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A precise and minimally invasive approach to optogenetics in the awake primate

机译:精确的微创方法,用于清醒的灵长类动物的光遗传学

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Optogenetics has proven to be a powerful tool for understanding the function of specific cell types and circuits within the central nervous system and establishing a causal link between their activity and behavior. Its application in non-human primates has been slow to develop. One challenge has been the damage caused by transdural delivery of viruses and light to the brain. Here, we report optogenetic activation of neuronal responses in the alert and behaving monkey after replacement of the native dura with a transparent artificial dura. This approach enables the use of fine glass micropipettes to inject virus with minimal damage and transdural illumination, obviating the damage that would otherwise occur as a result of lowering optical fibers into the brain. It also permits visualization of the underlying cortical micro-vasculature, which has proven to be helpful in targeting electrodes and laser illumination to the virus location. This approach promises to greatly assist in the dissection of cortical circuits underlying visual perception and behavior.
机译:事实证明,光遗传学是了解中枢神经系统中特定细胞类型和电路功能并在其活动与行为之间建立因果关系的有力工具。它在非人类灵长类动物中的应用发展缓慢。挑战之一是病毒和光经硬脑膜向大脑的硬膜外传递所造成的损害。在这里,我们报道了用透明的人工硬脑膜替代天然硬脑膜后,警觉和行为正常的猴子神经元反应的光遗传激活。这种方法使得能够使用细小的玻璃微量移液器以最小的损害和硬膜照亮来注射病毒,从而避免了由于降低光纤进入大脑而造成的损害。它还允许可视化潜在的皮层微血管,这已被证明有助于将电极和激光照射对准病毒部位。这种方法有望极大地协助解剖视知觉和行为基础的皮层回路。

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