Radial Vector Representation of Magnetic Resonance Image (MRI) data

Lieferzeit: Lieferbar innerhalb 14 Tagen

79,00 

Simulation of Realistic Head Geometry Using Radial Vector Representation of Magnetic Resonance Image (MRI) data

ISBN: 3838345924
ISBN 13: 9783838345925
Autor: Osadebey, Michael Eziashi
Verlag: LAP LAMBERT Academic Publishing
Umfang: 212 S.
Erscheinungsdatum: 21.02.2010
Auflage: 1/2010
Format: 1.3 x 22 x 15
Gewicht: 334 g
Produktform: Kartoniert
Einband: KT
Artikelnummer: 1689994 Kategorie:

Beschreibung

This master''s thesis seeks to contribute to accurate EEG signal registration and qualitative modeling of the human head through the development of a system for the generation of variable and realistic head geometry which is a reflection of human ethnic diversity. This thesis is concerned with the full variation of geometry, that is, combined size and shape variation. The generation of variable head geometry is based on a universal template derived from the segmented MRI (magnetic resonance image) data of the human cadaver of Caucasian origin. A new algorithm, radial vector technique segments global geometry into 360 discrete local surface profiles by transforming segmented MRI data into the radial angular matrix (RAM) that describes boundaries and the local surface profiles with high spatial resolution using two localization vectors, namely radial distance and radial angle, from the central axis. The RAM is a new approach to the quantification of differences in the MRI-based geometry of tissues. This thesis work has developed a system for the variation, localization, description and simulation of 3D data derived from MRI data

Autorenporträt

Michael Eziashi Osadebey holds two master''s degrees in engineering. The most recent, in 2009, was a distinction in biomedical engineering from the international master's degree program of Tampere University of Technology, Tampere, Finland. He is currently based in Montreal, Canada where he works as an MRI Reader with NeuroRx Research Inc

Das könnte Ihnen auch gefallen …