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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Maintaining ocular safety with light exposure, focusing on devices for optogenetic stimulation
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Maintaining ocular safety with light exposure, focusing on devices for optogenetic stimulation

机译:通过光照保持眼睛安全,重点是光遗传刺激设备

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摘要

Optogenetics methods are rapidly being developed as therapeutic tools for treating neurological diseases, in particular, retinal degenerative diseases. A critical component of the development is testing the safety of the light stimulation used to activate the optogenetic proteins. While the stimulation needs to be sufficient to produce neural responses in the targeted retinal cell class, it also needs to be below photochemical and photothermal limits known to cause ocular damage. The maximal permissible exposure is determined by a variety of factors, including wavelength, exposure duration, visual angle, pupil size, pulse width, pulse pattern, and repetition frequency. In this paper, we develop utilities to systematically and efficiently assess the contributions of these parameters in relation to the limits, following directly from the 2014 American National Standards Institute (ANSI). We also provide an array of stimulus protocols that fall within the bounds of both safety and effectiveness. Additional verification of safety is provided with a case study in rats using one of these protocols. (C) 2016 Elsevier Ltd. All rights reserved.
机译:光学遗传学方法正在迅速发展为用于治疗神经系统疾病,特别是视网膜变性疾病的治疗工具。开发的关键部分是测试用于激活光遗传蛋白的光刺激的安全性。尽管刺激必须足以在目标视网膜细胞类别中产生神经反应,但刺激也必须低于已知会引起眼损伤的光化学和光热极限。最大允许曝光量由多种因素决定,包括波长,曝光时间,视角,瞳孔大小,脉冲宽度,脉冲模式和重复频率。在本文中,我们直接根据2014年美国国家标准协会(ANSI),开发了实用程序来系统有效地评估这些参数相对于限值的贡献。我们还提供了一系列安全性和有效性范围内的刺激方案。使用这些方案之一的大鼠案例研究提供了额外的安全性验证。 (C)2016 Elsevier Ltd.保留所有权利。

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