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  1.  9
    Abnormal Functional Connectivity Between Cerebral Hemispheres in Patients With High Myopia: A Resting FMRI Study Based on Voxel-Mirrored Homotopic Connectivity.Yi Cheng, Xiao-Lin Chen, Ling Shi, Si-Yu Li, Hui Huang, Pei-Pei Zhong & Xiao-Rong Wu - 2022 - Frontiers in Human Neuroscience 16.
    PurposeTo study the changes in functional connections between the left and right hemispheres of patients with high myopia and healthy controls by resting functional magnetic resonance imaging based on voxel-mirrored homotopic connectivity. To study the changes in resting-state functional connectivity between the left and right hemispheres of patients with HM and healthy controls at rest by using resting functional magnetic resonance imaging based on voxel-mirror homotopy connectivity.Patients and MethodsA total of 89 patients with HM and 59 HCs were collected and (...)
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  2.  14
    Abnormal Large-Scale Neuronal Network in High Myopia.Yu Ji, Ling Shi, Qi Cheng, Wen-wen Fu, Pei-pei Zhong, Shui-qin Huang, Xiao-lin Chen & Xiao-Rong Wu - 2022 - Frontiers in Human Neuroscience 16.
    AimResting state functional magnetic resonance imaging was used to analyze changes in functional connectivity within various brain networks and functional network connectivity among various brain regions in patients with high myopia.Methodsrs-fMRI was used to scan 82 patients with HM and 59 healthy control volunteers matched for age, sex, and education level. Fourteen resting state networks were extracted, of which 11 were positive. Then, the FCs and FNCs of RSNs in HM patients were examined by independent component analysis.ResultsCompared with the HC (...)
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  3.  10
    Exploration of abnormal dynamic spontaneous brain activity in patients with high myopia via dynamic regional homogeneity analysis.Yu Ji, Qi Cheng, Wen-wen Fu, Pei-pei Zhong, Shui-qin Huang, Xiao-lin Chen & Xiao-Rong Wu - 2022 - Frontiers in Human Neuroscience 16.
    AimPatients with high myopia reportedly exhibit changes in functional brain activity, but the mechanism underlying such changes is unclear. This study was conducted to observe differences in dynamic spontaneous brain activity between patients with HM and healthy controls via dynamic regional homogeneity analysis.MethodsResting-state functional magnetic resonance imaging scans were performed on 82 patients with HM and 59 HCs who were closely matched for age, sex, and weight. The dReHo approach was used to assess local dynamic activity in the human brain. (...)
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