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Tracking White Matter Fiber inHuman Brain
引用本文:KANG Ning ZHANG Jun Eric S Carlson. Tracking White Matter Fiber inHuman Brain[J]. 上海大学学报(自然科学版), 2004, 10(Z1): 13-17
作者姓名:KANG Ning  3"  >   3"   face="  Times New Roman"  >ZHANG Jun  3"  >   3"   face="  Times New Roman"  >Eric S Carlson  3"  >
作者单位:KANG Ning(Laboratory for High Performance Scientific Computing andComputer Simulation, Department of Computer Science, University of Kentucky, 773 AndersonHall, Lexington, KY 40506-0046, USA) ZHANG Jun(Laboratory for High Performance Scientific Computing andComputer Simulation, Department of Computer Science, University of Kentucky, 773 AndersonHall, Lexington, KY 40506-0046, USA) Eric S Carlson(Department of Chemical Engineering, University of Alabama,P.O.Box 870203, Tuscaloosa, AL 35487-0203, USA)
摘    要:


Tracking White Matter Fiber in Human Brain
KANG Ning,ZHANG Jun,Eric S Carlson. Tracking White Matter Fiber in Human Brain[J]. Journal of Shanghai University(Natural Science), 2004, 10(Z1): 13-17
Authors:KANG Ning  ZHANG Jun  Eric S Carlson
Abstract:A new approach for noninvasively tracing brain white matter fiber tracts is presented using diffusion tensor magnetic resonance imaging (DT-MRI) data. This technique is based on successive anisotropic diffusion simulations over the human brain, which are utilized to construct three dimensional diffusion fronts. The fiber pathways are determined by evaluating the distance and orientation from fronts to their corresponding diffusion seeds. Real DT-MRI data are used to demonstrate the tracking scheme. It is shown that several major white matter fiber pathways can be reproduced noninvasively, with the tract branching being allowed. Since the diffusion simulation,which is a truly physical phenomenon reflecting the underlying architecture of cerebral tissues, makes full use of the entire diffusion tensor data, the proposed approach is expected to enhance robustness and reliability of the DT-MRI based fiber tracking techniques in white matter fiber reconstruction.
Keywords:fiber tractography  anisotropic diffusion simulation  diffusion tensor magnetic resonance imaging
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