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皮质组织中群体神经元活动的电压敏感染料成像。

Voltage-sensitive dye imaging of population neuronal activity in cortical tissue.

作者信息

Jin Wenjun, Zhang Ren-Ji, Wu Jian-young

机构信息

Department of Physiology and Biophysics, Georgetown University Medical Center, The Research Building, WP-26, 3900 Reservoir Road NW, Washington, DC 20007, USA.

出版信息

J Neurosci Methods. 2002 Mar 30;115(1):13-27. doi: 10.1016/s0165-0270(01)00511-8.

DOI:10.1016/s0165-0270(01)00511-8
PMID:11897360
Abstract

Voltage-sensitive dyes (VSDs) and optical imaging are useful for studying spatiotemporal patterns of population neuronal activity in cortical tissue. Using a photodiode array and absorption dyes we were able to detect neuronal activity in single trials before it could be detected by local field potential (LFP) recordings. Simultaneous electrical and optical recordings from the same tissue also showed that VSD and LFP signals have different waveforms during different activities, suggesting that they are sensitive to different aspects of the synchronization across the population. Noise, dye bleaching, phototoxicity and optical filter selection are important to the quality of the VSD signal and are discussed in this report. With optimized signal-to-noise ratio (S/N) and total recording time, we can optically monitor approximately 500 locations in an area of 1 mm(2) of cortical tissue with a sensitivity comparable to that of LFP electrodes. The total recording time and S/N of fluorescence and absorption dyes are also compared. At S/N of 8-10, absorption dye NK3630 allows a total recording time of 15-30 min, which can be divided into hundreds of 4-8 s recording trials over several hours, long enough for many kinds of experiments. In conclusion, the VSD method provides a reliable way for examining neuronal activity and pharmacological properties of synapses in brain slices.

摘要

电压敏感染料(VSDs)和光学成像技术对于研究皮质组织中群体神经元活动的时空模式很有用。使用光电二极管阵列和吸收染料,我们能够在局部场电位(LFP)记录检测到之前,在单次试验中检测到神经元活动。来自同一组织的同步电记录和光学记录还表明,在不同活动期间,VSD和LFP信号具有不同的波形,这表明它们对群体同步的不同方面敏感。噪声、染料漂白、光毒性和光学滤波器选择对VSD信号的质量很重要,本报告将对此进行讨论。通过优化信噪比(S/N)和总记录时间,我们可以以与LFP电极相当的灵敏度,光学监测1平方毫米皮质组织区域内约500个位置。还比较了荧光染料和吸收染料的总记录时间和S/N。在S/N为8-10时,吸收染料NK3630允许的总记录时间为15-30分钟,可在数小时内分为数百次4-8秒的记录试验,足够进行多种实验。总之,VSD方法为检查脑片中突触的神经元活动和药理学特性提供了一种可靠的方法。

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