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Effects of Optogenetic Activation of Corticothalamic Terminals in the Motor Thalamus of Awake Monkeys

机译:唤醒猴子运动丘脑中皮质丘脑末端光遗传激活的影响。

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摘要

The role of the corticothalamic projection in the ventral motor thalamus remains poorly understood. Therefore, we studied the electrophysiological responses of neurons in the basal ganglia and cerebellar receiving-territories of the motor thalamus (BGMT and CbMT, respectively) using optogenetic activation of corticothalamic projections in awake rhesus macaques. After injections of viral vectors carrying the excitatory opsins ChR2 or C1V1 into the primary motor and premotor cortices of two monkeys, we used optrodes to light activate opsin-expressing neurons in cortex or their terminals in the thalamus while simultaneously recording the extracellular activity of neurons in the vicinity of the stimulation sites. As expected, light activation of opsins in the cerebral cortex evoked robust, short-latency increases in firing of cortical neurons. In contrast, light stimulation of corticothalamic terminals induced small-amplitude, long-latency increases and/or decreases of activity in thalamic neurons. In postmortem material, opsins were found to be expressed in cell bodies and dendrites of cortical neurons and along their corticothalamic projections. At the electron microscopic level, opsin labeling was confined to unmyelinated preterminal axons and small terminals that formed asymmetric synapses with dendrites of projection neurons or GABAergic interneurons in BGMT and CbMT and with neurons in the reticular thalamic nucleus. The morphological features of the transfected terminals, along with the long latency and complex physiological responses of thalamic neurons to their activation, suggest a modulatory role of corticothalamic afferents upon the primate ventral motor thalamus.>SIGNIFICANCE STATEMENT This study provides the first analysis of the physiological effects of cortical inputs on the activity of neurons in the primate ventral motor thalamus using light activation of opsin-containing corticothalamic terminals in awake monkeys. We found that selective light activation of corticothalamic terminals in contact with distal dendrites of thalamocortical neurons and GABAergic interneurons elicits complex patterns of slowly developing excitatory and inhibitory effects in thalamic neurons of the basal ganglia- and cerebellar-receiving regions of the motor thalamus. Our observations suggest a modulatory (instead of a “driver”) role of the corticothalamic system in the primate ventral motor thalamus.
机译:皮质丘脑投射在腹侧运动丘脑中的作用仍然知之甚少。因此,我们使用光遗传激活皮质恒河猴投射在觉醒的猕猴中,研究了运动丘脑的基底神经节和小脑接收区(分别为BGMT和CbMT)中神经元的电生理反应。将携带兴奋性视蛋白ChR2或C1V1的病毒载体注射到两只猴子的主要运动皮层和运动前皮层中后,我们使用光斑对皮层或其丘脑末端的表达视蛋白的神经元进行光激活,同时记录了皮层中神经元的细胞外活性。刺激部位附近。不出所料,大脑皮层视蛋白的光激活引起皮质神经元放电的强劲,短时延。相反,光刺激皮质丘脑末端诱导丘脑神经元的小幅度,长潜伏期增加和/或减少活动。在验尸材料中,发现视蛋白在皮层神经元的细胞体和树突中以及沿其皮层丘脑投射中表达。在电子显微镜下,视蛋白标记仅限于未髓鞘化的前末端轴突和小末端,这些末端与投射神经元的树突或BGMT和CbMT中的GABA能性中间神经元以及网状丘脑核中的神经元形成不对称突触。转染终末的形态学特征,以及丘脑神经元对其激活的长时间潜伏期和复杂的生理反应,提示皮质丘脑传入神经对灵长类腹侧运动丘脑的调节作用。>重要意义声明首先通过清醒猴子中含有视蛋白的皮质丘脑末端的光激活,分析皮质输入对灵长类腹侧运动丘脑神经元活性的生理影响。我们发现,与丘脑皮质神经元远端树突和GABA能中神经元接触的皮质丘脑末端的选择性光激活引发了运动丘脑基底神经节和小脑接受区丘脑神经元中缓慢发展的兴奋和抑制作用的复杂模式。我们的观察结果表明,在灵长类腹侧运动丘脑中,皮层丘脑系统具有调节作用(而不是“驱动力”)。

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