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猫大脑皮层中触觉信息的并行处理:初级体感皮层(SI)可逆失活对次级体感皮层(SII)神经元反应性的影响

Parallel processing of tactile information in the cerebral cortex of the cat: effect of reversible inactivation of SI on responsiveness of SII neurons.

作者信息

Turman A B, Ferrington D G, Ghosh S, Morley J W, Rowe M J

机构信息

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

出版信息

J Neurophysiol. 1992 Feb;67(2):411-29. doi: 10.1152/jn.1992.67.2.411.

Abstract
  1. Localized cortical cooling was employed in anesthetized cats for the rapid reversible inactivation of the distal forelimb region within the primary somatosensory cortex (SI). The aim was to examine the responsiveness of individual neurons in the second somatosensory area (SII) in association with SI inactivation to evaluate the relative importance for tactile processing of the direct thalamocortical projection to SII and the indirect projection from the thalamus to SII via an intracortical path through SI. 2. Response features were examined quantitatively before, during, and after SI inactivation for 29 SII neurons, the tactile receptive fields of which were on the glabrous or hairy skin of the distal forelimb. Controlled mechanical stimuli that consisted of l-s trains of either sinusoidal vibration or rectangular pulses were delivered to the skin by means of small circular probes (4- to 8-mm diam). 3. Twenty-three of the 29 SII neurons (80%) showed no change in response level (in impulses per second) as a result of SI inactivation. These included seven neurons activated exclusively or predominantly by Pacinian corpuscle (PC) receptors, six that received hair follicle input, four activated by convergent input from hairy and glabrous skin, and six driven by dynamically sensitive but non-PC inputs from the glabrous skin. 4. Six SII neurons (20%), also made up of different functional classes, displayed a reduction in response to cutaneous stimuli when SI was inactivated. 5. Stimulus-response relations, constructed by plotting response level in impulses per second against the amplitude of the mechanical stimulus, showed that the effect of SI inactivation on individual neurons was consistent over the whole response range. 6. The reduced response level seen in 20% of SII neurons in association with SI inactivation cannot be attributed to direct spread of cooling from SI to the forelimb area of SII, as there was no evidence for a cooling-induced prolongation in SII spike waveforms, an effect that is known to precede any cooling-induced reduction in responsiveness. 7. As SI inactivation produced a fall in spontaneous activity in the affected SII neurons, we suggest that the inactivation removes a source of background facilitatory influence that arises in SI and affects a small proportion of SII neurons. 8. Phase-locking and therefore the precision of impulse patterning were unchanged in the responses of SII neurons to vibration during SI inactivation. This was the case whether response levels of neurons were reduced or unchanged by SI inactivation.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在麻醉猫身上采用局部皮层冷却法,使初级体感皮层(SI)内的远侧前肢区域快速可逆失活。目的是研究第二体感区(SII)中单个神经元在SI失活时的反应性,以评估丘脑直接投射到SII以及丘脑通过SI内的皮质内路径间接投射到SII在触觉处理中的相对重要性。2. 对29个SII神经元在SI失活前、失活期间和失活后的反应特征进行了定量研究,这些神经元的触觉感受野位于远侧前肢的无毛或有毛皮肤上。通过小圆形探头(直径4至8毫米)将由1秒时长的正弦振动或矩形脉冲组成的受控机械刺激施加到皮肤上。3. 29个SII神经元中有23个(80%)在SI失活后反应水平(每秒冲动数)没有变化。其中包括7个仅由或主要由帕西尼小体(PC)受体激活的神经元,6个接受毛囊输入的神经元,4个由有毛和无毛皮肤的汇聚输入激活的神经元,以及6个由无毛皮肤的动态敏感但非PC输入驱动的神经元。4. 6个SII神经元(20%),也由不同功能类别组成,在SI失活时对皮肤刺激的反应降低。5. 通过绘制每秒冲动数的反应水平与机械刺激幅度的关系构建的刺激 - 反应关系表明,SI失活对单个神经元的影响在整个反应范围内是一致的。6. 20%的SII神经元在SI失活时出现的反应水平降低不能归因于冷却从SI直接扩散到SII的前肢区域,因为没有证据表明冷却会导致SII动作电位波形延长,而这种效应已知会先于任何冷却引起的反应性降低。7. 由于SI失活导致受影响的SII神经元自发活动下降,我们认为失活消除了SI中产生的背景促进性影响源,这种影响会作用于一小部分SII神经元。8. 在SI失活期间,SII神经元对振动的反应中的锁相以及因此冲动模式的精度没有改变。无论SI失活使神经元的反应水平降低还是不变,都是如此。(摘要截短为400字)

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