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浣熊体感皮层中由汇聚的体感和皮质-皮质输入诱发的突触电位:可塑性的基础

Synaptic potentials evoked by convergent somatosensory and corticocortical inputs in raccoon somatosensory cortex: substrates for plasticity.

作者信息

Smits E, Gordon D C, Witte S, Rasmusson D D, Zarzecki P

机构信息

Medical Research Council Group in Sensory-Motor Physiology, Department of Physiology, Queen's University, Kingston, Ontario, Canada.

出版信息

J Neurophysiol. 1991 Sep;66(3):688-95. doi: 10.1152/jn.1991.66.3.688.

Abstract
  1. "Unmasking" of weak synaptic connections has been suggested as a mechanism for the early changes in cortical topographic maps that follow alterations of sensory activity. For such a mechanism to operate, convergent sensory inputs must already exist in the normal cortex. 2. We tested for topographic and cross-modality convergence in primary somatosensory cortex of raccoon. The representation of glabrous skin of forepaw digits was chosen because, even though it is dominated by inputs from the glabrous skin of a single digit, it nevertheless comes to respond to stimulation of other digits when, e.g., a digit is removed. 3. Intracellular recordings were made from 109 neurons in the representation of glabrous skin of digit 4. Neurons were tested for somatosensory inputs with electrical and natural stimulation of digits. 4. Excitatory postsynaptic potentials (EPSPs) were evoked in 100% of the neurons (109/109) by electrical stimulation of glabrous skin of digit 4, and in 79% (31 of 39) by vibrotactile stimulation. 5. Glabrous skin of digit 4 was not the sole source of somatosensory inputs. A minority of neurons generated EPSPs after electrical stimulation of hairy skin of digit 4 (10 of 98 neurons, 10%). Electrical stimulation of digits 3 or 5 evoked EPSPs in 22 of 103 neurons (21%). Natural stimulation (vibrotactile or hair bending) was also effective in most of these latter cases (digit 3, 6/7; digit 5, 9/10). 6. Intracortical microstimulation of the "heterogeneous zone" was used to test for corticocortical connections to neurons in the glabrous zone.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 弱突触连接的“去掩盖”被认为是感觉活动改变后皮质地形图早期变化的一种机制。要使这种机制发挥作用,正常皮质中必须已经存在汇聚的感觉输入。2. 我们在浣熊的初级体感皮层中测试了地形图和跨模态汇聚情况。选择前爪指无毛皮肤的表征是因为,即使它主要由单个指的无毛皮肤输入主导,但当例如一个指被切除时,它仍会对其他指的刺激产生反应。3. 从第4指无毛皮肤表征中的109个神经元进行了细胞内记录。通过对指进行电刺激和自然刺激来测试神经元的体感输入。4. 通过对第4指无毛皮肤进行电刺激,在100%的神经元(109/109)中诱发了兴奋性突触后电位(EPSP),通过振动触觉刺激在79%(39个中的31个)的神经元中诱发了EPSP。5. 第4指无毛皮肤不是体感输入的唯一来源。少数神经元在对第4指有毛皮肤进行电刺激后产生了EPSP(98个神经元中的10个,10%)。对第3或5指进行电刺激在103个神经元中的22个(21%)中诱发了EPSP。在大多数后一种情况下,自然刺激(振动触觉或毛发弯曲)也有效(第3指,6/7;第5指,9/10)。6. 使用对“异质区”的皮质内微刺激来测试与无毛区神经元的皮质皮质连接。(摘要截短于250字)

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