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首页> 外文期刊>Nature Communications >TeraVR empowers precise reconstruction of complete 3-D neuronal morphology in the whole brain
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TeraVR empowers precise reconstruction of complete 3-D neuronal morphology in the whole brain

机译:Teravr Empowers在整个大脑中精确地重建完整的3-D神经元形态

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Neuron morphology is recognized as a key determinant of cell type, yet the quantitative profiling of a mammalian neuron's complete three-dimensional (3-D) morphology remains arduous when the neuron has complex arborization and long projection. Whole-brain reconstruction of neuron morphology is even more challenging as it involves processing tens of teravoxels of imaging data. Validating such reconstructions is extremely laborious. We develop TeraVR, an open-source virtual reality annotation system, to address these challenges. TeraVR integrates immersive and collaborative 3-D visualization, interaction, and hierarchical streaming of teravoxel-scale images. Using TeraVR, we have produced precise 3-D full morphology of long-projecting neurons in whole mouse brains and developed a collaborative workflow for highly accurate neuronal reconstruction.
机译:神经元形态被认为是细胞类型的关键决定因素,但当神经元具有复杂的树脂和长投射时,哺乳动物神经元完整三维(3-D)形态的定量谱仍然是艰巨的。神经元形态的全脑重建甚至更具挑战性,因为它涉及处理成像数据的数十次特拉索曲。验证这种重建是非常费力的。我们开发Teravr,一个开源虚拟现实注释系统,以解决这些挑战。 Teravr集成了TeraVoxel级图像的沉浸式和协作的3-D可视化,交互和分层流。使用TERAVR,我们在整个小鼠大脑中产生了精确的3-D全形貌,并开发了一种用于高精度神经元重建的协作工作流程。

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