Somatotopically inappropriate projections from thalamocortical neurons to the SI cortex of the cat demonstrated by the use of intracortical microstimulation.

P J Snow, R J Nudo, W Rivers, W M Jenkins, M M Merzenich
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引用次数: 59

Abstract

Single thalamocortical neurons with receptive fields on the toes were antidromically activated by the passage of 300-microseconds, 0.5- to 10-microA pulses through glass micropipette electrodes placed within somatotopically identified regions of the digit representation of the cat first somatosensory (SI) cortex. The somatotopy of the cortex was determined using recordings from single cortical neurons (see "Methods"), and the positions of the all tracks were marked on an enlarged photograph of the postcruciate cortex. In two of the three protocols, a very precise map of the boundary between two adjacent toes was produced prior to attempting intracortical microstimulation. Slopes of the threshold-distance curves at the sites of the lowest recorded thresholds were on the order of 0.8 microA/10 micron. This value, together with information on the anatomy of the cortical arborizations of thalamocortical neurons (Landry and Deschenes, 1981), suggested that currents of 2 and 5 microA would not activate the cortical processes of thalamocortical neurons at distances greater than 50 and 90 microns, respectively. With currents below 5 microA, thalamocortical neurons could be antidromically activated at a number of sites at depths between 340 and 930 microns (layer IV and upper layer III) and between 1,050 and 1,460 microns (layer VI). A total of 13 thalamocortical neurons could be antidromically activated using current pulses of between 0.8 and 5.0 microA, from within tracks at tangential distances of 250-830 microns from the nearest track through the somatotopically appropriate region. Within somatotopically inappropriate regions, cortical neurons frequently had receptive fields on a toe adjacent to that bearing the receptive field of the thalamic neuron(s) under study. The possible relationship of somatotopically inappropriate projections to the reorganization of cortical somatotopy following digit amputation, paw amputation, and nerve section is discussed.

通过使用皮质内微刺激证明从丘脑皮质神经元到猫的SI皮质的体位不适当的投射。
通过放置在猫第一体感(SI)皮层的手指表征区域内的玻璃微管电极,通过300微秒、0.5至10微a的脉冲,单个丘脑皮质神经元在脚趾上具有接受野被反向激活。使用单个皮层神经元的记录来确定皮层的躯体解剖(见“方法”),并在十字后皮层的放大照片上标记所有轨迹的位置。在三个方案中的两个方案中,在尝试皮质内微刺激之前,产生了两个相邻脚趾之间非常精确的边界图。阈值距离曲线在最低记录阈值处的斜率约为0.8 microA/10微米。这一数值与丘脑皮质神经元皮层分支的解剖信息(Landry和Deschenes, 1981)一起表明,2和5微电流在距离分别大于50微米和90微米时不会激活丘脑皮质神经元的皮层过程。电流低于5 microA,丘脑皮层的神经元可以在许多网站antidromically激活深度340至930微米(第四层和上层III)和1050至1460微米(VI)层,总共13丘脑皮层的神经元可以使用当前脉冲antidromically激活microA 0.8和5.0之间,在轨道的切线距离250 - 830微米的距离最近的轨道通过适当支配区域。在体位不合适的区域内,皮层神经元在脚趾上的感受野经常与所研究的丘脑神经元的感受野相邻。本文讨论了手指截肢、足部截肢和神经切断术后,体位不适当的投射与皮质体位重建的可能关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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