Three-dimensional mapping of the lateral ventricles in autism

In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1 ± 3.5 years) and 22 male control subjects (a...

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Published inPsychiatry research. Neuroimaging Vol. 163; no. 2; pp. 106 - 115
Main Authors Vidal, Christine N., Nicolson, Rob, Boire, Jean-Yves, Barra, Vincent, DeVito, Timothy J., Hayashi, Kiralee M., Geaga, Jennifer A., Drost, Dick J., Williamson, Peter C., Rajakumar, Nagalingam, Toga, Arthur W., Thompson, Paul M.
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Published Shannon Elsevier Ireland Ltd 15.07.2008
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Abstract In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1 ± 3.5 years) and 22 male control subjects (age: 10.7 ± 2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
AbstractList In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1+/-3.5 years) and 22 male control subjects (age: 10.7+/-2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1+/-3.5 years) and 22 male control subjects (age: 10.7+/-2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1+/-3.5 years) and 22 male control subjects (age: 10.7+/-2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1 ± 3.5 years) and 22 male control subjects (age: 10.7 ± 2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1 ± 3.5 years) and 22 male control subjects (age: 10.7 ± 2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
Abstract In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted three-dimensional magnetic resonance images of the brain were acquired from 20 males with autism (age: 10.1 ± 3.5 years) and 22 male control subjects (age: 10.7 ± 2.5 years). The lateral ventricles were delineated manually and ventricular volumes were compared between the two groups. Ventricular traces were also converted into statistical three-dimensional maps, based on anatomical surface meshes. These maps were used to visualize regional morphological differences in the thickness of the lateral ventricles between patients and controls. Although ventricular volumes measured using traditional methods did not differ significantly between groups, statistical surface maps revealed subtle, highly localized reductions in ventricular size in patients with autism in the left frontal and occipital horns. These localized reductions in the lateral ventricles may result from exaggerated brain growth early in life.
Author Hayashi, Kiralee M.
Rajakumar, Nagalingam
Nicolson, Rob
Barra, Vincent
Williamson, Peter C.
DeVito, Timothy J.
Boire, Jean-Yves
Thompson, Paul M.
Vidal, Christine N.
Geaga, Jennifer A.
Drost, Dick J.
Toga, Arthur W.
AuthorAffiliation c Department of Medical Biophysics, The University of Western Ontario, London, Ontario, Canada
e Department of Computer Sciences, ISIMA Campus Scientifique des Cezaux, Aubiere, France
a Laboratory of Neuro Imaging, Brain Mapping Division, Dept. Neurology, UCLA School of Medicine, Los Angeles, California, USA
b Department of Psychiatry, The University of Western Ontario, London, Ontario, Canada
d Faculte du Medicine, INSERM, Clermont-Ferrand, France
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Issue 2
Keywords Autism
Brain
MRI
Lateral ventricles
Human
Cartography
Central nervous system
Medical imagery
Developmental disorder
Nuclear magnetic resonance imaging
Encephalon
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Corresponding author. London Health Sciences Centre, 800 Commissioners Road East, E2-601, London, Ontario, Canada N6C-2V5. Tel.: +1 519 685 8427; fax: +1 519 685 8595. E-mail address: Rnicolso@uwo.ca(R.Nicolson).
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Snippet In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted...
Abstract In this study, a computational mapping technique was used to examine the three-dimensional profile of the lateral ventricles in autism. T1-weighted...
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SubjectTerms Adolescent
Autism
Autistic Disorder - diagnosis
Biological and medical sciences
Brain
Brain Mapping
Child
Child clinical studies
Computer Science
Developmental disorders
Dominance, Cerebral - physiology
Frontal Lobe - pathology
Humans
Image Processing, Computer-Assisted
Imaging, Three-Dimensional
Infantile autism
Lateral ventricles
Lateral Ventricles - pathology
Machine Learning
Magnetic Resonance Imaging
Male
Medical sciences
MRI
Occipital Lobe - pathology
Psychiatry
Psychology. Psychoanalysis. Psychiatry
Psychopathology. Psychiatry
Radiology
Reference Values
Signal and Image Processing
Title Three-dimensional mapping of the lateral ventricles in autism
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https://www.clinicalkey.es/playcontent/1-s2.0-S0925492707002284
https://dx.doi.org/10.1016/j.pscychresns.2007.11.002
https://www.ncbi.nlm.nih.gov/pubmed/18502618
https://www.proquest.com/docview/71651421
https://uca.hal.science/hal-01622428
https://pubmed.ncbi.nlm.nih.gov/PMC2770439
Volume 163
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