Enlarged Perivascular Space and Index for Diffusivity Along the Perivascular Space as Emerging Neuroimaging Biomarkers of Neurological Diseases

IF 3.6 4区 医学 Q3 CELL BIOLOGY Cellular and Molecular Neurobiology Pub Date : 2023-12-29 DOI:10.1007/s10571-023-01440-7
Jun Zhang, Shengwen Liu, Yaqi Wu, Zhijian Tang, Yasong Wu, Yiwei Qi, Fangyong Dong, Yu Wang
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Abstract

The existence of lymphatic vessels or similar clearance systems in the central nervous system (CNS) that transport nutrients and remove cellular waste is a neuroscientific question of great significance. As the brain is the most metabolically active organ in the body, there is likely to be a potential correlation between its clearance system and the pathological state of the CNS. Until recently the successive discoveries of the glymphatic system and the meningeal lymphatics solved this puzzle. This article reviews the basic anatomy and physiology of the glymphatic system. Imaging techniques to visualize the function of the glymphatic system mainly including post-contrast imaging techniques, indirect lymphatic assessment by detecting increased perivascular space, and diffusion tensor image analysis along the perivascular space (DTI-ALPS) are discussed. The pathological link between glymphatic system dysfunction and neurological disorders is the key point, focusing on the enlarged perivascular space (EPVS) and the index of diffusivity along the perivascular space (ALPS index), which may represent the activity of the glymphatic system as possible clinical neuroimaging biomarkers of neurological disorders.

Graphical Abstract

The pathological link between glymphatic system dysfunction and neurological disorders is the key point, focusing on the enlarged perivascular space (EPVS) and the index for of diffusivity along the perivascular space (ALPS index), which may represent the activity of the glymphatic system as possible clinical neuroimaging biomarkers of neurological disorders

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扩大的血管周围空间和血管周围空间扩散指数是神经系统疾病的新兴神经影像生物标志物
中枢神经系统(CNS)中是否存在淋巴管或类似的清除系统来运输营养物质和清除细胞废物,这是一个具有重大意义的神经科学问题。由于大脑是人体新陈代谢最活跃的器官,其清除系统与中枢神经系统的病理状态之间很可能存在潜在的关联。直到最近,甘液系统和脑膜淋巴管的相继发现才解决了这一难题。本文回顾了甘液系统的基本解剖学和生理学。文章讨论了观察甘淋巴系统功能的成像技术,主要包括对比后成像技术、通过检测增加的血管周围间隙进行间接淋巴评估,以及沿血管周围间隙的弥散张量图像分析(DTI-ALPS)。重点探讨了甘淋巴系统功能障碍与神经系统疾病之间的病理联系,重点关注血管周围间隙增大(EPVS)和沿血管周围间隙的弥散指数(ALPS指数),它们可能代表甘淋巴系统的活性,是神经系统疾病的临床神经影像生物标志物。图解摘要甘回流系统功能障碍与神经系统疾病之间的病理联系是关键点,重点是扩大的血管周围间隙(EPVS)和沿血管周围间隙的弥散指数(ALPS指数),它们可能代表甘回流系统的活动,是神经系统疾病的临床神经影像学生物标志物。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
137
审稿时长
4-8 weeks
期刊介绍: Cellular and Molecular Neurobiology publishes original research concerned with the analysis of neuronal and brain function at the cellular and subcellular levels. The journal offers timely, peer-reviewed articles that describe anatomic, genetic, physiologic, pharmacologic, and biochemical approaches to the study of neuronal function and the analysis of elementary mechanisms. Studies are presented on isolated mammalian tissues and intact animals, with investigations aimed at the molecular mechanisms or neuronal responses at the level of single cells. Cellular and Molecular Neurobiology also presents studies of the effects of neurons on other organ systems, such as analysis of the electrical or biochemical response to neurotransmitters or neurohormones on smooth muscle or gland cells.
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