Stereoscopic three-dimensional visualization applied to multimodal brain images: clinical applications and a functional connectivity atlas.

Stereoscopic three-dimensional visualization applied to multimodal brain images: clinical applications and a functional connectivity atlas.
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DOI:
10.3389/fnins.2014.00328
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发表时间:
2014
影响因子:
4.3
通讯作者:
Milham MP
Milham MP
中科院分区:
医学2区
文献类型:
--
作者:
Rojas GM;Gálvez M;Vega Potler N;Craddock RC;Margulies DS;Castellanos FX;Milham MP

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有效的可视化是探索和理解脑成像数据的核心。虽然MRI数据是在三维空间中获取的,但是用于使这样的数据可视化的方法很少利用三维立体技术。我们在这里提出的临床数据的立体可视化的结果,以及全脑功能连接的图谱。与传统的3D渲染技术相比,我们展示了立体可视化的实用性,以提供直观的描述的确切位置和各种大脑地标,结构和病变的相对大小。在静息状态功能磁共振成像的情况下,立体3D可视化有助于理解复杂的大规模功能连接模式的解剖位置。总体而言,立体可视化提高了图像内容的直观视觉理解,并为传统MRI数据的可视化以及功能连接模式带来了更多的维度。
Effective visualization is central to the exploration and comprehension of brain imaging data. While MRI data are acquired in three-dimensional space, the methods for visualizing such data have rarely taken advantage of three-dimensional stereoscopic technologies. We present here results of stereoscopic visualization of clinical data, as well as an atlas of whole-brain functional connectivity. In comparison with traditional 3D rendering techniques, we demonstrate the utility of stereoscopic visualizations to provide an intuitive description of the exact location and the relative sizes of various brain landmarks, structures and lesions. In the case of resting state fMRI, stereoscopic 3D visualization facilitated comprehension of the anatomical position of complex large-scale functional connectivity patterns. Overall, stereoscopic visualization improves the intuitive visual comprehension of image contents, and brings increased dimensionality to visualization of traditional MRI data, as well as patterns of functional connectivity.
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