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Processes for design construction and utilisation of arrays of light-emitting diodes and light-emitting diode-coupled optical fibres for multi-site brain light delivery

机译:设计构造和利用发光二极管和发光二极管耦合光纤阵列进行多站点脑光传输的过程

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摘要

Optogenetics enables light to be used to control the activity of genetically targeted cells in the living brain. Optical fibers can be used to deliver light to deep targets, and LEDs can be spatially arranged to enable patterned light delivery. In combination, arrays of LED-coupled optical fibers can enable patterned light delivery to deep targets in the brain. Here we describe the process flow for making LED arrays and LED-coupled optical fiber arrays, explaining key optical, electrical, thermal, and mechanical design principles to enable the manufacturing, assembly, and testing of such multi-site targetable optical devices. We also explore accessory strategies such as surgical automation approaches as well as innovations to enable low-noise concurrent electrophysiology.
机译:光遗传学使光可用于控制活脑中遗传靶向细胞的活性。光纤可用于将光传输到较深的目标,LED可以在空间上排列以实现图案化的光传输。结合起来,LED耦合光纤阵列可以实现将图案化的光传输到大脑深处的目标。在这里,我们描述了制造LED阵列和LED耦合光纤阵列的工艺流程,并解释了关键的光学,电气,热学和机械设计原理,以实现此类多站点可瞄准光学设备的制造,组装和测试。我们还将探索辅助策略,例如手术自动化方法以及可实现低噪声并发电生理的创新。

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