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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >AN AUTOMATIC ICP-BASED 2D-3D REGISTRATION METHOD FOR A HIGH-SPEED BIPLANAR VIDEORADIOGRAPHY IMAGING SYSTEM
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AN AUTOMATIC ICP-BASED 2D-3D REGISTRATION METHOD FOR A HIGH-SPEED BIPLANAR VIDEORADIOGRAPHY IMAGING SYSTEM

机译:一种基于ICP的高速双向录像机成像系统的基于ICP的2D-3D注册方法

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High-Speed Biplanar Videoradiography (HSBV) is an X-ray based non-invasive imaging system that can be used to derive dynamic bony translations and rotations. The 2D-3D registration process matches a 3D bone model acquired from magnetic resonance imaging (MRI) or computed tomography (CT) scans with the 2D X-ray image pairs. This study focuses on the registration of MRI data as it can acquire detailed soft tissue contrast that cannot be easily discerned in CT scans. A novel 2D-3D registration method is reported in this paper that is suitable for the MRI-based bone models with high precision and high efficiency. In addition, an automatic initialization procedure with 64 starting poses is established to avoid user intervention in the registration. The method has been tested using the HSBV image sequence of a knee joint during walking. Thirty-five consecutive poses from the sequence were tested for the registration, and 50 non-consecutive poses randomly selected from the sequence were tested for the automatic initialization. The registration precision for each axis was 0.49 to 0.54 mm. For the initialization validation test, 48 over 50 frames were successfully initialized and two failed due to portions of the joint falling outside of the field-of-view of the system. The average time for each initialization is only about 6 min. The improved 2D-3D registration will allow determination of precise 3D kinematic parameters with high efficiency. These kinematic parameters can be used to calculate joint cartilage contact mechanics that provide insight into the mechanical processes and mechanisms of joint degeneration or pathology.
机译:高速双向录像(HSBV)是一种基于X射线的非侵入式成像系统,可用于导出动态骨晶片和旋转。 2D-3D注册过程与从磁共振成像(MRI)或计算机断层扫描(CT)扫描的3D骨模型与2D X射线图像对匹配。本研究重点介绍MRI数据的登记,因为它可以获得在CT扫描中不易辨别的详细软组织对比。本文报道了一种新的2D-3D注册方法,适用于高精度和高效率的MRI基骨模型。此外,建立了具有64个启动姿势的自动初始化过程,以避免用户干预注册。在步行期间使用膝关节的HSBV图像序列来测试该方法。从序列中进行了三十五个连续的姿势进行注册,并且测试了从序列中随机选择的50个非连续姿势进行自动初始化。每个轴的登记精度为0.49至0.54毫米。对于初始化验证测试,成功初始化了48个超过50帧,并且由于系统视野外的关节部分的部分,因此两个失败。每个初始化的平均时间仅为6分钟。改进的2D-3D注册将允许高效地确定精确的3D运动参数。这些运动学参数可用于计算联合软骨接触力学,该机械能够深入了解机械过程和联合退化或病理机制。

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