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MRI Based Brain-Specific 3D-Printed Model Aligned to Stereotactic Space for Registering Histology to MRI

机译:基于MRI基于大脑特定的3D印刷模型与立体定向空间对齐,用于将组织学注册到MRI

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Studies that seek to predict the brain microstructure based on MRI require precise alignment of processed brain histology slices to the corresponding 3D MRI data. However, achieving such alignment is a challenging problem, due to tissue distortions and the different contrasts seen in MRI and the processed tissue. Here we present a pipeline for aligning a histology volume to the MRI data of the tissue and to a stereotaxic brain atlas. To this end, we segment the volume of the brain from ex-vivo MRI data, align the MRI data obtained in the native space to an MRI stereotaxic template and create a 3D printed model (a mold or cradle) that precisely fits the brain. The pipeline then makes it possible to create grooves in the 3D model, for guiding blades for cutting slabs of tissue. Placing the brain in the brain-specific 3D printed model aligns the tissue to the MRI data by default. Aligning the MRI data to an MRI stereotaxic template makes it possible to section histology slices parallel to the standard stereotaxic axes of the atlas. This facilitates comparisons to other MRI contrasts and to images of processed tissue aligned to the standard space, while maintaining the high-resolution of the tissue images along the standard stereotaxic plane. Guiding the positioning of the grooves according to species-specific anatomical information from the co-registered atlas facilitates region-specific histology. The pipeline we introduce can be used to create brain-specific sectioning models for a variety of species, including humans, primates, and rodents. To demonstrate the generalizability of the pipeline across species, we show models generated for macaques and rats.
机译:寻求基于MRI的脑微结构的研究需要将加工脑组织学切片的精确对准对应于相应的3D MRI数据。然而,由于组织扭曲和MRI和加工组织中看到的不同对比度,实现这种对准是一个具有挑战性的问题。在这里,我们提出了一种用于将组织学体积与组织的MRI数据和定位脑图集的管道对准的管道。为此,我们将大脑的体积分段从前体内MRI数据分段,将在本地空间中获得的MRI数据对准MRI立体模板,并创建一个精确拟合大脑的3D印刷模型(模具或摇篮)。然后,管道可以在3D模型中产生凹槽,用于引导用于切割组织的板坯的刀片。将大脑放在大脑特定的3D印刷模型中默认将组织对齐至MRI数据。将MRI数据与MRI立体岩模板对齐使得可以与图表的标准立体轴轴平行的组织学切片截面。这有利于对与标准空间对齐的其他MRI对比度的比较和对与标准空间排列的加工组织的图像进行比较,同时保持沿标准立体岩平面的组织图像的高分辨率。根据来自共登记的地图集的物种特异性解剖信息引导凹槽的定位有助于区域特异性组织学。我们介绍的管道可用于为各种物种,包括人类,灵长类动物和啮齿动物产生大脑特定的分切模型。为了展示跨物种管道的普遍性,我们展示了为MAAQUES和RAT生成的模型。

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