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体感皮层对猫运动皮层不同类型输出神经元的影响。

Influence of somatosensory cortex on different classes of cat motor cortex output neuron.

作者信息

Zarzecki P

机构信息

Department of Physiology, Queen's University, Kingston, Ontario, Canada.

出版信息

J Neurophysiol. 1989 Aug;62(2):487-94. doi: 10.1152/jn.1989.62.2.487.

Abstract
  1. Multiple output pathways originate from motor cortex. In this study on cats, six classes of corticofugal neurons were identified by antidromic activation. Corticocallosal neurons of layer III were activated antidromically by stimulation of contralateral motor cortex. Layer V neurons were identified by antidromic activation from cerebral peduncle, red nucleus, lateral reticular nucleus of medulla, or spinal cord. Corticothalamic neurons were identified in layer VI. All the identified neurons were tested for input from primary somatosensory cortex. 2. Neurons of all corticofugal groups received excitatory inputs from primary somatosensory cortex. The shortest latency corticocortical effects of 1.2-2.5 ms were found for corticocallosal neurons of layer III, and for layer V neurons which projected axons through the cerebral peduncle, to red nucleus, and to spinal cord. 3. Nearby neurons, projecting to the same of different targets, were affected nonuniformly by corticocortical inputs. This finding supports the conclusion that specificity of afferent connections within cerebral cortex is not determined by anatomic segregation of cell bodies nor by projection target of efferent neurons. 4. These selectively distributed input connectivities suggest that even a small region of motor cortex could send different signals to its diverse targets.
摘要
  1. 多条输出通路起源于运动皮层。在这项针对猫的研究中,通过逆向激活鉴定出了六类皮质传出神经元。通过刺激对侧运动皮层逆向激活了Ⅲ层的胼胝体皮质神经元。通过大脑脚、红核、延髓外侧网状核或脊髓的逆向激活鉴定出了Ⅴ层神经元。在Ⅵ层鉴定出了皮质丘脑神经元。对所有鉴定出的神经元进行了来自初级体感皮层输入的测试。2. 所有皮质传出神经元组的神经元都接受来自初级体感皮层的兴奋性输入。对于Ⅲ层的胼胝体皮质神经元以及那些轴突通过大脑脚投射到红核和脊髓的Ⅴ层神经元,发现了最短潜伏期为1.2 - 2.5毫秒的皮质皮质效应。3. 投射到相同或不同靶标的相邻神经元受到皮质皮质输入的影响并不均匀。这一发现支持了这样的结论,即大脑皮层内传入连接的特异性既不是由细胞体的解剖学分隔决定的,也不是由传出神经元的投射靶标决定的。4. 这些选择性分布的输入连接表明,即使是运动皮层的一个小区域也可以向其不同的靶标发送不同的信号。

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