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猴子初级体感皮层3b区和1区快速适应神经元的感觉反应性与运动前活动之间的关系。

Relationships between sensory responsiveness and premovement activity of quickly adapting neurons in areas 3b and 1 of monkey primary somatosensory cortex.

作者信息

Nelson R J, Smith B N, Douglas V D

机构信息

Department of Anatomy and Neurobiology, College of Medicine, University of Tennessee, Memphis 38163.

出版信息

Exp Brain Res. 1991;84(1):75-90. doi: 10.1007/BF00231763.

Abstract

When monkeys make wrist movements in response to vibration of their hands, primary somatosensory (SI) cortical neurons that adapt quickly to the vibratory stimulus often exhibit two temporally separate types of activity. Initially, these neurons respond to the stimulus. They then cease discharging, only to resume firing prior to the movement. This activation, cessation and reactivation occurs even though the sensory stimulus remains on until after the movement is begun. The first change in activity is most likely related to sensory input. The second, which has been called premovement activity, may have a sensory component as well as one related to the upcoming movement. We wanted to test the hypothesis that the premovement activity exhibited when vibration is present represents both a reactivation of a neuron's vibratory response and the premovement activity that normally occurs when vibration is absent. We also wanted to determine if area 3b and 1 quickly adapting (QA) neurons show similar or different activity patterns during the initiation and execution of sensory triggered wrist movements. Four monkeys were trained to make wrist flexion and extension movements in response to vibratory stimuli delivered to the handle which the animals used to control the behavioral paradigm. Two fo the four monkeys also made similar wrist movements following visual cues. We found that the premovement activity of QA neurons located in area 1 (but not area 3b) is comprised of a sensory-related component as well as a movement-related component. The magnitude of these individual components differs in relationship to a neuron's receptive field type, the movement direction and the external force imposed on the stimulated forelimb. Premovement activity of area 3b and area 1 QA neurons occurs at the same time prior to movement, regardless of whether visual or vibratory cues are used to trigger wrist movements. This activity occurs at about the same time as others have observed elevations in the threshold for tactile perception, suggesting that premovement activity and changes in sensory responsiveness before movement may be related. These and previous findings are used to construct a model which may predict the firing patterns of SI QA neurons during behavioral tasks. These findings also suggest that areas 3b and 1 may have different roles in processing task-related somatosensory information.

摘要

当猴子根据手部振动做出腕部动作时,对振动刺激快速适应的初级体感(SI)皮层神经元通常会表现出两种在时间上分开的活动类型。最初,这些神经元对刺激做出反应。然后它们停止放电,却又在动作开始前恢复放电。即使感觉刺激一直持续到动作开始后,这种激活、停止和重新激活仍会发生。活动的第一个变化很可能与感觉输入有关。第二个变化,即所谓的运动前活动,可能既有感觉成分,也有与即将到来的动作相关的成分。我们想要检验这样一个假设:当存在振动时表现出的运动前活动既代表神经元振动反应的重新激活,也代表在没有振动时正常发生的运动前活动。我们还想确定3b区和1区的快速适应(QA)神经元在感觉触发的腕部动作的启动和执行过程中是否表现出相似或不同的活动模式。训练了四只猴子,让它们根据施加到手柄上的振动刺激做出腕部屈伸动作,猴子通过手柄来控制行为范式。四只猴子中的两只在视觉提示后也做出了类似的腕部动作。我们发现,位于1区(而非3b区)的QA神经元的运动前活动由一个感觉相关成分和一个运动相关成分组成。这些个体成分的大小因神经元的感受野类型、运动方向以及施加在受刺激前肢上的外力而有所不同。无论使用视觉还是振动提示来触发腕部动作,3b区和1区QA神经元的运动前活动都在动作前同时发生。这种活动与其他人观察到的触觉感知阈值升高大约同时出现,这表明运动前活动和动作前感觉反应的变化可能有关。这些以及之前的发现被用于构建一个模型,该模型可能预测行为任务期间SI区QA神经元的放电模式。这些发现还表明,3b区和1区在处理与任务相关的体感信息方面可能具有不同的作用。

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