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触觉和动觉输入至薄束核的突触联系。

The synaptic linkage for tactile and kinaesthetic inputs to the dorsal column nuclei.

作者信息

Rowe Mark J

机构信息

Department of Physiology and Pharmacology, University of New South Wales, Sydney, Australia.

出版信息

Adv Exp Med Biol. 2002;508:47-55. doi: 10.1007/978-1-4615-0713-0_7.

Abstract

Our sensory abilities in touch and kinaesthesia depend upon approximately eight major classes of receptors and sensory nerve fibres. When individual fibres of these different kinaesthetic and tactile fibre classes are selectively activated in conscious human subjects by means of the intraneural microstimulation procedure there are quite marked differences observed among the classes in their capacity to generate perceptual responses. These differences may be attributable to differential transmission characteristics for different fibre classes at synaptic junctions within the sensory pathways. To test this hypothesis we have employed a paired, simultaneous recording paradigm in which we have examined the efficacy of transmission across the dorsal column nuclei (DCN) in a one-to-one synaptic linkage between single, identified tactile or kinaesthetic afferent fibres and their central DCN target neurons. These studies demonstrate a remarkable security of transmission for all fibre classes examined. For all classes, the minimum sensory input, a single impulse in one sensory fibre, can generate spike output from DCN target neurons. The results demonstrate that the differential capacities of various tactile and kinaesthetic fibre classes to generate perceptual responses when activated singly, do not appear to be explicable in terms of systematic differences in DCN transmission characteristics.

摘要

我们的触觉和动觉感官能力取决于大约八大类感受器和感觉神经纤维。当通过神经内微刺激程序在有意识的人类受试者中选择性激活这些不同的动觉和触觉纤维类别的单个纤维时,在产生知觉反应的能力方面,不同类别之间观察到了相当明显的差异。这些差异可能归因于不同纤维类别在感觉通路内突触连接处的不同传递特性。为了验证这一假设,我们采用了配对同步记录范式,在此范式中,我们研究了在单个已识别的触觉或动觉传入纤维与其中枢背柱核(DCN)目标神经元之间的一对一突触连接中,信号通过背柱核(DCN)的传递效率。这些研究表明,对于所有检测的纤维类别,传递都具有显著的安全性。对于所有类别而言,最小的感觉输入,即一根感觉纤维中的单个冲动,就能使DCN目标神经元产生动作电位输出。结果表明,各种触觉和动觉纤维类别在单独激活时产生知觉反应的不同能力,似乎无法用DCN传递特性的系统差异来解释。

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