Spectroscopic biomedical imaging with the Medipix2 detector

被引:0
作者
T. R. Melzer
N. J. Cook
A. P. Butler
R. Watts
N. Anderson
R. Tipples
P. H. Butler
机构
[1] University of Canterbury,Physics and Astronomy
[2] University of Otago,Christchurch Medical School
[3] Canterbury District Health Board,Electrical and Computer Engineering
[4] University of Canterbury,undefined
[5] European Organisation for Nuclear Research,undefined
来源
Australasian Physics & Engineering Sciences in Medicine | 2008年 / 31卷
关键词
Medipix; spectroscopic x-ray imaging; single photon counting;
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中图分类号
学科分类号
摘要
This study confirms that the Medipix2 x-ray detector enables spectroscopic bio-medical plain radiography. We show that the detector has the potential to provide new, useful information beyond the limited spectroscopic information of modern dual-energy computed tomography (CT) scanners. Full spectroscopic 3D-imaging is likely to be the next major technological advance in computed tomography, moving the modality towards molecular imaging applications. This paper focuses on the enabling technology which allows spectroscopic data collection and why this information is useful. In this preliminary study we acquired the first spectroscopic images of human tissue and other biological samples obtained using the Medipix2 detector. The images presented here include the clear resolution of the 1.4mm long distal phalanx of a 20-week-old miscarried foetus, showing clear energy-dependent variations. The opportunities for further research using the forthcoming Medipix3 detector are discussed and a prototype spectroscopic CT scanner (MARS, Medipix All Resolution System) is briefly described.
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页码:300 / 306
页数:6
相关论文
共 127 条
[1]  
Wang G.(2008)An outlook on x-ray CT research and development Med. Phys. 35 1051-64
[2]  
Yu H.(2002)Medipix2: a 64-k pixel readout chip with 55-μm square elements working in single photon counting mode IEEE Trans. Nucl. Sci. 49 2279-83
[3]  
De Man B.(2008)Bio-medical x-ray imaging with spectroscopic pixel detectors Nucl. Intrum. Meth. Phys. Res. A 591 141-6
[4]  
Llopart X.(2007)K-edge imaging in x-ray computed tomography using multi-bin photon counting detectors Phys. Med. Biol. 52 4679-96
[5]  
Campbell M.(2007)Counting and integrating readout for direct conversion x-ray imaging: Concept, realization and first prototype measurements IEEE Trans. Nucl. Sci. 54 383-90
[6]  
Dinapoli R.(2006)Review of medical imaging with emphasis on x-ray detectors Nucl. Instrum. Meth. Phys. Res. A 563 215-24
[7]  
San Segundo D.(2006)Dual-energy subtraction chest radiography: what to look for beyond calcified nodules Radiographics 26 79-92
[8]  
Pernigotti E.(1987)X-ray characterisation of normal and neoplastic breast tissues Phys. Med. Biol. 32 675-95
[9]  
Butler A. P. H.(1994)Dual-energy digital mammography utilizing stimulated phosphor computed radiography Phys. Med. Biol. 39 1989-2004
[10]  
Anderson N. G.(2003)Dual-energy chest radiography with a flat-panel digital detector: revealing calcified chest abnormalities Am. J. Roentgenol. 181 1519-24