3D Image Reconstruction with Single-Slice CT using Improved Marching Cube Algorithm

Ignatius Luddy Indra Purnama, Alva Edy Tontowi, H. Herianto
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Abstract

Single-slice CT is still widely used in many hospitals because it prolongs the life cycle of the CT device components, especially that of x-ray. Using CT 3D image, it can be very helpful for a doctor in diagnosing medical information. In the development of 3D image reconstruction and computer technology, it is possible for the doctor to communicate with the patient through gadget media. This paper presents the determination of the threshold in single-slice Computerized Tomography (CT) for interactive 3D image reconstruction without user interface. The 3D image reconstruction method is the improved marching cube algorithm. The medical image object that consists of skull bone and sternum-pelvis in Digital Imaging and Communications in Medicine (DICOM) format is taken from single-slice CT. The resulting threshold for bone 3D image object is 200, except for the 3D image with quantity slice less than 10 can not be reconstructed. The difference in the surface volume and surface area between the 3D image reconstruction output from InVesalius software and project, for skull bone and sternum-pelvis is less than 0.5%. The justification of the visual shape match from three radiology doctors for skull bone and sternum-pelvis is approximately 99% match. Processing time to reconstruct the 3D image is around five minutes.
基于改进行军立方体算法的单层CT三维图像重建
由于单层CT延长了CT设备部件的生命周期,特别是x线的生命周期,目前在许多医院仍被广泛使用。利用CT三维图像,可以为医生诊断医学信息提供很大的帮助。随着三维图像重建和计算机技术的发展,医生与患者通过电子媒体进行交流成为可能。提出了一种无用户界面的交互式三维图像重建中单层计算机断层扫描(CT)阈值的确定方法。三维图像重建方法是改进的行军立方体算法。医学数字成像与通信(DICOM)格式的医学图像对象由颅骨和胸骨-骨盆组成。所得骨三维图像对象的阈值为200,除了数量切片小于10的三维图像外,无法重建。InVesalius软件输出的颅骨和胸骨-骨盆三维图像的表面体积和表面积与项目的差异小于0.5%。三名放射科医生对颅骨和胸骨-骨盆的视觉形状的匹配度约为99%。重建3D图像的处理时间约为5分钟。
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