光遗传学
沟道视紫红质
去极化
生物物理学
电导
氯离子通道
化学
氯化物
刺激
感光度
材料科学
光电子学
神经科学
物理
生物
有机化学
凝聚态物理
作者
Jonas Wietek,J. Simon Wiegert,Nona Adeishvili,Franziska Schneider,Hiroshi Watanabe,Satoshi P. Tsunoda,Arend Vogt,Marcus Elstner,Thomas G. Oertner,Peter Hegemann
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2014-03-28
卷期号:344 (6182): 409-412
被引量:365
标识
DOI:10.1126/science.1249375
摘要
Optogenetic Insights Mapping functional neural circuits for many behaviors has been almost impossible, so Vogelstein et al. (p. 386 , published online 27 March; see the Perspective by O'Leary and Marder ) developed a broadly applicable optogenetic method for neuron-behavior mapping and used it to phenotype larval Drosophila and thus developed a reference atlas. As optogenetic experiments become routine in certain fields of neuroscience research, creating even more specialized tools is imperative (see the Perspective by Hayashi ). By engineering channelrhodopsin, Wietek et al. (p. 409 , published online 27 March) and Berndt et al. (p. 420 ) created two different light-gated anion channels to block action potential generation during synaptic stimulation or depolarizing current injections. These new tools not only improve understanding of channelrhodopsins but also provide a way to silence cells.
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