Fernandez-Ruiz Antonio, Oliva Azahara, Chang Hongyu
Department of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853, USA.
Department of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853, USA.
Trends Neurosci. 2022 Nov;45(11):854-864. doi: 10.1016/j.tins.2022.09.002. Epub 2022 Sep 30.
To understand the neural mechanisms of behavior, it is necessary to both monitor and perturb the activity of ensembles of neurons with high specificity. While neural ensemble recordings have been available for decades, progress in high-resolution manipulation techniques has lagged behind. Optogenetics has enabled the manipulation of genetically defined cell types in behaving animals, and recent developments, including multipoint nanofabricated light sources, provide spatiotemporal resolution on a par with that of physiological recordings. Here we review current advances in optogenetic methods for cellular-resolution stimulation and intervention, as well as their integration with real-time neural recordings for closed-loop experimentation. We discuss how these approaches open the door to new kinds of experiments aimed at dissecting the role of specific neural patterns and discrete cellular populations in orchestrating the activity of brain circuits that support behavior and cognition.
为了理解行为的神经机制,有必要以高特异性监测和扰动神经元集群的活动。虽然神经集群记录已经存在了几十年,但高分辨率操纵技术的进展却滞后了。光遗传学能够在行为动物中操纵基因定义的细胞类型,最近的发展,包括多点纳米制造光源,提供了与生理记录相当的时空分辨率。在这里,我们回顾了用于细胞分辨率刺激和干预的光遗传学方法的当前进展,以及它们与实时神经记录相结合用于闭环实验的情况。我们讨论了这些方法如何为新型实验打开大门,这些实验旨在剖析特定神经模式和离散细胞群体在协调支持行为和认知的脑回路活动中的作用。