光子计数检测器计算机断层扫描满足正断层扫描:一个电影渲染解决方案,卓越的结构可视化。

IF 2.7
B Stadlinger, K Engel, A Al-Haj Husain, H Alkadhi
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引用次数: 0

摘要

本技术说明介绍了一种创新技术,该技术将超高分辨率光子计数检测器计算机断层扫描(PCD-CT)扫描的逼真三维(3D)可视化电影效果图叠加到传统正断层扫描(OPG)图像上,增强可视化并帮助检测地下结构和偶然发现。OPG通常用于评估牙颌面状况,通过圆形层析路径在二维(2D)平面上生成求和图像。虽然OPG对初步评估很有用,但它也有局限性,比如重叠的结构和受限的软组织可视化。更详细的分析通常需要三维成像模式,如锥形束计算机断层扫描或传统的计算机断层扫描。最近推出的PCD-CT提供高分辨率图像,噪音更低,增强了软组织对比度,减少了伪影。介绍了一种新技术,将PCD-CT扫描的逼真3D电影渲染叠加到同一患者的传统2D OPG图像上,通过显示血管等地下结构来增强OPG,并提高对3D解剖的理解。通过将3D解剖与2D图像相关联,该技术增强了临床医生对三维的理解,并可能有助于检测OPGs的偶然发现,如颌角钙化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photon-counting detector computed tomography meets orthopantomography: a cinematic rendering solution for superior structural visualization.

This technical note introduces an innovative technique for overlaying photorealistic three-dimensional (3D) visualization cinematic renderings of ultra-high-resolution photon-counting detector computed tomography (PCD-CT) scans onto conventional orthopantomography (OPG) images, enhancing visualization and aiding in the detection of subsurface structures and incidental findings. OPG is commonly used to assess dentomaxillofacial conditions, generating a summation image on a two-dimensional (2D) plane through a circular tomographic path. While useful for the initial evaluation, OPG has limitations, such as overlapping structures and restricted soft tissue visualization. More detailed analysis often requires 3D imaging modalities like cone beam computed tomography or conventional computed tomography. Recently introduced PCD-CT provides high-resolution images with lower noise, enhanced soft tissue contrast, and reduced artefacts. A novel technique of overlaying a photorealistic 3D cinematic rendering of a PCD-CT scan onto a conventional 2D OPG image of the same patient is introduced that enhances OPG by revealing subsurface structures such as blood vessels and improves understanding of the 3D anatomy. By associating the 3D anatomy with this 2D image, the technique enhances the clinician's understanding of three-dimensionality and may potentially aid in the detection of incidental findings in OPGs, such as calcifications in the angle of the jaw.

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