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触须/桶状皮层系统中的OFF反应转换

OFF response transformations in the whisker/barrel system.

作者信息

Kyriazi H T, Carvell G E, Simons D J

机构信息

Department of Neurobiology, University of Pittsburgh, Pennsylvania 15261.

出版信息

J Neurophysiol. 1994 Jul;72(1):392-401. doi: 10.1152/jn.1994.72.1.392.

Abstract
  1. Previous studies have demonstrated marked differences in the relative sizes of ON and OFF responses of neurons in the whisker/barrel system. In particular, OFF responses are unexpectedly large in thalamic neurons. Extracellular unit recordings were used to examine whether varying the time between stimulus onset and offset differently affects OFF responses of neurons in the trigeminal ganglion, ventrobasal thalamus, and somatosensory cortical layer IV. Controlled whisker stimuli were used to deflect individual vibrissal hairs in different directions. We hypothesized that, in part because of the gradual waning of central inhibition evoked by stimulus onset, OFF responses of thalamic and cortical neurons but not trigeminal ganglion cells would increase in size with longer duration stimuli, with relative changes being greatest in the cortex. 2. OFF response magnitudes for thalamic and cortical neuronal populations increased as the stimulus duration was increased from 200 to 1,400 ms. Increases were greater at nonoptimal deflection angles. Similarly, individual cells having smaller OFF responses for the short-duration stimulus tended to display proportionately greater increases when the stimulus was lengthened. OFF responses of trigeminal ganglion cells were largely unaffected by stimulus duration. 3. Barrel neurons were subclassified as regular-spike units (RSUs) or fast-spike units (FSUs) on the basis of the time course of their action potentials. ON and OFF responses were smaller in the former and, when the stimulus was lengthened, percentage increases in their OFF responses were greater than those in FSUs. Results illustrate nonlinear transformations of the thalamic input signal by RSUs, which are presumed to be excitatory barrel neurons, and extend previous findings of response similarities between thalamocortical units (TCUs) and FSUs, the latter of which are thought to be inhibitory. 4. The time course of OFF response suppression in cortical neurons suggests that stimulus onset evokes central inhibition having two components, a potent one lasting several tens of milliseconds and a weaker one lasting many hundreds of milliseconds. Background activity levels in cortex and thalamus were diminished for > or = 1,800 ms after whisker movement. 5. For TCUs, 200-ms stimuli were less likely than 1,400-ms stimuli to elicit an OFF response, but when responses occurred they consisted of a greater number of spikes timed closer together. By contrast, the 200-ms stimulus OFF responses of the RSUs and FSUs displayed longer interspike intervals than did their 1400-ms responses, with no change in the number of spikes per response.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 先前的研究表明,在触须/桶状系统中,神经元的开反应和关反应的相对大小存在显著差异。特别是,丘脑神经元的关反应出乎意料地大。采用细胞外单位记录法,研究刺激开始与结束之间的时间变化是否会对三叉神经节、腹后丘脑和体感皮层IV层神经元的关反应产生不同影响。使用可控的触须刺激使单个触须毛向不同方向偏转。我们推测,部分原因是刺激开始引起的中枢抑制逐渐减弱,丘脑和皮层神经元而非三叉神经节细胞的关反应会随着刺激持续时间延长而增大,其中皮层的相对变化最大。2. 随着刺激持续时间从200毫秒增加到1400毫秒,丘脑和皮层神经元群体的关反应幅度增大。在非最佳偏转角时增大更为明显。同样,对短持续时间刺激关反应较小的单个细胞,在刺激延长时往往显示出成比例更大的增加。三叉神经节细胞的关反应在很大程度上不受刺激持续时间的影响。3. 根据动作电位的时间进程,将桶状神经元分为规则发放单位(RSUs)或快速发放单位(FSUs)。前者的开反应和关反应较小,当刺激延长时,其关反应的百分比增加大于FSUs。结果说明了RSUs(推测为兴奋性桶状神经元)对丘脑输入信号的非线性转换,并扩展了先前丘脑皮层单位(TCUs)和FSUs反应相似性的研究结果,后者被认为是抑制性的。 4. 皮层神经元关反应抑制的时间进程表明,刺激开始引起的中枢抑制有两个成分,一个强成分持续几十毫秒,一个弱成分持续几百毫秒。触须运动后,皮层和丘脑的背景活动水平在≥1800毫秒的时间内降低。5. 对于TCUs,200毫秒的刺激比1400毫秒的刺激引发关反应的可能性更小,但当反应发生时,它们由更多时间间隔更近的尖峰组成。相比之下,RSUs和FSUs的200毫秒刺激关反应的峰间间隔比1400毫秒反应的更长,每次反应的尖峰数量没有变化。(摘要截选至400字)

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