Design and Implementation of a Compact Low-Dose Diffraction Enhanced Medical Imaging System

被引:68
作者
Parham, Christopher [1 ,2 ,3 ]
Zhong, Zhong [4 ]
Connor, Dean M. [4 ]
Chapman, L. Dean [5 ]
Pisano, Etta D. [1 ,2 ,3 ]
机构
[1] Univ N Carolina, Sch Med, Dept Radiol, Lineberger Comprehens Canc Ctr, Chapel Hill, NC 27599 USA
[2] Univ N Carolina, Sch Med, Dept Biomed Engn, Lineberger Comprehens Canc Ctr, Chapel Hill, NC 27599 USA
[3] Univ N Carolina, Biomed Res Imaging Ctr, Chapel Hill, NC 27599 USA
[4] Brookhaven Natl Lab, Natl Synchrotron Light Source, Upton, NY 11973 USA
[5] Univ Saskatchewan, Coll Med, Dept Anat & Cell Biol, Saskatoon, SK S7N 0W0, Canada
关键词
Diffraction enhanced imaging; analyzer based imaging; low dose; refraction; soft tissue; mammography; COMPUTED-TOMOGRAPHY; CONTRAST; MAMMOGRAPHY; SPECIMENS; CALCIFICATIONS; CT;
D O I
10.1016/j.acra.2009.02.007
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Rationale and Objectives. Diffraction-enhanced imaging (DEI) is a new x-ray imaging modality that differs from conventional radiography in its use of three physical mechanisms to generate contrast. DEI is able to generate contrast from x-ray absorption, refraction, and ultra-small-angle scatter rejection (extinction) to produce high-contrast images with a much lower radiation dose compared to conventional radiography. Materials and Methods. A prototype DEI system was constructed using a 1-kW tungsten x-ray tube and a single silicon monochromator and analyzer crystal. The monochromator crystal was aligned to reflect the combined K alpha 1 (59.32 keV) and K alpha 2 (57.98 keV) characteristic emission lines of tungsten using a tube voltage of 160 kV. System performance and demonstration of contrast were evaluated using a nylon monofilament refraction phantom, full-thickness breast specimens, a human thumb, and a live mouse. Results. Images acquired using this system successfully demonstrated all three DEI contrast mechanisms. Flux measurements acquired using this 1-kW prototype system demonstrated that this design can be scaled to use a more powerful 60-kW x-ray tube to generate similar images with an image time of approximately 30 seconds. This single-crystal pair design can be further modified to allow for an array of crystals to reduce clinical image times to <3 seconds. Conclusions. This paper describes the design, construction, and performance of a new DEI system using a commercially available tungsten anode x-ray tube and includes the first high-quality low-dose diffraction-enhanced images of full-thickness human tissue specimens.
引用
收藏
页码:911 / 917
页数:7
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