Virchow-Robin spaces on magnetic resonance images: normative data, their dilatation, and a review of the literature

被引:182
作者
Groeschel, Samuel
Chong, Wui Khean
Surtees, Robert
Hanefeld, Folker
机构
[1] Childrens Hosp, Dept Pediat & Neuropediat, D-37075 Gottingen, Germany
[2] Univ Gottingen, Dept Pediat & Child Neurol, D-3400 Gottingen, Germany
[3] UCL, Inst Child Hlth, Radiol & Phys Unit, London, England
[4] UCL, Inst Child Hlth, Neurosci Unit, London, England
关键词
perivascular spaces; Virchow-Robin spaces; MRI; review;
D O I
10.1007/s00234-006-0112-1
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Introduction Virchow-Robin spaces (VRS) are perivascular spaces in the brain and can be visualized on magnetic resonance images (MRI). We attempt to provide a better understanding of the significance of VRS for pathological and physiological processes by reviewing the literature, presenting normative data for the first time, and proposing a definition for the dilatation of the VRS on MRI that is based on shape rather than size. Methods We evaluated the VRS in 125 healthy subjects (age range 1-30 years) using high-resolution 3D images, and in 36 patients (age range 2-16 years) with normal MRI, using routine clinical sequences. Results VRS were visible in all high-resolution images of the 125 healthy subjects. Two of them revealed dilated VRS, giving a prevalence of 1.6%. VRS could be visualized in 29 (80%) of the 36 paediatric clinical scans; none was dilated. It was demonstrated that the visibility of VRS on MRI is sequence-dependent. Conclusion From the results of this study and the literature on the nature and pathology of VRS, we conclude that VRS on MR images of healthy individuals are normal findings, even if they are dilated. A judgement on whether dilated VRS in an individual patient is a normal variant or part of a disease process can be made by taking into account the appearance of the adjacent tissue on MRI and the clinical context.
引用
收藏
页码:745 / 754
页数:10
相关论文
共 122 条
[11]   Imaging of white matter lesions [J].
Barkhof, F ;
Scheltens, P .
CEREBROVASCULAR DISEASES, 2002, 13 :21-30
[12]  
BARKOVICH AJ, 1999, PEDIAT NEUROIMAGING
[13]   Clinical and neuroradiological follow-up in mucopolysaccharidosis type III (Sanfilippo syndrome) [J].
Barone, R ;
Nigro, F ;
Triulzi, F ;
Musumeci, S ;
Fiumara, A ;
Pavone, L .
NEUROPEDIATRICS, 1999, 30 (05) :270-274
[14]   AUTOSOMAL DOMINANT LEUKOENCEPHALOPATHY AND SUBCORTICAL ISCHEMIC STROKE - A CLINICOPATHOLOGICAL STUDY [J].
BAUDRIMONT, M ;
DUBAS, F ;
JOUTEL, A ;
TOURNIERLASSERVE, E ;
BOUSSER, MG .
STROKE, 1993, 24 (01) :122-125
[15]   Turnover of rat brain perivascular cells [J].
Bechmann, I ;
Kwidzinski, E ;
Kovac, AD ;
Simbürger, E ;
Horvath, T ;
Gimsa, U ;
Dirnagl, U ;
Priller, J ;
Nitsch, R .
EXPERIMENTAL NEUROLOGY, 2001, 168 (02) :242-249
[16]   Immune surveillance of mouse brain perivascular spaces by blood-borne macrophages [J].
Bechmann, I ;
Priller, J ;
Kovac, A ;
Böntert, M ;
Wehner, T ;
Klett, FF ;
Bohsung, J ;
Stuschke, M ;
Dirnagl, U ;
Nitsch, R .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2001, 14 (10) :1651-1658
[17]   EXPANDING CEREBELLAR LACUNES DUE TO DILATATION OF THE PERIVASCULAR SPACE ASSOCIATED WITH BINSWANGERS SUBCORTICAL ARTERIOSCLEROTIC ENCEPHALOPATHY [J].
BENHAIEMSIGAUX, N ;
GRAY, F ;
GHERARDI, R ;
ROUCAYROL, AM ;
POIRIER, J .
STROKE, 1987, 18 (06) :1087-1092
[18]   Distinguishing silent lacunar infarction from enlarged Virchow-Robin spaces: a magnetic resonance imaging and pathological study [J].
Bokura, H ;
Kobayashi, S ;
Yamaguchi, S .
JOURNAL OF NEUROLOGY, 1998, 245 (02) :116-122
[19]   DRAINAGE OF CEREBRAL INTERSTITIAL FLUID INTO DEEP CERVICAL LYMPH OF THE RABBIT [J].
BRADBURY, MWB ;
CSERR, HF ;
WESTROP, RJ .
AMERICAN JOURNAL OF PHYSIOLOGY, 1981, 240 (04) :F329-F336
[20]   BRAIN MR - PATHOLOGIC CORRELATION WITH GROSS AND HISTOPATHOLOGY .1. LACUNAR INFARCTION AND VIRCHOW-ROBIN SPACES [J].
BRAFFMAN, BH ;
ZIMMERMAN, RA ;
TROJANOWSKI, JQ ;
GONATAS, NK ;
HICKEY, WF ;
SCHLAEPFER, WW .
AMERICAN JOURNAL OF ROENTGENOLOGY, 1988, 151 (03) :551-558