Development of an Integrated C-Arm Interventional Imaging System With a Strip Photon Counting Detector and a Flat Panel Detector

被引:1
|
作者
Ji, Xu [1 ]
Feng, Mang [1 ]
Treb, Kevin [1 ]
Zhang, Ran [1 ]
Schafer, Sebastian [2 ]
Li, Ke [1 ,3 ]
机构
[1] Univ Wisconsin, Dept Med Phys, Madison, WI 53705 USA
[2] Siemens Healthineers, Adv Therapies, D-91301 Forchheim, Germany
[3] Univ Wisconsin, Dept Radiol, Madison, WI 53705 USA
关键词
Photon counting detector; photon counting CT; image guided intervention; C-arm x-ray systems; CONE-BEAM CT; DUAL-ENERGY CT; COMPUTED-TOMOGRAPHY; PROJECTION; QUALITY; RECONSTRUCTION; ALGORITHM; ABLATION; GUIDANCE; MOBILE;
D O I
10.1109/TMI.2021.3095419
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Modern interventional x-ray systems are often equipped with flat-panel detector-based cone-beam CT (FPD-CBCT) to provide tomographic, volumetric, and high spatial resolution imaging of interventional devices, iodinated vessels, and other objects. The purpose of this work was to bring an interchangeable strip photon-counting detector (PCD) to C-arm systems to supplement (instead of retiring) the existing FPD-CBCT with a high quality, spectral, and affordable PCD-CT imaging option. With minimal modification to the existing C-arm, a 51 x 0.6 cm(2) PCD with a 0.75 mm CdTe layer, two energy thresholds, and 0.1 mm pixels was integrated with a Siemens Artis Zee interventional imaging system. The PCD can be translated in and out of the field-of-view to allow the system to switch between FPD and PCD-CT imaging modes. A dedicated phantom and a new algorithm were developed to calibrate the projection geometry of the narrow-beam PCD-CT system and correct the gantry wobbling-induced geometric distortion artifacts. In addition, a detector response calibration procedure was performed for each PCD pixel using materials with known radiological pathlengths to address concentric artifacts in PCD-CT images. Both phantom and human cadaver experiments were performed at a high gantry rotation speed and clinically relevant radiation dose level to evaluate the spectral and non-spectral imaging performance of the prototype system. Results show that the PCD-CT system has excellent image quality with negligible artifacts after the proposed corrections. Compared with FPD-CBCT images acquired at the same dose level, PCD-CT images demonstrated a 53% reduction in noise variance and additional quantitative imaging capability.
引用
收藏
页码:3674 / 3685
页数:12
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