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    The diagnosis of functional dyspepsia (FD) presently relies on the self-reported symptoms. This study aimed to determine the potential of functional brain network features as biomarkers for the identification of FD patients. Firstly, the functional brain Magnetic Resonance Imaging data were collected from 100 FD patients and 100 healthy subjects, and the functional brain network features were extracted by the independent component analysis. Then, a support vector machine classifier was established based on these functional brain network features to discriminate FD patients from healthy subjects. Features that contributed substantially to the classification were finally identified as the classifying features. The results demonstrated that the classifier performed pretty well in discriminating FD patients. Namely, the accuracy of classification was 0.84 ± 0.03 in cross-validation set and 0.80 ± 0.07 in independent test set, respectively. A total of 15 connections between the subcortical nucleus (the thalamus and caudate) and sensorimotor cortex, parahippocampus, orbitofrontal cortex were finally determined as the classifying features. Furthermore, the results of cross-brain atlas validation showed that these classifying features were quite robust in the identification of FD patients. In summary, the current findings suggested the potential of using machine learning method and functional brain network biomarkers to identify FD patients. © The Author(s) 2021. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

    Citation

    Tao Yin, Ruirui Sun, Zhaoxuan He, Yuan Chen, Shuai Yin, Xiaoyan Liu, Jin Lu, Peihong Ma, Tingting Zhang, Liuyang Huang, Yuzhu Qu, Xueling Suo, Du Lei, Qiyong Gong, Fanrong Liang, Shenghong Li, Fang Zeng. Subcortical-cortical functional connectivity as a potential biomarker for identifying patients with functional dyspepsia. Cerebral cortex (New York, N.Y. : 1991). 2022 Jul 21;32(15):3347-3358

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    PMID: 34891153

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