DocumentCode
190120
Title
High resolution spectral micro-CT imaging of atherosclerotic plaque
Author
Zainon, R. ; Zainon, R. ; Ronaldson, J.P. ; Anderson, N.G. ; Butler, A.P.H. ; Zainon, R. ; Butler, P.H. ; Gieseg, S.P. ; Janmale, T. ; Scott, N.J.
Author_Institution
Adv. Med. & Dental Inst., Univ. Sains Malaysia, Kepala Batas, Malaysia
fYear
2014
fDate
14-16 April 2014
Firstpage
568
Lastpage
571
Abstract
Spectral micro-Computed Tomography (CT) yields valuable quantitative information about elemental and molecular composition of materials. It enables the identification of materials by decomposing the total attenuation of the material into the various physical contributions for each voxel. Spectral micro-CT equipped with energy-resolved photon counting detector has the ability to measure the spectrum of x-ray beams. It is known that the attenuation of x-ray photons is energy-dependent and each substance has a specific attenuation curve. Therefore, measurement of the specific attenuation responses can enable material differentiation. The goal of this study was to demonstrate the potential of the MARS-CT scanner for preclinical evaluation of biomarker particularly in ex vivo advanced atherosclerotic plaque. It was proposed that spectral CT has the potential to identify the presence of specific markers for vulnerable plaques: iron deposits and lipid core. Using spectroscopic methods developed with this system, it was possible to distinguish the presence of iron deposits and lipid core within ex vivo atherosclerotic plaques. Vulnerable plaques are unstable, prone to rupture and put the person at risk of cardiovascular events and strokes. This preclinical study is a precursor to the development of a clinical technique that will enable vulnerable atherosclerotic plaques to be identified in vivo prior to treatment or removal.
Keywords
cardiovascular system; computerised tomography; diseases; image resolution; iron; medical image processing; photon counting; Fe; MARS-CT scanner; X-ray beam spectrum; X-ray photon attenuation; atherosclerotic plaque; cardiovascular events; computed tomography; elemental composition; energy-resolved photon counting detector; high resolution spectral micro-CT imaging; iron deposits; lipid core; molecular composition; rupture; strokes; total attenuation; Atherosclerosis; Computed tomography; Iron; Materials; Spatial resolution; X-ray imaging; Spectral CT; atherosclerotic plaque; biomarker; energy photon-counting detector;
fLanguage
English
Publisher
ieee
Conference_Titel
Region 10 Symposium, 2014 IEEE
Conference_Location
Kuala Lumpur
Print_ISBN
978-1-4799-2028-0
Type
conf
DOI
10.1109/TENCONSpring.2014.6863099
Filename
6863099
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