4.4 Article

Dynamic alterations of functional connectivity and amplitude of low-frequency fluctuations in patients with unilateral sudden sensorineural hearing loss

期刊

NEUROSCIENCE LETTERS
卷 772, 期 -, 页码 -

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.neulet.2022.136470

关键词

Sudden sensorineural hearing loss; Functional magnetic resonance imaging; Dynamic functional connectivity; Dynamic amplitude of low-frequency fluctua-tion

资金

  1. Hovering Program of Fourth Military Medical University
  2. Talent Foundation of Tangdu Hospital [2018BJ003]

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The study revealed abnormal dynamic brain functional connectivity and dynamic low-frequency fluctuation in SSNHL patients, especially within the visual cortices. This suggests that SSNHL patients may undergo cross-modal plasticity and visual compensation, which may be closely related to the pathophysiology of SSNHL.
Unilateral sudden sensorineural hearing loss (SSNHL) adversely affects the quality of life, leading to increased risk of depression and cognitive decline. Our previous studies have mainly focused on the static brain function abnormalities in SSNHL patients. However, the dynamic features of brain activity in SSNHL patients are not elucidated. To explore the dynamic brain functional alterations in SSNHL patients, age- and sex- matched SSNHL patients (n = 38) and healthy controls (HC, n = 44) were enrolled. The dynamic functional connectivity (dFC) and dynamic amplitude of low-frequency fluctuation (dALFF) methods were used to compare the temporal features and dynamic neural activity between the two groups. In dFC analyses, the multiple functional connectivities (FCs) were clustered into 2 different states; a greater proportion of FCs in SSNHL patients showed sparse state compared with HC. In dALFF analyses, SSNHL individuals exhibited decreased dALFF variability in bilateral inferior occipital gyrus, middle occipital gyrus, calcarine, right lingual gyrus, and right fusiform gyrus. dALFF variability showed a negative correlation with activated partial thromboplatin time. The dynamic characteristics of SSNHL patients were different from static functional connectivity and static amplitude of lowfrequency fluctuation, especially within the visual cortices. These findings suggest that SSNHL patients experience cross-modal plasticity and visual compensation, which may be closely related to the pathophysiology of SSNHL.

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