DocumentCode :
561827
Title :
A framework to create realistic IVUS phantoms for different intraluminal pressures
Author :
Cardoso, Fernando Mitsuyama ; Moraes, Matheus Cardoso ; Furuie, Sérgio Shiguemi
Author_Institution :
Univ. of Sao Paulo, Sao Paulo, Brazil
fYear :
2011
fDate :
18-21 Sept. 2011
Firstpage :
333
Lastpage :
336
Abstract :
Intravascular Ultrasound (IVUS) phantoms allow flexibility and full vessel and atherosclerotic-parameter control. Controlling coronary properties in phantoms is important to calibrate and test many different IVUS algorithm. Therefore, a framework to create representative IVUS phantoms, using Finite Element method and Field II, is presented. First, a coronary cross section model is selected. Second, the different regions of an IVUS image are assigned for the elasticity modulus. Third, triangular element is used to automatically generate the IVUS mesh, higher number of elements are disposed at borders, where more precision is required. Finally, the deformation is computed, using different intraluminal pressure. Consequently, the deformed image is generated, and Field II is applied to incorporate the Speckle noise. The framework is corroborated by creating phantoms with different features, and comparing the plaque strain rate, with deformations obtained by recent studies. Moreover, related modalities, such as Intravascular OCT and MRI can be included in this framework for future investigations.
Keywords :
biomedical MRI; biomedical ultrasonics; cardiovascular system; elastic moduli; finite element analysis; image denoising; medical image processing; optical tomography; phantoms; speckle; Field II; IVUS image; IVUS mesh; MRI; VUS algorithm; atherosclerotic-parameter control; coronary cross section model; coronary property control; deformed image; elasticity modulus; finite element method; flexibility; intraluminal pressures; intravascular OCT; intravascular ultrasound phantoms; plaque strain rate; realistic IVUS phantoms; related modality; speckle noise; triangular element; vessel control; Atherosclerosis; Computational modeling; Finite element methods; Numerical models; Phantoms; Strain; Ultrasonic imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computing in Cardiology, 2011
Conference_Location :
Hangzhou
ISSN :
0276-6547
Print_ISBN :
978-1-4577-0612-7
Type :
conf
Filename :
6164570
Link To Document :
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