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行为学猕猴的丘脑腹后内侧核。II. 在辨别和注意力任务期间对吹气刺激的反应。

Thalamic VPM nucleus in the behaving monkey. II. Response to air-puff stimulation during discrimination and attention tasks.

作者信息

Tremblay N, Bushnell M C, Duncan G H

机构信息

Centre de recherche en sciences neurologiques, Université de Montreal, Quebec, Canada.

出版信息

J Neurophysiol. 1993 Mar;69(3):753-63. doi: 10.1152/jn.1993.69.3.753.

DOI:10.1152/jn.1993.69.3.753
PMID:8385193
Abstract
  1. Single-unit activity was recorded in the ventral posterior medial (VPM) thalamic nucleus of awake monkeys while they performed detection and discrimination tasks involving tactile air-puff stimuli presented to the face. Neuronal responsiveness was compared directly with the monkey's discriminative performance. In addition, neuronal activity was compared when the monkey's attention was directed to the air-puff stimulus and when it was directed to a concurrent visual stimulus. 2. Neurons responding to the air-puff stimuli were classified as slowly adapting (SA), rapidly adapting (RA), inhibitory (IN), or multimodal (MM), according to their responses to manual and thermal stimulation, as well as their adaption rates to the air puff. Of 47 neurons responsive to air-puff stimulation and studied extensively in the behavioral task, 14 were classified as RA, 15 as SA, 6 as IN, and 12 as MM. The 12 MM neurons were so classified because, in addition to air puff, they responded to noxious heat, innocuous cooling, or noxious pinch. 3. Neurons from each class had restricted contralateral receptive fields localized within one division of the trigeminal nerve. There was no systematic difference in receptive-field size among groups. 4. A prominent difference in tactile responsiveness of MM neurons was response latency. Although the mean latency for RA, SA, and IN neurons was not significantly different (6.1, 9.1, and 12.2 ms, respectively), the mean latency for MM neurons was significantly longer than that for each of the other neuronal categories (28.8 ms; Ps < 0.001). These data suggest that the excitatory tactile afferent input to MM neurons is different from that to low-threshold neurons. 5. For RA, SA, and MM neurons the frequency of the neuronal discharge evoked by the air-puff stimulation was proportional to the intensity of the air puff. Thus responses of each neuronal class coded air-puff stimulus intensity. 6. The monkeys' ability to detect air-puff stimuli of various intensities was compared with the frequency of neuronal responses to those stimuli. Both the percent success in detecting differences in air-puff intensity and the detection latency were highly correlated with neuronal response frequency. The responses of all three excitatory neuronal categories corresponded well with the monkey's performance. Thus any or all of RA, SA, and MM neurons could play a role in the discrimination of air-puff intensities.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在清醒猴子的腹后内侧(VPM)丘脑核中记录单神经元活动,此时猴子执行涉及呈现于面部的触觉吹气刺激的检测和辨别任务。将神经元反应性与猴子的辨别表现直接进行比较。此外,还比较了猴子注意力指向吹气刺激时和指向同时呈现的视觉刺激时的神经元活动。2. 根据对手动和热刺激的反应以及对吹气的适应率,将对吹气刺激有反应的神经元分为慢适应性(SA)、快适应性(RA)、抑制性(IN)或多模式(MM)。在行为任务中广泛研究的47个对吹气刺激有反应的神经元中,14个被分类为RA,15个为SA,6个为IN,12个为MM。这12个MM神经元之所以这样分类,是因为除了吹气外,它们还对有害热、无害冷却或有害捏压有反应。3. 每个类别中的神经元在三叉神经的一个分支内有局限的对侧感受野。各组之间感受野大小没有系统性差异。4. MM神经元触觉反应性的一个显著差异是反应潜伏期。虽然RA、SA和IN神经元的平均潜伏期没有显著差异(分别为6.1、9.1和12.2毫秒),但MM神经元的平均潜伏期明显长于其他神经元类别中的每一个(28.8毫秒;P<0.001)。这些数据表明,MM神经元的兴奋性触觉传入输入与低阈值神经元的不同。5. 对于RA、SA和MM神经元,吹气刺激诱发的神经元放电频率与吹气强度成正比。因此,每个神经元类别的反应编码了吹气刺激强度。6. 将猴子检测不同强度吹气刺激的能力与对这些刺激的神经元反应频率进行比较。检测吹气强度差异的成功率和检测潜伏期都与神经元反应频率高度相关。所有三个兴奋性神经元类别的反应都与猴子的表现非常吻合。因此,RA、SA和MM神经元中的任何一个或全部都可能在吹气强度辨别中起作用。(摘要截选至400字)

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