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Imaging localized fast optical signals of neural activation with optical coherence tomography in awake mice

机译:唤醒小鼠中的光学相干断层扫描的神经激活局部快速光学信号

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We report optical coherence tomography (OCT) imaging of localized fast optical signals (FOS) arising from whisker stimulation in awake mice. The activated voxels were identified by fitting the OCT intensity signal time course with a response function over a time scale of a few hundred milliseconds after the whisker stimulation. The significantly activated voxels were shown to be localized to the expected brain region for whisker stimulation. The ability to detect functional stimulation-evoked, depth resolved FOS with intrinsic contrast from the cortex provides a new tool for neural activity studies.
机译:我们报告了从清醒小鼠中仔细刺激引起的局部快速光学信号(FOS)的光学相干断层扫描(OCT)成像。 通过在晶须刺激后几百毫秒的时间等级将OCT强度信号时间路线拟合了OCT强度信号时间路线来识别活化的体素。 显示出显着活化的体素被局部定位于预期的脑区,用于晶须刺激。 检测功能刺激诱发的能力,具有从皮质的内在对比度的具有内在对比的深度分辨的FOS为神经活动研究提供了一种新的工具。

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