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提取通过展开式光学微纤维记录的个体神经活动。

Extracting individual neural activity recorded through splayed optical microfibers.

作者信息

Perkins L Nathan, Devor Anna, Gardner Timothy J, Boas David A

机构信息

Boston University, Department of Biomedical Engineering, Boston, United States.

University of California, Department of Radiology, San Diego, La Jolla, United States.

出版信息

Neurophotonics. 2018 Oct;5(4):045009. doi: 10.1117/1.NPh.5.4.045009. Epub 2018 Dec 31.

Abstract

Previously introduced bundles of hundreds or thousands of microfibers have the potential to extend optical access to deep brain regions, sampling fluorescence activity throughout a three-dimensional volume. Each fiber has a small diameter ( ) and follows a path of least resistance, splaying during insertion. By superimposing the fiber sensitivity profile for each fiber, we model the interface properties for a simulated neural population. Our modeling results suggest that for small ( ) bundles of fibers, each fiber will collect fluorescence from a small number of nonoverlapping neurons near the fiber apertures. As the number of fibers increases, the bundle delivers more uniform excitation power to the region, moving to a regime where fibers collect fluorescence from more neurons and there is greater overlap between neighboring fibers. Under these conditions, it becomes feasible to apply source separation to extract individual neural contributions. In addition, we demonstrate a source separation technique particularly suited to the interface. Our modeling helps establish performance expectations for this interface and provides a framework for estimating neural contributions under a range of conditions.

摘要

先前引入的由数百或数千根微纤维组成的束状物有潜力将光学通路延伸至深部脑区,在三维空间内对荧光活动进行采样。每根纤维直径较小( ),且遵循阻力最小的路径,在插入过程中会散开。通过叠加每根纤维的纤维灵敏度分布,我们对模拟神经群体的界面特性进行建模。我们的建模结果表明,对于小( )束纤维,每根纤维将从纤维孔径附近的少量非重叠神经元收集荧光。随着纤维数量的增加,束状物向该区域传递更均匀的激发功率,进入一种纤维从更多神经元收集荧光且相邻纤维之间重叠更大的状态。在这些条件下,应用源分离来提取单个神经贡献变得可行。此外,我们展示了一种特别适合该界面的源分离技术。我们的建模有助于建立对该界面性能的预期,并提供一个在一系列条件下估计神经贡献的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff0/6311456/7ceb9b754aff/NPh-005-045009-g001.jpg

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