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Microscale Inorganic LED Based Wireless Neural Systems for Chronic in vivo Optogenetics

机译:基于微型无机LED的慢性体内光遗传学无线神经系统

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摘要

Billions of neurons in the brain coordinate together to control trillions of highly convoluted synaptic pathways for neural signal processing. Optogenetics is an emerging technique that can dissect such complex neural circuitry with high spatiotemporal precision using light. However, conventional approaches relying on rigid and tethered optical probes cause significant tissue damage as well as disturbance with natural behavior of animals, thus preventing chronic in vivo optogenetics. A microscale inorganic LED (μ-ILED) is an enabling optical component that can solve these problems by facilitating direct discrete spatial targeting of neural tissue, integration with soft, ultrathin probes as well as low power wireless operation. Here we review recent state-of-the art μ-ILED integrated soft wireless optogenetic tools suitable for use in freely moving animals and discuss opportunities for future developments.
机译:大脑中的数十亿个神经元相互协调,以控制用于神经信号处理的数万亿个高度复杂的突触通路。光遗传学是一种新兴技术,可以使用光以高时空精度剖析这种复杂的神经回路。但是,依赖于刚性和系留光学探针的常规方法会导致严重的组织损伤以及对动物自然行为的干扰,从而阻止了慢性体内光遗传学。微型无机LED(μ-ILED)是一种使能的光学组件,可通过促进神经组织的直接离散空间定位,与软超薄探针的集成以及低功耗无线操作来解决这些问题。在这里,我们回顾了适用于自由移动的动物的最新技术最新的μ-ILED集成式软无线光遗传学工具,并讨论了未来发展的机会。

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