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清醒猕猴M1和F5区域同时记录的局部场电位和单个神经元活动中抓握动作的选择性。

Selectivity for grasp in local field potential and single neuron activity recorded simultaneously from M1 and F5 in the awake macaque monkey.

作者信息

Spinks Rachel L, Kraskov Alexander, Brochier Thomas, Umilta M Alessandra, Lemon Roger N

机构信息

Sobell Department of Motor Neuroscience and Movement Disorders, UCL Institute of Neurology, London WC1N3BG, United Kingdom.

出版信息

J Neurosci. 2008 Oct 22;28(43):10961-71. doi: 10.1523/JNEUROSCI.1956-08.2008.

DOI:10.1523/JNEUROSCI.1956-08.2008
PMID:18945904
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2637078/
Abstract

The selectivity for object-specific grasp in local field potentials (LFPs) was investigated in two awake macaque monkeys trained to observe, reach out, grasp and hold one of six objects presented in a pseudorandom order. Simultaneous, multiple electrode recordings were made from the hand representations of primary motor cortex (M1) and ventral premotor cortex (area F5). LFP activity was well developed during the observation and hold periods of the task, especially in the beta-frequency range (15-30 Hz). Selectivity of LFP activity for upcoming grasp was rare in the observation period, but common during stable grasp. The majority of M1 (90 of 92) and F5 (81 of 97) sites showed selectivity for at least one frequency, which was maximal in the beta range but also present at higher frequencies (30-50 Hz). When the LFP power associated with grasp of a specific object was large in the beta-frequency range, it was usually of low power in the higher 30-50 Hz range, and vice-versa. Simple hook grips involving flexion of one or more fingers were associated with large beta power, whereas more complex grips involving the thumb (e.g., precision grip) were associated with small beta power. At many M1 sites, there was a highly significant inverse relationship between the tuning of spikes (including those of identified pyramidal tract neurons) and beta-range LFP for different grasps, whereas a positive correlation was found at higher frequencies (30-50 Hz). High levels of beta LFP and low pyramidal cell spike rate may reflect a common mechanism used to control motor set during different types of grasp.

摘要

在两只经过训练的清醒猕猴中,研究了局部场电位(LFP)对特定物体抓握的选择性。这两只猕猴被训练以伪随机顺序观察、伸手、抓握并握住六个物体中的一个。同时,从初级运动皮层(M1)和腹侧运动前皮层(F5区)的手部表征区域进行多电极同步记录。在任务的观察期和握持期,LFP活动良好,尤其是在β频率范围(15 - 30赫兹)。在观察期,LFP活动对即将到来的抓握的选择性很少见,但在稳定抓握期间很常见。大多数M1(92个位点中的90个)和F5(97个位点中的81个)位点对至少一种频率表现出选择性,在β范围内选择性最大,但在更高频率(30 - 50赫兹)也存在。当与特定物体抓握相关的LFP功率在β频率范围内较大时,在30 - 50赫兹的较高频率范围内通常功率较低,反之亦然。涉及一个或多个手指弯曲的简单钩状抓握与较大的β功率相关,而涉及拇指的更复杂抓握(例如精确抓握)与较小的β功率相关。在许多M1位点,不同抓握的尖峰(包括那些已识别的锥体束神经元的尖峰)调谐与β范围的LFP之间存在高度显著的负相关,而在较高频率(30 - 50赫兹)发现正相关。高水平的β LFP和低锥体细胞尖峰率可能反映了在不同类型抓握过程中用于控制运动准备的共同机制。

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