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circuit-breakers:optical technologies for probing nural signals and systems

机译:断路器:探测神经信号和系统的光学技术

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Abstract | Neuropsychiatric disorders, which arise from a combination of genetic, epigenetic and environmental influences, epitomize the challenges faced in understanding the mammalian brain. Elucidation and treatment of these diseases will benefit from understanding how specific brain cell types are interconnected and signal in neural circuits. Newly developed neuroengineering tools based on two microbial opsins, channelrhodopsin-2 (ChR2) and halorhodopsin (NpHR), enable the investigation of neural circuit function with cell-type-specific, temporally accurate and reversible neuromodulation. These tools could lead to the development of precise neuromodulation technologies for animal models of disease and clinical neuropsychiatry.
机译:摘要|遗传,表观遗传学和环境因素共同作用引起的神经精神疾病,是理解哺乳动物大脑所面临挑战的缩影。这些疾病的阐明和治疗将受益于了解特定的脑细胞类型如何相互连接以及神经回路中的信号。基于两种微生物视蛋白,即通道视紫红质2(ChR2)和卤代视紫红质(NpHR)的最新开发的神经工程工具,能够对具有特定细胞类型,时间精确且可逆的神经调节的神经回路功能进行研究。这些工具可以导致针对疾病和临床神经精神病学动物模型的精确神经调节技术的发展。

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