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3D measurements in conventional X-ray imaging with RGB-D sensors

机译:具有RGB-D传感器的传统X射线成像中的3D测量

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摘要

A method for deriving 3D internal information in conventional X-ray settings is presented. It is based on the combination of a pair of radiographs from a patient and it avoids the use of X-ray-opaque fiducials and external reference structures. To achieve this goal, we augment an ordinary X-ray device with a consumer RGB-D camera. The patient' s rotation around the craniocaudal axis is tracked relative to this camera thanks to the depth information provided and the application of a modern surface-mapping algorithm. The measured spatial information is then translated to the reference frame of the X-ray imaging system. By using the intrinsic parameters of the diagnostic equipment, epipolar geometry, and X-ray images of the patient at different angles, 3D internal positions can be obtained. Both the RGB-D and Xray instruments are first geometrically calibrated to find their joint spatial transformation. The proposed method is applied to three rotating phantoms. The first two consist of an anthropomorphic head and a torso, which are filled with spherical lead bearings at precise locations. The third one is made of simple foam and has metal needles of several known lengths embedded in it. The results show that it is possible to resolve anatomical positions and lengths with a millimetric level of precision. With the proposed approach, internal 3D reconstructed coordinates and distances can be provided to the physician. It also contributes to reducing the invasiveness of ordinary X-ray environments and can replace other types of clinical explorations that are mainly aimed at measuring or geometrically relating elements that are present inside the patient's body.(C) 2017 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种在传统的X射线设置中导出3D内部信息的方法。它基于来自患者的一对射线照相的组合,并且它避免了使用X射线不透明基因和外部参考结构。为实现这一目标,我们使用消费者RGB-D相机增强普通的X射线设备。由于提供的深度信息和应用现代表面映射算法,相对于该相机跟踪患者周围的旋转旋转。然后将测量的空间信息转换为X射线成像系统的参考帧。通过使用诊断设备的内在参数,患者的诊断设备,末端几何和X射线图像以不同的角度,可以获得3D内部位置。首先是几何校准RGB-D和X射线仪器,以找到其关节空间转换。所提出的方法应用于三个旋转的幽灵。前两个由拟蒽型头部和躯干组成,其在精确的位置填充有球形铅轴承。第三个是由简单的泡沫制成的,并且具有嵌入其中的几种已知长度的金属针。结果表明,可以通过毫米的精度来解决解剖学位置和长度。利用所提出的方法,可以向医生提供内部3D重建坐标和距离。它还有助于降低普通X射线环境的侵犯性,并且可以代替其他类型的临床探索,这些临床探索主要旨在测量或几何相关元素,这些元素在患者身体内部存在。(C)2017 IPEM。 elsevier有限公司出版。保留所有权利。

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