Improved stereo perception in coronary angiography using the X-ray tube as the viewpoint and validation with 3D printed models.

IF 1.5 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS International Journal of Cardiovascular Imaging Pub Date : 2023-10-01 Epub Date: 2023-07-15 DOI:10.1007/s10554-023-02906-x
Miao Chen, Tianpeng Zhang
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引用次数: 1

Abstract

Coronary angiography (CAG) provides two-dimensional images, but a clinician who is experienced in percutaneous coronary interventions can use information from these images to interpret spatial depth and infer the three-dimensional (3D) locations of vessels. We hypothesized that CAG results were equivalent to the mirror image of a coronary artery perspective projection, and a stereo perception could be easily established when the viewpoint of the angiogram was the X-ray tube instead of the detector. To eliminate the influence of heartbeat and respiration, a 3D-printed a coronary artery model was constructed for analysis. The effects of gantry movements during digital subtraction angiography (DSA) on the image were used to identify factors that affected DSA image transformation. Then, based on these factors, DSA imaging was simulated using UG NX software with three methods: (i) a perspective projection with the detector as the viewpoint; (ii) a parallel projection; and (iii) a mirror image of the perspective projection with the X-ray tube as the viewpoint. Finally, the resulting 3D images were compared with the DSA image. Our mirror image of the coronary artery perspective projection that used the X-ray tube as the viewpoint fused precisely with the CAG results and provided exact simulations of all the effects of DSA gantry movements on the DSA image. CAG results were equivalent to the mirror image of coronary artery perspective projection, and the stereo perception was easily established using the X-ray tube as the viewpoint.

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使用X射线管作为视点并通过3D打印模型进行验证,改善了冠状动脉造影的立体感。
冠状动脉造影(CAG)提供二维图像,但具有经皮冠状动脉介入治疗经验的临床医生可以使用这些图像中的信息来解释空间深度并推断血管的三维(3D)位置。我们假设CAG结果相当于冠状动脉透视投影的镜像,并且当血管造影的视点是X射线管而不是探测器时,可以很容易地建立立体感知。为了消除心跳和呼吸的影响,构建了3D打印的冠状动脉模型进行分析。数字减影血管造影术(DSA)期间门架运动对图像的影响被用来确定影响DSA图像转换的因素。然后,基于这些因素,使用UGNX软件,采用三种方法模拟DSA成像:(i)以探测器为视点的透视投影;(ii)平行投影;以及(iii)以X射线管作为视点的透视投影的镜像。最后,将得到的3D图像与DSA图像进行比较。我们使用X射线管作为视点的冠状动脉透视投影的镜像与CAG结果精确融合,并提供了DSA门架运动对DSA图像的所有影响的精确模拟。CAG结果相当于冠状动脉透视投影的镜像,并且使用X射线管作为视点很容易建立立体感。
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来源期刊
CiteScore
4.00
自引率
9.50%
发文量
77
审稿时长
1 months
期刊介绍: The International Journal of Cardiovascular Imaging publishes technical and clinical communications (original articles, review articles and editorial comments) associated with cardiovascular diseases. The technical communications include the research, development and evaluation of novel imaging methods in the various imaging domains. These domains include magnetic resonance imaging, computed tomography, X-ray imaging, intravascular imaging, and applications in nuclear cardiology and echocardiography, and any combination of these techniques. Of particular interest are topics in medical image processing and image-guided interventions. Clinical applications of such imaging techniques include improved diagnostic approaches, treatment , prognosis and follow-up of cardiovascular patients. Topics include: multi-center or larger individual studies dealing with risk stratification and imaging utilization, applications for better characterization of cardiovascular diseases, and assessment of the efficacy of new drugs and interventional devices.
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