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松鼠猴体感皮层中重叠的主要和潜在输入的电生理证据。

Electrophysiological evidence for overlapping dominant and latent inputs to somatosensory cortex in squirrel monkeys.

作者信息

Schroeder C E, Seto S, Arezzo J C, Garraghty P E

机构信息

Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Neurophysiol. 1995 Aug;74(2):722-32. doi: 10.1152/jn.1995.74.2.722.

Abstract
  1. The pattern of reorganization in area 3b of adult primates after median or ulnar nerve section suggests that somatic afferents from the dorsum of the hand, carried by the radial nerve, have preferential access to the cortical territories normally expressing glabrous inputs carried by the median and ulnar nerves. A likely mechanism underlying preferential access is preexisting, but silent, radial nerve inputs to the glabrous region of cortex. 2. We tested this by comparing the effects of electrical stimulation of median or ulnar versus radial nerves, on responses in the hand representation of area 3b. Laminar current source density and multiunit activity profiles were sampled with the use of linear array multicontact electrodes spanning the laminae of area 3b. Data were obtained from three squirrel monkeys anesthetized during recording. 3. Compared with colocated median or ulnar nerve responses, the radial nerve response had 1) an initial short-latency response in the middle laminae that was subtle; there was a small transmembrane current flow component without a discernable multiunit activity correlate; and 2) a laminar sequence and distribution of activity that was similar to those of the median or ulnar nerve responses (i.e., initial activation of the middle, followed by upper and lower laminae), but the significant current flow and multiunit response to radial nerve stimulation occurs 12-15 ms later. 4. Normal corepresentation of nondominant dorsum hand (radial) inputs with the dominant (median or ulnar) inputs in the glabrous hand surface representation provides a clear vehicle for the biased patterns of reorganization occurring after peripheral nerve section. The initial, "subtle" activity phase in the nondominant response is believed to reflect intracortical inhibition, and the later "significant" response phase, a rebound excitation, possibly compounded by an indirect or extralemniscal input. The spatiotemporal pattern of nondominant input is proposed to play a role in normal somatosensory perception.
摘要
  1. 成年灵长类动物正中神经或尺神经切断后,3b区的重组模式表明,由桡神经传导的来自手背的躯体传入神经,可优先进入通常表达由正中神经和尺神经传导的无毛皮肤输入的皮质区域。优先进入的一个可能机制是,桡神经对皮质无毛区域预先存在但处于沉默状态的输入。2. 我们通过比较电刺激正中神经或尺神经与桡神经对3b区手部代表区反应的影响来对此进行测试。使用跨越3b区各层的线性阵列多触点电极对层流电流源密度和多单元活动概况进行采样。数据来自三只在记录过程中麻醉的松鼠猴。3. 与并置的正中神经或尺神经反应相比,桡神经反应具有:1)在中层有一个初始短潜伏期反应,较为微弱;有一个小的跨膜电流成分,没有可辨别的多单元活动相关物;2)活动的层序和分布与正中神经或尺神经反应相似(即,首先激活中层,随后是上层和下层),但桡神经刺激引起的显著电流和多单元反应在12 - 15毫秒后出现。4. 在无毛手部表面代表区,非优势手背(桡神经)输入与优势(正中神经或尺神经)输入的正常共同表征,为周围神经切断后发生的偏向性重组模式提供了一个明确的载体。非优势反应中的初始“微弱”活动阶段被认为反映了皮质内抑制,而后来的“显著”反应阶段是一种反弹兴奋,可能因间接或脊髓外输入而加剧。非优势输入的时空模式被认为在正常躯体感觉感知中发挥作用。

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