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大鼠触须/桶状皮层系统中的丘脑皮质反应转换

Thalamocortical response transformation in the rat vibrissa/barrel system.

作者信息

Simons D J, Carvell G E

机构信息

Department of Physiology, School of Medicine, School of Health Related Professions, University of Pittsburgh, Pennsylvania 15261.

出版信息

J Neurophysiol. 1989 Feb;61(2):311-30. doi: 10.1152/jn.1989.61.2.311.

Abstract
  1. Extracellular single-unit recordings and controlled whisker stimuli were used to compare response properties between cells in the "barreloids" of the thalamic ventrobasal complex and those in the cytochrome oxidase-rich centers of the "barrels" in the first somatic sensory cortex. Individual vibrissae were deflected alone or in paired combination involving the neuron's maximally excitatory whisker and an adjacent one in the same or neighboring whisker rows. Quantitative data were derived from 135 thalamocortical unit's (TCUs), 242 "regular-spike" barrel units (RSUs), and 16 "fast-spike" barrel units (FSUs) recorded in 26 normal adult rats. 2. Compared with TCUs, RSUs displayed lower rates of spontaneous activity and responded less vigorously to whisker stimuli. Proportionally, more than twice as many TCUs as RSUs responded in slowly adapting fashion to at least one angular direction of whisker displacement. Discharges of slowly adapting TCUs were approximately 3.5 times greater than those of slowly adapting RSUs. 3. Proportionally, about twice as many TCUs than RSUs responded selectively to whisker movements in different angular directions. 4. Cells in the thalamus responded more vigorously to a larger number of whiskers than RSUs in the cortex. Depending on the stimulus conditions, two to three times more TCUs than RSUs were excited by two or more whiskers. 5. Following displacement of an adjacent whisker, unit discharges to subsequent deflections of the maximally excitatory whisker were reduced in a time-dependent fashion. The time course of response suppression was similar in TCUs and RSUs, but inhibitory interactions between adjacent whiskers were observed much less often in the thalamus. A cyclic pattern of stimulus-evoked excitation/inhibition characterizes responses in the cortical barrels but is considerably less pronounced in the thalamic barreloids. 6. The presence and/or degree of response suppression depended on which adjacent whisker was stimulated and on the angular direction of that whisker's movement. For individual TCUs, some adjacent whiskers evoked inhibition, others did not. The vast majority of RSUs displayed response suppression to all adjacent whiskers. Unlike receptive fields of TCUs, those of RSUs have small--i.e., single-whisker--excitatory centers with potent and symmetrical inhibitory surrounds. 7. Fast-spike units in the barrels displayed the greatest spontaneous and stimulus-evoked activities and were the least selective for whisker movements at different angular directions. FSUs had the largest excitatory receptive fields; 100% responded to two or more vibrissae.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用细胞外单单位记录和可控的触须刺激,比较丘脑腹侧基底复合体“桶状小体”中的细胞与初级体感皮层“桶”中富含细胞色素氧化酶区域的细胞的反应特性。单个触须单独偏转,或与涉及神经元最大兴奋性触须以及同一或相邻触须排中的相邻触须以配对组合的方式偏转。定量数据来自于在26只正常成年大鼠中记录的135个丘脑皮质单位(TCU)、242个“规则放电”桶状细胞单位(RSU)和16个“快速放电”桶状细胞单位(FSU)。2. 与TCU相比,RSU的自发活动率较低,对触须刺激的反应也较弱。按比例计算,以慢适应方式对至少一个触须位移角度方向做出反应的TCU数量是RSU的两倍多。慢适应TCU的放电约为慢适应RSU的3.5倍。3. 按比例计算,对不同角度方向的触须运动有选择性反应的TCU数量约为RSU的两倍。4. 丘脑中的细胞对更多数量的触须反应比皮层中的RSU更强烈。根据刺激条件,被两根或更多触须激发的TCU数量比RSU多两到三倍。5. 在相邻触须位移后,对最大兴奋性触须随后偏转的单位放电以时间依赖的方式减少。反应抑制的时间进程在TCU和RSU中相似,但相邻触须之间的抑制性相互作用在丘脑中观察到的频率要低得多。刺激诱发的兴奋/抑制的循环模式是皮层桶状区反应的特征,但在丘脑桶状小体中则不那么明显。6. 反应抑制的存在和/或程度取决于刺激的是哪根相邻触须以及该触须运动的角度方向。对于单个TCU,一些相邻触须会诱发抑制,另一些则不会。绝大多数RSU对所有相邻触须都表现出反应抑制。与TCU的感受野不同,RSU的感受野具有小的——即单触须——兴奋性中心以及强大且对称的抑制性周边。7. 桶状区中的快速放电单位表现出最大的自发和刺激诱发活动,并且对不同角度方向的触须运动选择性最低。FSU具有最大的兴奋性感受野;100%对两根或更多触须有反应。(摘要截选至400字)

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