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首页> 外文期刊>Journal of Cranio-Maxillofacial Surgery >High resolution imaging of craniofacial bone specimens by flat-panel volumetric computed tomography.
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High resolution imaging of craniofacial bone specimens by flat-panel volumetric computed tomography.

机译:高分辨率的颅面骨标本通过平板体积计算机断层扫描成像。

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摘要

INTRODUCTION: The prototype flat-panel volumetric computed tomograph (fpvCT) provides a new 3D imaging technology with detailed high resolution by using large-area flat-panel X-ray detectors. The object of this study was to evaluate the benefit of high resolution imaging using the experimental fpvCT to visualise different types of human craniofacial bone pathology. The study proved the feasibility of performing an intraoperative evaluation of free margins in bone malignancies using fpvCT. MATERIAL AND METHODS: In this study, 35 bone specimens of various pathological types were examined by fpvCT. fpvCT data were compared with pre-operative multislice clinical CT images as well as with post-operative histological findings. RESULTS: Bone tumours can be visualised with their specific pathological architecture and infiltration structure faster and more precisely by fpvCT than by multislice CT. The analysis of the resection margins supports the surgical procedure intraoperatively, especially when an immediate reconstruction with bone transplantation is carried out. DISCUSSION: The fpvCT has a superior image quality when compared with clinical CT systems. The imaging of the bone structure itself has been shown to be useful for the interpretation of osseous resection borders. Furthermore, it can facilitate the diagnosis of tumour progression, especially in areas that are difficult to access, such as the base of the skull.
机译:简介:原型平板体积计算机断层扫描仪(fpvCT)通过使用大面积平板X射线探测器提供了具有详细高分辨率的新3D成像技术。这项研究的目的是评估使用实验性fpvCT可视化不同类型的人类颅面骨病理学的高分辨率成像的益处。这项研究证明了使用fpvCT对骨恶性肿瘤进行术中游离边缘评估的可行性。材料与方法:在这项研究中,通过fpvCT检查了35种不同病理类型的骨标本。将fpvCT数据与术前多层临床CT图像以及术后组织学检查结果进行比较。结果:与多层CT相比,fpvCT可以更快,更准确地显示出骨肿瘤的特定病理结构和浸润结构。切除切缘的分析为手术过程中的手术提供了支持,尤其是在进行骨移植即时重建时。讨论:与临床CT系统相比,fpvCT具有卓越的图像质量。骨骼结构本身的成像已被证明可用于解释骨切除边界。此外,它可以促进肿瘤进展的诊断,尤其是在难以接近的区域,例如颅底。

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