DocumentCode :
655406
Title :
Design of 3-D Phantoms for Human Carotid Vasculature
Author :
Banerjee, Adrish ; Dey, Shuvashis ; Parui, Sukanya ; Nasipuri, Mita ; Basu, Sreetama
Author_Institution :
Dept. of Comput. Sci. & Eng., Jadavpur Univ., Kolkata, India
fYear :
2013
fDate :
29-31 Aug. 2013
Firstpage :
347
Lastpage :
350
Abstract :
Structural analysis of human carotid vasculature is important for in-depth clinical understanding and to delineate the underlying hemodynamics. Due to the natural difficulty in real-life patient study or ex-vivo analysis, digital phantom based experiments are gathering momentum. Design of accurate/approximate digital cerebro-vascular phantoms is of active interest, due to its acceptability in a wide range of simulation experiments. In this work, we discuss the theory and methods related to the design of 3-D mathematical models of human carotid arterial tree. These approximate phantoms are designed using sphere-based tubular structures, with a help of a custom-designed 2-D/3-D user interface. Multiple tubular structures with varying diameters are combined using piece-wise cubic Bèzier Curves to generate the complete arterial phantom, around the Circle of Willis. We propose robust mathematical models for the design of multilevel bifurcation phantoms with varying diameters. Qualitative analysis of the design strategy is presented with suitable 3-D rendering.
Keywords :
blood vessels; graphical user interfaces; haemodynamics; medical computing; phantoms; rendering (computer graphics); solid modelling; 3D mathematical models; 3D rendering; Circle of Willis; arterial phantom; clinical understanding; custom-designed 2D user interface; custom-designed 3D user interface; digital cerebro-vascular phantoms; digital phantom based experiments; hemodynamics; human carotid arterial tree; human carotid vasculature structural analysis; multilevel bifurcation phantoms design; piece-wise cubic Bezier curves; sphere-based tubular structures; Arteries; Blood; Computational modeling; Computed tomography; Mathematical model; Phantoms; Rendering (computer graphics); 3-D rendering; Carotid vasculature; Phantom design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advances in Computing and Communications (ICACC), 2013 Third International Conference on
Conference_Location :
Cochin
Type :
conf
DOI :
10.1109/ICACC.2013.74
Filename :
6686405
Link To Document :
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