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使用具有高分辨率斑块内核的原型光子计数探测器计算机断层扫描改善支架内管腔的可视化

Improving Visualization of In-stent Lumen Using Prototype Photon-counting Detector Computed Tomography with High-resolution Plaque Kernel.

作者信息

Funama Yoshinori, Oda Seitaro, Teramoto Fuyuhiko, Aoki Yuko, Takahashi Isao, Kojima Shinichi, Goto Taiga, Tanaka Kana, Kidoh Masafumi, Nagayama Yasunori, Nakaura Takeshi, Hirai Toshinori

机构信息

Department of Medical Radiation Sciences, Faculty of Life Sciences, Kumamoto University, Kumamoto, Japan.

Department of Diagnostic Radiology, Faculty of Life Sciences, Kumamoto University, Kumamoto, Japan.

出版信息

J Med Phys. 2024 Jan-Mar;49(1):127-132. doi: 10.4103/jmp.jmp_163_23. Epub 2024 Mar 30.

Abstract

The study aimed to compare the performance of photon-counting detector computed tomography (PCD CT) with high-resolution (HR)-plaque kernel with that of the energy-integrating detector CT (EID CT) in terms of the visualization of the lumen size and the in-stent stenotic portion at different coronary vessel angles. The lumen sizes in PCD CT and EID CT images were 2.13 and 1.80 mm at 0°, 2.20 and 1.77 mm at 45°, and 2.27 mm and 1.67 mm at 90°, respectively. The lumen sizes in PCD CT with HR-plaque kernel were wider than those in EID CT. The mean degree of the in-stent stenotic portion at 50% was 69.7% for PCD CT and 90.4% for EID CT. PCD CT images with HR-plaque kernel enable improved visualization of lumen size and accurate measurements of the in-stent stenotic portion compared to conventional EID CT images regardless of the stent direction.

摘要

该研究旨在比较采用高分辨率(HR)斑块内核的光子计数探测器计算机断层扫描(PCD CT)与能量积分探测器CT(EID CT)在不同冠状动脉血管角度下对管腔大小和支架内狭窄部分的可视化表现。PCD CT和EID CT图像在0°时的管腔大小分别为2.13和1.80毫米,在45°时分别为2.20和1.77毫米,在90°时分别为2.27毫米和1.67毫米。采用HR斑块内核的PCD CT的管腔大小比EID CT的更宽。PCD CT在50%处的支架内狭窄部分的平均程度为69.7%,EID CT为90.4%。与传统的EID CT图像相比,采用HR斑块内核的PCD CT图像能够更好地可视化管腔大小,并准确测量支架内狭窄部分,且与支架方向无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb23/11141743/b39b03df4e40/JMP-49-127-g001.jpg

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