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Automated Methods for Detecting and Quantitation of Enlarged Perivascular spaces on MRI

淋巴系统 血管周围间隙 磁共振成像 病理 医学 计算机科学 放射科 脑脊液
作者
Jasmine Moses,Ben Sinclair,Meng Law,Terence J. O’Brien,Lucy Vivash
出处
期刊:Journal of Magnetic Resonance Imaging [Wiley]
卷期号:57 (1): 11-24 被引量:29
标识
DOI:10.1002/jmri.28369
摘要

The brain's glymphatic system is a network of intracerebral vessels that function to remove “waste products” such as degraded proteins from the brain. It comprises of the vasculature, perivascular spaces ( PVS ), and astrocytes. Poor glymphatic function has been implicated in numerous diseases; however, its contribution is still unknown. Efforts have been made to image the glymphatic system to further assess its role in the pathogenesis of different diseases. Numerous imaging modalities have been utilized including two‐photon microscopy and contrast‐enhanced magnetic resonance imaging ( MRI ). However, these are associated with limitations for clinical use. PVS form a part of the glymphatic system and can be visualized on standard MRI sequences when enlarged. It is thought that PVS become enlarged secondary to poor glymphatic drainage of metabolites. Thus, quantitating PVS could be a good surrogate marker for glymphatic function. Numerous manual rating scales have been developed to measure the PVS number and size on MRI scans; however, these are associated with many limitations. Instead, automated methods have been created to measure PVS more accurately in different diseases. In this review, we discuss the imaging techniques currently available to visualize the glymphatic system as well as the automated methods currently available to measure PVS , and the strengths and limitations associated with each technique. Evidence Level 1 Technical Efficacy Stage 1
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