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CerebraLux:一种用于光遗传学刺激的低成本、开源无线探头。

CerebraLux: a low-cost, open-source, wireless probe for optogenetic stimulation.

作者信息

Dagnew Robel, Lin Yin-Ying, Agatep Jerikko, Cheng Michael, Jann Andrew, Quach Viola, Monroe Michelle, Singh Ganeev, Minasyan Ani, Hakimian Joshua, Kee Theodore, Cushman Jesse, Walwyn Wendy

机构信息

University of California, Department of Bioengineering, Los Angeles, California, United States.

University of California, David Geffen School of Medicine, Department of Psychiatry and Biobehavioral Sciences, Los Angeles, California, United States.

出版信息

Neurophotonics. 2017 Oct;4(4):045001. doi: 10.1117/1.NPh.4.4.045001. Epub 2017 Oct 11.

Abstract

The use of optogenetics to activate or inhibit neurons is an important toolbox for neuroscientists. Several optogenetic devices are in use. These range from wired systems where the optoprobe is physically connected to the light source by a tether, to wireless systems that are remotely controlled. There are advantages and disadvantages of both; the wired systems are lightweight but limit movement due to the tether, and wireless systems allow unrestricted movement but may be heavier than wired systems. Both systems can be expensive to install and use. We have developed a low cost, wireless optogenetic probe, CerebraLux, built from off-the-shelf components. CerebraLux consists of two separable units; an optical component consisting of the baseplate holding the fiber-optic in place and an electronic component consisting of a light-emitting diode, custom-printed circuit board, an infrared receiver, microcontroller, and a rechargeable, lightweight lithium polymer battery. The optical component (0.5 g) is mounted on the head permanently, whereas the electronic component (2.3 g) is removable and is applied for each experiment. We describe the device, provide all designs and specifications, the methods to manufacture and use the device , and demonstrate feasibility in a mouse behavioral paradigm.

摘要

利用光遗传学激活或抑制神经元是神经科学家的一个重要工具。目前有几种光遗传学设备正在使用。这些设备从有线系统到无线系统都有,在有线系统中,光探针通过系绳与光源物理连接,而无线系统则是远程控制的。两者都有优缺点;有线系统重量轻,但由于系绳限制了移动,而无线系统允许无限制移动,但可能比有线系统更重。这两种系统的安装和使用成本都可能很高。我们开发了一种低成本的无线光遗传学探针CerebraLux,它由现成的组件制成。CerebraLux由两个可分离的单元组成;一个光学组件,由固定光纤的底板组成,另一个电子组件,由发光二极管、定制印刷电路板、红外接收器、微控制器和可充电的轻质锂聚合物电池组成。光学组件(0.5克)永久安装在头部,而电子组件(2.3克)是可拆卸的,每次实验时使用。我们描述了该设备,提供了所有设计和规格、制造和使用该设备的方法,并在小鼠行为范式中证明了其可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c14/5635269/0478fd577a93/NPh-004-045001-g001.jpg

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