高血压的功能性MRI——对脑连通性、区域活动和认知障碍的系统回顾

Sathya Sabina Muthu , Suresh Sukumar , Rajagopal Kadavigere , Shivashankar K.N. , K. Vaishali , Ramesh Babu M.G. , Hari Prakash Palaniswamy , Abhimanyu Pradhan , Winniecia Dkhar , Nitika C. Panakkal , Sneha Ravichandran , Dilip Shettigar , Poovitha Shruthi Paramashiva
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引用次数: 0

摘要

高血压越来越被认为是认知能力下降和大脑结构和功能改变的关键因素。功能磁共振成像(fMRI)提供了一种非侵入性手段,在认知障碍的临床症状出现之前检测神经网络的早期中断。本系统综述探讨了功能磁共振成像在高血压患者脑功能变化和认知表现评估中的应用。通过对电子数据库的全面搜索,确定了8项相关研究,其中大多数采用了静息状态功能磁共振成像技术。研究结果主要表明,高血压与关键神经网络的连通性改变有关,包括默认模式网络、额顶叶网络和显著性网络。其他观察结果包括区域均匀性降低和低频波动的变化。这些神经变化与记忆力、执行功能和注意力下降有关。虽然这些发现支持fMRI作为高血压相关认知障碍的早期生物标志物的潜力,但由于研究数量少和地理集中,证据仍然有限。尽管如此,功能磁共振成像仍有望在临床应用中识别有风险的个体并指导及时干预。需要更多具有更广泛地理代表性的纵向研究来证实这些见解,并促进将功能磁共振成像纳入高血压相关脑改变的常规评估和管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional MRI in hypertension – A systematic review of brain connectivity, regional activity, and cognitive impairment
Hypertension is increasingly recognized as a key contributor to cognitive decline and brain structure and function alterations. Functional Magnetic Resonance Imaging (fMRI) provides a non-invasive means to detect early disruptions in neural networks before clinical symptoms of cognitive impairment emerge. This systematic review explored the application of fMRI in assessing brain functional changes and cognitive performance in individuals with hypertension. A comprehensive search of electronic databases identified eight relevant studies, most of which employed resting-state fMRI techniques. Findings majorly demonstrated that hypertension is associated with altered connectivity within key neural networks, including the default mode network, frontoparietal network, and salience network. Additional observations included reduced regional homogeneity and changes in low-frequency fluctuations. These neural alterations were linked to decreased memory, executive function, and attention. While the findings support the potential of fMRI as an early biomarker for hypertension-related cognitive impairment, the evidence remains limited by the small number of studies and geographic concentration. Nonetheless, fMRI holds promise for clinical application in identifying individuals at risk and guiding timely interventions. Additional longitudinal studies with broader geographic representation are necessary to confirm these insights and facilitate the integration of fMRI into the routine evaluation and management of hypertension-related brain alterations.
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来源期刊
Neuroscience informatics
Neuroscience informatics Surgery, Radiology and Imaging, Information Systems, Neurology, Artificial Intelligence, Computer Science Applications, Signal Processing, Critical Care and Intensive Care Medicine, Health Informatics, Clinical Neurology, Pathology and Medical Technology
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