4.2 Article

Brain Functional Connectivity Changes in Patients with Acute Eye Pain: A Resting-State Functional Magnetic Resonance Imaging (fMRI) Study

期刊

MEDICAL SCIENCE MONITOR
卷 27, 期 -, 页码 -

出版社

INT SCIENTIFIC INFORMATION, INC
DOI: 10.12659/MSM.930588

关键词

Eye Pain; Functional Neuroimaging; Magnetic Resonance Imaging

资金

  1. National Natural Science Foundation of China [81660158, 81460092, 81400372]
  2. Natural Science Key Project of Jiangxi Province [20161ACB21017]
  3. Youth Science Foundation of Jiangxi Province [20151BAB215016, 20161BAB215198]
  4. Key Research Foundation of Jiangxi Province [20151BBG70223, 20181BBG70004]

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The study utilized fMRI and DC method to investigate the changes in potential brain function network activity in patients with acute eye pain, revealing abnormal patterns of intrinsic brain activity in different brain regions in these patients. Clinical manifestations were found to be correlated with DC values in specific brain regions.
Background: By using functional magnetic resonance imaging (fMRI), we aimed to study the changes in potential brain function network activity in patients with acute eye pain. Also, by using the voxel-wise degree centrality (DC) method, we aimed to explore the relationship between spontaneous brain activity and the clinical features of patients with acute eye pain. Material/Methods: A total of 15 patients with acute eye pain (5 women and 10 men; EP group) and 15 healthy controls (5 women and 10 men; HC group), were scanned by fMRI. The DC method was used to evaluate changes in spontaneous brain activity. Receiver operating characteristic (ROC) curves were analyzed, and Pearson correlation analysis was used to study the relationship between DC values and clinical manifestations in different regions of brain. Results: The area of the left limbic lobe showed a reduction in DC value in patients in the EP group. DC values were elevated in the left cerebellum posterior lobe, left inferior parietal lobule, left inferior temporal gyrus, left precuneus, and right cerebellum posterior lobe in the EP group. The visual analog scale value of the eyes in the EP group was negatively correlated with the left limbic lobe signal value and positively correlated with the left inferior parietal lobule signal value. Further, the scores of the hospital anxiety and depression scale and DC value of the left limbic lobe were negatively correlated. Conclusions: Compared with the HC group, patients with acute eye pain had abnormal patterns of intrinsic brain activity in different brain regions, which may help reveal the potential neural mechanisms involved in eye pain.

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