Related Experiment Video
Updated: Aug 14, 2026

3D Modeling of the Lateral Ventricles and Histological Characterization of Periventricular Tissue in Humans and Mouse
Published on: May 19, 2015
Age-related cerebral white matter changes and pulse-wave encephalopathy: observations with three-dimensional MRI
Marie Cécile Henry Feugeas1, Giovanni De Marco, Ilana Idy Peretti
1Department of Radiology, Bichat-Claude Bernard University Hospital, AP-HP, 75877 Paris Cedex 18, France. marie-cecile.henry-feugeas@bch.ap-hop-paris.fr
Abstract:
Our purpose was to investigate leukoaraïosis (LA) using three-dimensional MR imaging combined with advanced image-processing technology to attempt to group signal abnormalities according to their etiology. Coronal T2-weighted fast fluid-attenuated inversion-recovery (FLAIR) sequences and three-dimensional T1-weighted fast spoiled gradient recalled echo sequences were used to examine cerebral white matter changes in 75 elderly people with memory complaint but no dementia. They were otherwise healthy, community-dwelling subjects. Three subtypes of LA were defined on the basis of their shape, geography and extent: the so-called subependymal/subpial LA, perivascular LA and "bands" along long white matter tracts. Subependymal changes were directly contiguous with ventricular spaces. They showed features of "water hammer" lesions with ventricular systematisation and a more frequent location around the frontal horns than around the bodies (P=.0008). The use of cerebrospinal fluid (CSF) contiguity criterion allowed a classification of splenial changes in the subpial group. Conversely, posterior periventricular lesions in the centrum ovale as well as irregular and extensive periventricular lesions were not directly contiguous with CSF spaces. The so-called perivascular changes showed features of small-vessel-associated disease; they surrounded linear CSF-like signals that followed the direction of perforating vessels. Distribution of these perivascular changes appeared heterogeneous (P ranging from .04 to 5.10(-16)). These findings suggest that subependymal/subpial LA and subcortical LA may be separate manifestations of a single underlying pulse-wave encephalopathy.
Insights
This study used advanced MRI to classify leukoaraiosis (LA) subtypes in elderly individuals. Findings suggest distinct LA patterns may stem from a single cause, pulse-wave encephalopathy.
Area of Science:
- Neuroimaging
- Neurology
- Geriatrics
Background:
- Leukoaraiosis (LA) represents white matter changes in the brain.
- Understanding LA etiology is crucial for diagnosing cognitive decline in the elderly.
Purpose of the Study:
- To investigate leukoaraiosis (LA) using 3D MRI and advanced image processing.
- To categorize LA signal abnormalities based on their underlying causes.
Main Methods:
- Utilized coronal T2-weighted FLAIR and 3D T1-weighted spoiled gradient echo sequences.
- Examined cerebral white matter in 75 healthy elderly individuals with memory complaints.
- Defined three LA subtypes: subependymal/subpial, perivascular, and "bands".
Main Results:
- Subependymal LA showed "water hammer" lesions contiguous with ventricles.
- Perivascular LA, associated with small-vessel disease, exhibited heterogeneous distribution.
- CSF contiguity helped classify splenial changes within the subpial group.
Conclusions:
- Subependymal/subpial and subcortical LA may represent different aspects of pulse-wave encephalopathy.
- Advanced MRI aids in differentiating LA subtypes and understanding their origins.

