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Serial optical coherence scanner for large-scale brain imaging at microscopic resolution

机译:串行光学相干扫描仪,可在微观分辨率下进行大规模脑成像

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摘要

We describe a serial optical coherence scanner (SOCS) for high resolution imaging of ex-vivo brain. SOCS integrates a multi-contrast optical coherence tomography and a vibratome slicer to establish comprehensive brain anatomy and fiber pathways in three-dimensional space. Rat brain images are demonstrated by utilizing intrinsic optical contrasts including back-scattering, birefringence and optic axis orientation, which are simultaneously generated from the same dataset. Volumetric images from serial scans are combined to realize large scale brain maps. Nerve fiber tracts are globally described in 3D by retardance, and delicately delineated by cross-polarization at the resolution of 15 x 15 x 5.5 mum. In-plane orientations of the tracts are quantified by optic axis orientation. SOCS offers a new solution for complete reconstructions of macroscopic tissues such as primate and human brains at microscopic resolution. The technique also opens up varieties of opportunities for connectome studies and systematic investigations on neurological diseases and brain disorders.
机译:我们描述了用于离体脑的高分辨率成像的串行光学相干扫描仪(SOCS)。 SOCS集成了多对比度光学相干断层扫描和振动切片机,可在三维空间中建立全面的大脑解剖结构和纤维通路。利用内在的光学对比(包括反向散射,双折射和光轴方向)展示了大鼠的大脑图像,这些对比是从同一数据集中同时生成的。来自串行扫描的体积图像被组合以实现大规模的脑图。神经纤维束在3D中通过延迟进行整体描述,并通过交叉极化以15 x 15 x 5.5 mum的分辨率进行精细描绘。束的面内取向通过光轴取向来量化。 SOCS提供了一种新的解决方案,可以以微观分辨率完整重建宏观组织,例如灵长类动物和人脑。该技术还为神经系统疾病和脑部疾病的连接组研究和系统研究提供了各种机会。

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