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Imaging whole mouse brains with a dual resolution serial swept-source optical coherence tomography scanner

机译:用双分辨率串行扫描源光学相干断层扫描仪成像整个鼠标大脑

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High resolution imaging of whole rodent brains using serial OCT scanners is a promising method to investigate microstructural changes in tissue related to the evolution of neuropathologies. Although micron to sub-micron sampling resolution can be obtained by using high numerical aperture objectives and dynamic focusing, such an imaging system is not adapted to whole brain imaging. This is due to the large amount of data it generates and the significant computational resources required for reconstructing such volumes. To address this limitation, a dual resolution serial OCT scanner was developed. The optical setup consists in a swept-source OCT made of two sample and reference arms, each arm being coupled with different microscope objectives (3X/ 40X). Motorized flip mirrors were used to switch between each OCT arm, thus allowing low and high resolution acquisitions within the same sample. The low resolution OCT volumes acquired with the 3X arm were stitched together, providing a 3D map of the whole mouse brain. This brain can be registered to an OCT brain template to enable neurological structures localization. The high resolution volumes acquired with the 40X arm were also stitched together to create local high resolution 3D maps of the tissue microstructure. The 40X data can be acquired at any arbitrary location in the sample, thus limiting storage-heavy high resolution data to application restricted to specific regions of interest. By providing dual-resolution OCT data, this setup can be used to validate diffusion MRI with tissue microstructure derived metrics measured at any location in ex vivo brains.
机译:使用连续OCT扫描仪的全啮齿动物大脑的高分辨率成像是研究与神经病理学的演化相关的组织的微观结构变化的有希望的方法。尽管通过使用高数孔径目标和动态聚焦可以获得微米到亚微米采样分辨率,但是这种成像系统不适应整个脑成像。这是由于它生成的大量数据以及重建此类卷所需的显着计算资源。为了解决此限制,开发了一个双分辨率串行OCT扫描仪。光学设置包括在两个样品和参考臂制成的扫描源OCT中,每个臂与不同的显微镜物镜(3x / 40x)耦合。电动翻转镜用于在每个OCT臂之间切换,从而允许在同一样本内的低分辨率和高分辨率采集。用3x臂获得的低分辨率100卷被缝合在一起,提供整个小鼠脑的3D地图。该大脑可以注册到OCT脑模板,以使神经系统结构定位。用40X臂获取的高分辨率体积也缝合在一起,以创建组织微结构的局部高分辨率3D地图。可以在样本中的任何任意位置获取40X数据,从而将存储沉重的高分辨率数据限制为仅限于特定感兴趣区域的应用。通过提供双分辨率OCT数据,该设置可用于验证在exvivo大脑中的任何位置测量的组织微结构导出的度量的扩散MRI。

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