arrow
Return

Processing and visualization for diffusion tensor MRI

delete2002-06-01
delete722
PRE
AI
C
C.-F. Westin
S
Stephan E. Maier
H
Hatsuho Mamata
A
A. Nabavi
F
F.A. Jolesz
R
Ron Kikinis
DOI:10.1016/S1361-8415(02)00053-1delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper presents processing and visualization techniques for Diffusion Tensor Magnetic Resonance Imaging (DT-MRI). In DT-MRI, each voxel is assigned a tensor that describes local water diffusion. The geometric nature of diffusion tensors enables us to quantitatively characterize the local structure in tissues such as bone, muscle, and white matter of the brain. This makes DT-MRI an interesting modality for image analysis. In this paper we present a novel analytical solution to the Stejskal-Tanner diffusion equation system whereby a dual tensor basis, derived from the diffusion sensitizing gradient configuration, eliminates the need to solve this equation for each voxel. We further describe decomposition of the diffusion tensor based on its symmetrical properties, which in turn describe the geometry of the diffusion ellipsoid. A simple anisotropy measure follows naturally from this analysis. We describe how the geometry or shape of the tensor can be visualized using a coloring scheme based on the derived shape measures. In addition, we demonstrate that human brain tensor data when filtered can effectively describe macrostructural diffusion, which is important in the assessment of fiber-tract organization. We also describe how white matter pathways can be monitored with the methods introduced in this paper. DT-MRI tractography is useful for demonstrating neural connectivity (in vivo) in healthy and diseased brain tissue. (C) 2002 Elsevier Science B.V. All rights reserved.
Keywords:
diffusion tensor MRI
tractography
dual basis
geometrical diffusion measures
visualization
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Medical Image Analysis cover
Medical Image Analysis
IF:
11.8
Papers:
3.8K
Citations:
2.4W

Organization

No organization information available
Cited Papers

Cited Papers

DIFFUSION-WEIGHTED MR IMAGING OF ANISOTROPIC WATER DIFFUSION IN CAT CENTRAL-NERVOUS-SYSTEM
errRADIOLOGY
IF15.2
err1990-08-01
err1.0K
PREAI
errMOSELEY, ME; COHEN, Y; KUCHARCZYK, J; MINTOROVITCH, J; ASGARI, HS; WENDLAND, MF; TSURUDA, J; NORMAN, D
errShare
errSave
ECHO-PLANAR IMAGING OF INTRAVOXEL INCOHERENT MOTION
errRADIOLOGY
IF15.2
err1990-11-01
err510
PREAI
errTURNER, R; LEBIHAN, D; MAIER, J; VAVREK, R; HEDGES, LK; PEKAR, J
errShare
errSave
Line scan diffusion imaging
err2005-12-12
err237
PREAI
errGudbjartsson, H; Maier, SE; Mulkern, RV; Morocz, IA; Patz, S; Jolesz, FA
errShare
errSave
MR IMAGING OF INTRAVOXEL INCOHERENT MOTIONS - APPLICATION TO DIFFUSION AND PERFUSION IN NEUROLOGIC DISORDERS
errRADIOLOGY
IF15.2
err1986-11-01
err3.2K
PREAI
errLEBIHAN, D; BRETON, E; LALLEMAND, D; GRENIER, P; CABANIS, E; LAVALJEANTET, M
errShare
errSave
errShare
errSave
An Engineered Human Antibody Fab Fragment Specific for Pseudomonas aeruginosa PcrV Antigen Has Potent Antibacterial Activity
err2009-03-01
err0
errOAAI
errMark Baer; Teiji Sawa; Peter Flynn; Kenneth Luehrsen; David Martinez; Jeanine P. Wiener-Kronish; Geoffrey Yarranton; Christopher Bebbington
errShare
errSave
researcher View more