首页> 外文会议>International Conference on Information Processing in Medical Imaging(IPMI 2007); 20070702-06; Kerkrade(NL) >Imaging Brain Activation Streams from Optical Flow Computation on 2-Riemannian Manifolds
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Imaging Brain Activation Streams from Optical Flow Computation on 2-Riemannian Manifolds

机译:从2-Riemannian流形上的光流计算成像大脑激活流

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We report on mathematical methods for the exploration of spatiotemporal dynamics of Magneto- and Electro-Encephalography (MEG / EEG) surface data and/or of the corresponding brain activity at the cortical level, with high temporal resolution. In this regard, we describe how the framework and numerical computation of the optical flow — a classical tool for motion analysis in computer vision — can be extended to non-flat 2-dimensional surfaces such as the scalp and the cortical mantle. We prove the concept and mathematical well-posedness of such an extension through regularizing constraints on the estimated velocity field, and discuss the quantitative evaluation of the optical flow. The method is illustrated by simulations and analysis of brain image sequences from a ball-catching paradigm.
机译:我们报告数学方法的探索时空动力学的磁和脑电图(MEG / EEG)表面数据和/或相应的大脑活动的皮质水平,具有高时间分辨率。在这方面,我们描述了如何将光流的框架和数值计算(一种用于计算机视觉中的运动分析的经典工具)扩展到非平坦的二维表面,例如头皮和皮质上皮。通过对估计的速度场进行正则化约束,我们证明了这种扩展的概念和数学适定性,并讨论了光流的定量评估。通过对捕捉球范式的大脑图像序列的仿真和分析来说明该方法。

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