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采用多体素模式分析解码感知疼痛的空间位置到针灸针。

Decoding spatial location of perceived pain to acupuncture needle using multivoxel pattern analysis.

机构信息

Acupuncture and Meridian Science Research Center, College of Korean Medicine, Kyung Hee University, Seoul, Republic of Korea.

Department of Anatomy and Acupoint, College of Korean Medicine, Gachon University, Seongnam, Republic of Korea.

出版信息

Mol Pain. 2019 Jan-Dec;15:1744806919877060. doi: 10.1177/1744806919877060.

Abstract

The present study applied multivoxel pattern analysis to decode spatial discrimination in pain perception to acupuncture needle from brain functional magnetic resonance image. Fourteen participants were stimulated by acupuncture needles at two adjacent body parts on their left forearm (PC6 vs. HT7). We trained support vector machines on the spatial information from the whole-brain functional magnetic resonance imaging data and projected the support vector machine weight to the brain image space to represent the effect of each voxel on the classifier output. Using region-of-interest masks in individual brains, we trained and tested a linear support vector machine classifier on the accuracy of spatial discrimination in trial-wise functional magnetic resonance imaging data. A classical univariate general linear model analysis testing for differences between the two different locations did not reveal any significant differences. Multivoxel pattern analysis revealed that the brain regions for the prediction of sensory discrimination in pain perceptions to two different points were in the primary somatosensory cortex, primary motor cortex, and supramarginal gyrus, anterior and posterior insula, anterior and posterior cingulate cortex, ventromedial prefrontal cortex, and inferior parietal lobule. Our findings suggest that spatial localizations of pain perceptions to acupuncture needle can be predicted by the neural response patterns in the somatosensory areas and the frontoparietal areas.

摘要

本研究应用多体素模式分析来解码针刺针在大脑功能磁共振成像中的疼痛感知的空间辨别。14 名参与者在前臂左侧的两个相邻身体部位(PC6 与 HT7)接受针刺刺激。我们在全脑功能磁共振成像数据的空间信息上训练支持向量机,并将支持向量机权重投影到大脑图像空间,以表示每个体素对分类器输出的影响。使用个体大脑中的感兴趣区域掩模,我们在试验功能磁共振成像数据的空间辨别准确性上训练和测试线性支持向量机分类器。用于测试两个不同位置之间差异的经典单变量一般线性模型分析并未发现任何显着差异。多体素模式分析表明,用于预测两点之间不同疼痛感知的感觉辨别的大脑区域位于初级体感皮层、初级运动皮层、缘上回、前岛叶和后岛叶、前扣带皮层和后扣带皮层、腹内侧前额叶皮层和下顶叶。我们的研究结果表明,针刺针的疼痛感知的空间定位可以通过体感区域和额顶区域的神经反应模式来预测。

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