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脑组织高光强光刺激的安全性和潜在疗效的实验评估。

Experimental assessment of the safety and potential efficacy of high irradiance photostimulation of brain tissues.

机构信息

Neurosurgery Department, Assistance Publique-Hôpitaux de Paris (APHP), Groupe Henri-Mondor Albert-Chenevier, PePsy department, Créteil, F-94000, France.

U955 INSERM IMRB eq.14 Université Paris 12 UPEC, Faculté de Médecine, F-94010 Créteil, France.

出版信息

Sci Rep. 2017 Mar 9;7:43997. doi: 10.1038/srep43997.

Abstract

Optogenetics is widely used in fundamental neuroscience. Its potential clinical translation for brain neuromodulation requires a careful assessment of the safety and efficacy of repeated, sustained optical stimulation of large volumes of brain tissues. This study was performed in rats and not in non-human primates for ethical reasons. We studied the spatial distribution of light, potential damage, and non-physiological effects in vivo, in anesthetized rat brains, on large brain volumes, following repeated high irradiance photo-stimulation. We generated 2D irradiance and temperature increase surface maps based on recordings taken during optical stimulation using irradiance and temporal parameters representative of common optogenetics experiments. Irradiances of 100 to 600 mW/mm with 5 ms pulses at 20, 40, and 60 Hz were applied during 90 s. In vivo electrophysiological recordings and post-mortem histological analyses showed that high power light stimulation had no obvious phototoxic effects and did not trigger non-physiological functional activation. This study demonstrates the ability to illuminate cortical layers to a depth of several millimeters using pulsed red light without detrimental thermal damages.

摘要

光遗传学在基础神经科学中得到了广泛的应用。为了实现对大脑神经调节的临床应用,需要对大体积脑组织的重复、持续光学刺激的安全性和有效性进行仔细评估。出于伦理原因,本研究在大鼠而非非人类灵长类动物中进行。我们研究了在麻醉大鼠大脑中,大体积脑组织中,在重复高光照度光刺激后,光的空间分布、潜在损伤和非生理效应。我们根据使用代表性的常见光遗传学实验的辐照度和时间参数进行的光学刺激期间的记录,生成了二维辐照度和温升表面图。在 90 秒内,应用了 100 至 600 mW/mm 的辐照度和 5 ms 脉冲,频率为 20、40 和 60 Hz。体内电生理记录和死后组织学分析表明,高功率光刺激没有明显的光毒性作用,也不会引发非生理功能激活。这项研究表明,使用脉冲红光可以照亮数毫米深的皮层层,而不会造成有害的热损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f3e/5343659/4078244970e4/srep43997-f1.jpg

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