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V3D 能够实时可视化和定量分析大规模生物图像数据集。

V3D enables real-time 3D visualization and quantitative analysis of large-scale biological image data sets.

机构信息

Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia, USA.

出版信息

Nat Biotechnol. 2010 Apr;28(4):348-53. doi: 10.1038/nbt.1612. Epub 2010 Mar 14.

Abstract

The V3D system provides three-dimensional (3D) visualization of gigabyte-sized microscopy image stacks in real time on current laptops and desktops. V3D streamlines the online analysis, measurement and proofreading of complicated image patterns by combining ergonomic functions for selecting a location in an image directly in 3D space and for displaying biological measurements, such as from fluorescent probes, using the overlaid surface objects. V3D runs on all major computer platforms and can be enhanced by software plug-ins to address specific biological problems. To demonstrate this extensibility, we built a V3D-based application, V3D-Neuron, to reconstruct complex 3D neuronal structures from high-resolution brain images. V3D-Neuron can precisely digitize the morphology of a single neuron in a fruitfly brain in minutes, with about a 17-fold improvement in reliability and tenfold savings in time compared with other neuron reconstruction tools. Using V3D-Neuron, we demonstrate the feasibility of building a 3D digital atlas of neurite tracts in the fruitfly brain.

摘要

V3D 系统可实时对千兆字节级别的显微镜图像堆栈进行三维(3D)可视化,适用于当前的笔记本电脑和台式机。V3D 通过将在 3D 空间中直接选择图像位置的人体工程学功能与显示生物测量结果(例如荧光探针)的重叠表面对象相结合,简化了复杂图像模式的在线分析、测量和校对。V3D 可在所有主要计算机平台上运行,并可通过软件插件进行增强,以解决特定的生物学问题。为了展示这种可扩展性,我们构建了一个基于 V3D 的应用程序 V3D-Neuron,用于从高分辨率脑图像重建复杂的 3D 神经元结构。V3D-Neuron 可以在几分钟内精确地数字化果蝇大脑中单个神经元的形态,与其他神经元重建工具相比,可靠性提高了约 17 倍,时间节省了 10 倍。使用 V3D-Neuron,我们证明了在果蝇大脑中构建神经突轨迹 3D 数字图谱的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35db/2857929/2abde70c1261/nihms177792f1a.jpg

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