴奋性变化。

Evoked excitability changes at the terminals of midlumbar premotor interneurons in the cat spinal cord.

作者信息

Aggelopoulos N C, Chakrabarty S, Edgley S A

机构信息

Department of Anatomy, University of Cambridge, Downing Street, Cambridge, CB2 3DY United Kingdom.

出版信息

J Neurosci. 1997 Feb 15;17(4):1512-8. doi: 10.1523/JNEUROSCI.17-04-01512.1997.

Abstract

We present evidence that the electrical excitability of the terminals of a group of spinal premotor interneurons can be increased after stimulation of sensory afferents. The interneurons were located in the midlumbar segments of the spinal cord and had projections to the lower lumbar motor nuclei. Thresholds for antidromic activation of a substantial number of interneurons were reduced after electrical stimulation of group II muscle afferents. Several observations suggest that the excitability changes are unlikely to have arisen from electrotonic spread of depolarization from the interneuron soma to its terminals or by environmental changes in the vicinity of the terminals related to neuronal activity. A particularly interesting possibility is that the excitability of the central terminals of the interneurons is increased because they are depolarized by a mechanism similar to that acting at the terminals of primary sensory afferents (primary afferent depolarization, PAD), which accompanies one type of presynaptic inhibition. This type of presynaptic action has been shown in premotor interneurons in the lamprey but not in the mammalian spinal cord. From our observations the organization of the systems generating excitability changes at the interneuron terminals seem in general to parallel the organization of the systems generating PAD at afferent terminals, raising the possibility that common principles might underlie the operation of this form of presynaptic control.

摘要

我们提供的证据表明,刺激感觉传入神经后,一组脊髓运动前中间神经元终末的电兴奋性可增强。这些中间神经元位于脊髓腰段中部,投射至腰段下部的运动核。电刺激Ⅱ类肌肉传入神经后,大量中间神经元的逆向激活阈值降低。多项观察结果表明,兴奋性变化不太可能源于去极化从中间神经元胞体向其终末的电紧张性扩布,也不太可能是由与神经元活动相关的终末附近环境变化引起的。一个特别有趣的可能性是,中间神经元中枢终末的兴奋性增加是因为它们通过一种类似于作用于初级感觉传入神经终末(初级传入去极化,PAD)的机制发生去极化,PAD伴随一种突触前抑制。这种突触前作用已在七鳃鳗的运动前中间神经元中得到证实,但在哺乳动物脊髓中尚未得到证实。根据我们的观察,在中间神经元终末产生兴奋性变化的系统组织,总体上似乎与在传入神经终末产生PAD的系统组织相似,这增加了共同原理可能是这种突触前控制形式运作基础的可能性。

相似文献

本文引用的文献

1
The interpretation of potential changes in the spinal cord.脊髓潜在变化的解读。
J Physiol. 1938 Apr 14;92(3):276-321. doi: 10.1113/jphysiol.1938.sp003603.

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