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Optogenetics: From neuronal Function to Mapping and Disease Biology by Krishnarao Appasani

机译:Optogenetics:来自Krishnarao Appasani的神经元功能到映射和疾病生物学

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Optogenetics came onto the scene with the same lightning bolt as its opsins. Decades of research on rhodopsins and photostimulation of neurons culminated in the ground-breaking and wondrous year of 2005, including the first report of behavioural control of an animal via genetically targeted photostimulation (Susana Lima and Gero Miesenb?ck; Cell, 121 (1): 141–52) and the first single-component optogenetic system for neural control, using channelrhodopsin-2 (ChR2; Ed Boyden and Karl Deisseroth, including Georg Nagel who developed the ChR2–eYFP construct; Nature Neuroscience, 8 (9): 1263–8). In Optogenetics: From Neuronal Function to Mapping and Disease Biology (2017), Krishnarao Appasani edits an encyclopaedic volume on the ins and outs of optogenetics. Nagel pens the foreword and reminds us that rhodopsins, ChR2 included, were not ‘invented for optogenetics’, and that their discovery ‘resulted from basic research on light-sensitive membrane proteins and on phototaxis on green algae’. As with many other scientific fields, optogenetics owes an immense debt of gratitude to transdisciplinary basic research. More than 10 years on, Appasani’s collection does a good job of reviewing the state of the art of the field, from the biology of opsins and their use in different model organisms to the applications of optogenetics in neuropsychiatric, memory and vision research. Technical details aside, one essential message of this volume is clear – that optogenetics will keep on shining for many years to come.
机译:Optogenetics以与其Opsins相同的闪电螺栓进入场景。数十年的roodopsins和2005年令人息息日的神经元的光刺激研究,包括通过遗传靶向光刺激(Susana Lima和Gero MieseNb的动物对动物行为控制的第一次报告(Susana Lima和Gero Miesenb) :141-52)和第一个用于神经控制的单组分致敏系统,使用Channrhodopsin-2(Chr2; Ed Boyden和Karl Deisseroth,包括Georg Nagel,他们开发了CHR2-EYFP构建体;自然神经科学,8(9):1263 -8)。在光源中:从神经元功能到映射和疾病生物学(2017),Krishnarao Appasani编辑了对Optogsetics的INS和OUTS的百科全书。 Nagel Pens Pens Pens前言并提醒我们,包括洛越司,CHR2没有“发明的Optimetics”,他们的发现是由光敏膜蛋白的基本研究和绿藻上的光炎。与许多其他科学领域一样,Optogenetics对跨学科基础研究感谢巨大的债务。超过10年,阿帕斯坦的收藏们备受审查该领域的艺术状态,从Opsins的生物学以及它们在不同模型生物中的应用到神经精神,记忆和视觉研究中的视神经学中的应用。技术详情抛开,这一体积的一个基本信息很清楚 - 即可持续多年来一直闪耀。

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