核磁共振
神经递质
光谱学
神经递质系统
核磁共振波谱
扣带回前部
磁共振成像
皮质(解剖学)
神经科学
功能磁共振成像
扣带皮质
脑功能磁共振波谱
心理学
医学
物理
认知
中枢神经系统
多巴胺
量子力学
放射科
作者
Min Zhao,Xiao Li,Fuyan Li,Xin Hu,Jing Wang,Yuxi Liu,Chuanchen Zhang,Jie Bai,Richard A.E. Edden,Fei Gao,Meixia Su,Fuxin Ren
标识
DOI:10.1093/cercor/bhae304
摘要
Abstract Cognitive impairment affects 29–67% of patients with neuromyelitis optica spectrum disorder. Previous studies have reported glutamate homeostasis disruptions in astrocytes, leading to imbalances in gamma-aminobutyric acid levels. However, the association between these neurotransmitter changes and cognitive deficits remains inadequately elucidated. Point RESolved Spectroscopy and Hadamard Encoding and Reconstruction of MEGA-Edited Spectroscopy techniques were utilized to evaluate gamma-aminobutyric acid, glutamate, glutathione levels, and excitation/inhibition balance in the anterior cingulate cortex, posterior cingulate cortex, and occipital cortex of 39 neuromyelitis optica spectrum disorder patients and 41 healthy controls. Cognitive function was assessed using neurocognitive scales. Results showed decreased gamma-aminobutyric acid levels alongside increased glutamate, glutathione, and excitation/inhibition ratio in the anterior cingulate cortex and posterior cingulate cortex of neuromyelitis optica spectrum disorder patients. Specifically, within the posterior cingulate cortex of neuromyelitis optica spectrum disorder patients, decreased gamma-aminobutyric acid levels and increased excitation/inhibition ratio correlated significantly with anxiety scores, whereas glutathione levels predicted diminished executive function. The results suggest that neuromyelitis optica spectrum disorder patients exhibit dysregulation in the GABAergic and glutamatergic systems in their brains, where the excitation/inhibition imbalance potentially acts as a neuronal metabolic factor contributing to emotional disorders. Additionally, glutathione levels in the posterior cingulate cortex region may serve as predictors of cognitive decline, highlighting the potential benefits of reducing oxidative stress to safeguard cognitive function in neuromyelitis optica spectrum disorder patients.
科研通智能强力驱动
Strongly Powered by AbleSci AI