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Image registration of proximal femur with substantial bone changes: application in 3D visualization of bone loss of astronauts after long-duration spaceflight

机译:近端股骨的图像登记,具有实质性骨骼变化:长时间空间后宇航员骨质损失3D可视化的应用

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We recently studied bone loss in crewmembers making 4 to 6 months flights on the International Space Station. We employed Quantitative Computed Tomography (QCT) technology (Lang et. al., J Bone Miner Res. 2004; v. 19, p. 1006), which made measurements of both cortical and trabecular bone loss that could not be obtained by using 2-dimensional dual x-ray absorptiometry (DXA) imaging technology. To further investigate the bone loss after spaceflight, we have developed image registration technologies to align serial scans so that bone changes can be directly visualized in a subregional level, which can provide more detailed information for understanding bone physiology during long-term spaceflight. To achieve effective and robust registration when large bone changes exist, we have developed technical adaptations to standard registration methods. Our automated image registration is mutual-information based. We have applied an automatically adaptive binning method in calculating the mutual information. After the pre- and post-flight scans are geometrically aligned, the interior bone changes can be clearly visualized. Image registration can also be applied to Finite Element Modeling (FEM) to compare bone strength change, where consistent loading conditions must be applied to serial scans.
机译:我们最近在国际空间站的航班中致电4到6个月的航班。我们采用了定量计算断层扫描(QCT)技术(Lang et.Al。,J Bone Miner Res.2004; v。19,p.1006),这使得通过使用2无法获得皮质和小梁骨质损失的测量 - 二维双X射线吸收计(DXA)成像技术。为了进一步调查空间后的骨质损失,我们已经开发了图像登记技术以对准串行扫描,使得骨骼变化可以在次区域中直接可视化,这可以在长期空间期间提供更详细的了解骨生理学的信息。为了实现有效且稳健的注册,当存在大骨骼变化时,我们已经开发了对标准注册方法的技术适应性。我们的自动图像注册是基于相互信息的。我们在计算互信息时应用了一个自动自适应的分衬方法。在飞行前和飞行后的扫描是几何上对齐之后,内部骨骼变化可以清晰可视化。图像登记也可以应用于有限元建模(FEM)以比较骨骼强度变化,其中一致的负载条件必须应用于串行扫描。

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