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Dynamic Spatial Discrimination Maps of Discriminative Activation between Different Tasks Based on Support Vector Machines

机译:基于支持向量机的不同任务间判别激活的动态空间判别图

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As a set of supervised pattern recognition methods, support vector machines (SVMs) have been successfully applied to functional magnetic resonance imaging (fMRI) field, but few studies have focused on visualizing discriminative regions of whole brain between different cognitive tasks dynamically. This paper presents a SVM-based method for visualizing dynamically discriminative activation of whole-brain voxels between two kinds of tasks without any contrast. Our method provides a series of dynamic spatial discrimination maps (DSDMs), representing the temporal evolution of discriminative brain activation during a duty cycle and describing how the discriminating information changes over the duty cycle. The proposed method was applied to investigate discriminative brain functional activations of whole brain voxels dynamically based on a hand-motor task experiment. A set of DSDMs between left hand movement and right hand movement were reached. Our results demonstrated not only where but also when the discriminative activations of whole brain voxels occurred between left hand movement and right hand movement during one duty cycle.
机译:作为一组监督模式识别方法,支持向量机(SVM)已成功应用于功能磁共振成像(fMRI)领域,但很少有研究致力于动态可视化不同认知任务之间的全脑区分区域。本文提出了一种基于SVM的方法,用于可视化动态区分两种任务之间的全脑体素激活,而无需任何对比。我们的方法提供了一系列动态空间判别图(DSDM),它们表示了在工作周期内判别性大脑激活的时间演变,并描述了在工作周期内判别信息的变化。该方法被用于基于手运动任务实验动态研究全脑体素的判别性脑功能激活。达到了左手移动和右手移动之间的一组DSDM。我们的结果不仅表明在一个工作周期中左手运动与右手运动之间全脑体素的判别激活发生在何处,而且还进行了判别激活。

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