Neurovascular coupling dysfunction in high myopia patients: evidence from a multi-modal magnetic resonance imaging analysis

脑血流 额中回 医学 功能磁共振成像 舌回 额下回 额上回 神经血管束 磁共振成像 屈光度 心脏病学 内科学 神经科学 眼科 解剖 心理学 视力 放射科
作者
Xiaopan Zhang,Liang Liu,Fan Yang,Zijun Liu,Xuemin Jin,Shaoqiang Han,Yong Zhang,Jingliang Cheng,Baohong Wen
出处
期刊:Journal of Neuroradiology [Elsevier]
标识
DOI:10.1016/j.neurad.2023.09.005
摘要

To investigate neurovascular coupling dysfunction in high myopia (HM) patients. A total of 37 HM patients and 36 healthy controls were included in this study. Degree centrality (DC), regional homogeneity (ReHo), amplitude of low-frequency fluctuations (ALFF), and fractional ALFF (fALFF) maps were employed to represent neuronal activity. Cerebral blood perfusion was characterized by cerebral blood flow (CBF). The correlation coefficient was calculated to reflect the relationship between neuronal activity and cerebral blood perfusion. Pearson partial correlation analysis was utilized to evaluate the association between HM dysfunction and clinical indicators. HM patients exhibited significant alterations in neurovascular coupling across 37 brain regions compared to healthy controls. The brain regions with marked changes varied among the four neurovascular coupling patterns, including the middle frontal gyrus, superior occipital gyrus, middle occipital gyrus, and fusiform gyrus. Additionally, the superior frontal gyrus orbital part, medial superior frontal gyrus, inferior occipital gyrus, and dorsolateral superior frontal gyrus displayed significant changes in three coupling patterns. In HM patients, the ReHo-CBF changes in the inferior frontal gyrus orbital part were positively correlated with best-corrected visual acuity (BCVA) and refractive diopter changes. Similarly, the ALFF-CBF changes in the inferior frontal gyrus orbital part showed a positive correlation with refractive diopter changes. ReHo-CBF and ALFF-CBF alterations in the paracentral lobule were positively correlated with BCVA and refractive diopter changes. Our findings underscore the abnormal alterations in neurovascular coupling across multiple brain regions in HM patients. These results suggest that neurovascular dysfunction in HM patients may be associated with an aberrant visual regulation mechanism.

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