首页> 美国卫生研究院文献>Journal of Neurophysiology >Effects of muscimol inactivations of functional domains in motor premotor and posterior parietal cortex on complex movements evoked by electrical stimulation
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Effects of muscimol inactivations of functional domains in motor premotor and posterior parietal cortex on complex movements evoked by electrical stimulation

机译:肌肉运动前和顶叶后皮质功能区的麝香酚失活对电刺激诱发的复杂运动的影响

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摘要

Parietal and frontal cortex are central to controlling forelimb movements. We previously showed that movements such as reach, grasp, and defense can be evoked from primary motor (M1), premotor (PMC), and posterior parietal (PPC) cortex when 500-ms trains of electrical pulses are delivered via microelectrodes. Stimulation sites that evoked a specific movement clustered into domains, which shared a topographic pattern in New World monkeys and prosimian galagos. Matched functional domains in parietal and frontal cortex were preferentially interconnected. We reasoned that matched functional domains form parallel networks involved in specific movements. To test the roles of domains in M1, PMC, and PPC, we systematically inactivated with muscimol domains in one region and determined if functional changes occurred in matching domains in other regions. The most common changes were higher current thresholds for stimulation-evoked movements and shorter, not fully developed, trajectories of movements. Inactivations of an M1 functional domain greatly reduced or abolished movements evoked from the matching domains in PMC or PPC, whereas movements evoked from nonmatching domains remained mostly unaffected. In contrast, inactivating PMC or PPC domains did not consistently abolish the ability to evoke movements from matching M1 domains. However, inactivation of PMC domains suppressed or altered the movements evoked from PPC domains. Thus movement sequences evoked from PMC depend on M1 and movement sequences evoked from PPC depend on both M1 and PMC. Overall, the results support the conclusion that PPC, PMC, and M1 are subdivided into functional domains that are hierarchically related within parallel networks.
机译:顶叶和额叶皮层对于控制前肢运动至关重要。我们以前的研究表明,当通过微电极传递500毫秒的电脉冲序列时,主电机(M1),前电机(PMC)和顶壁后(PPC)皮质会引起诸如触及,抓握和防御等运动。激发特定运动的刺激位点聚集在多个域中,这些域在新大陆猴子和prosimian galagos中共享地形特征。顶叶和额叶皮层中匹配的功能域优先互连。我们认为匹配的功能域形成了涉及特定运动的并行网络。为了测试域在M1,PMC和PPC中的作用,我们系统性地用一个区域的muscimol域灭活,并确定在其他区域的匹配域中是否发生功能变化。最常见的变化是刺激诱发的运动的电流阈值更高,运动的轨迹更短(未完全发育)。 M1功能域的失活大大减少或取消了从PMC或PPC中的匹配域引起的运动,而从不匹配域引起的运动大部分仍然不受影响。相反,灭活PMC或PPC域并不能始终取消从匹配的M1域引起运动的能力。但是,PMC域的失活抑制或改变了PPC域引起的运动。因此,从PMC引发的运动序列取决于M1,从PPC引起的运动序列取决于M1和PMC。总体而言,这些结果支持以下结论:PPC,PMC和M1细分为在并行网络内与层次结构相关的功能域。

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