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Widespread spatial integration in primary somatosensory cortex

机译:初级体感皮层的广泛空间整合

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Tactile discrimination depends on integration of information from the discrete receptive fields (RFs) of peripheral sensory afferents. Because this information is processed over a hierarchy of subcor-tical nuclei and cortical areas, the integration likely occurs at multiple levels. The current study presents results indicating that neurons across most of the extent of the hand representation in monkey primary somatosensory cortex (area 3b) interact, even when these neurons have separate RFs. We obtained simultaneous recordings by using a 100-electrode array implanted in the hand representation of primary somatosensory cortex of two anesthetized owl monkeys. During a series of 0.5-s skin indentations with single or dual probes, the distance between electrodes from which neurons with synchronized spike times were recorded exceeded 2 mm. The results provide evidence that stimuli on different parts of the hand influence the degree of synchronous firing among a large population of neurons. Because spike synchrony potentiates the activation of commonly targeted neurons, synchronous neural activity in primary somatosensory cortex can contribute to discrimination of complex tactile stimuli.
机译:触觉辨别取决于来自周围感觉传入的离散感受野(RF)的信息的整合。由于此信息是在皮层下核和皮层区域的层次结构上处理的,因此整合可能会发生在多个级别。当前的研究结果表明,即使在这些原始神经元具有独立的RF的情况下,猴子初级体感皮层(区域3b)中大部分手部代表区域的神经元也会相互作用。我们通过使用100电极阵列获得的同时录音,该阵列植入了两只麻醉的猫头鹰猴子的主要体感皮层的手部表示中。在使用单探针或双探针进行一系列0.5 s的皮肤压痕过程中,记录到具有同步尖峰时间的神经元的电极之间的距离超过2 mm。结果提供了证据,表明对手的不同部位的刺激会影响大量神经元之间同步放电的程度。因为尖峰同步增强了通常针对的神经元的激活,所以初级体感皮层中的同步神经活动可以有助于区分复杂的触觉刺激。

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