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Characterization of Human Cortical and Trabecular Bone Structural Change by NMR and Micro-CT

机译:通过NMR和Micro-CT表征人的皮质和小梁骨结构变化

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The techniques of low-field pulsed proton nuclear magnetic resonance (NMR) spin relaxation and Micro-CT are described for assessment of structural changes of human cortical and trabecular bone in vitro. The technique involves spin-spin relaxation measurement and inversion spin-spin spectral analysis methods for NMR. From NMR measurement, the CPMG T2 relaxation data can be inverted to T2 relaxation distribution and this distribution then can be transformed to a pore size distribution with the longer relaxation times corresponding to larger pores. In Micro-CT measurement, each trabecular bone specimen was individually scanned using a micro-computed tomography (micro-CT) system and 12 micron dimensionally-isotropic voxels were reconstructed. Due to the resolution limitation, Micro-CT measurement on cortical bone was not success, however, NMR measurement was success for both cortical and trabecular bones.
机译:描述了低场脉冲质子核磁共振(NMR)自旋弛豫技术和Micro-CT技术,用于评估体外人类皮层和小梁骨的结构变化。该技术涉及自旋-自旋弛豫测量和用于NMR的自旋-自旋谱分析方法。通过NMR测量,可以将CPMG T2弛豫数据转化为T2弛豫分布,然后可以将该分布转换为孔径分布,其中较长的弛豫时间对应于较大的孔隙。在Micro-CT测量中,使用微计算机断层扫描(micro-CT)系统分别扫描每个小梁骨标本,并重建12微米尺寸各向同性的体素。由于分辨率的限制,皮质骨的Micro-CT测量不成功,但是,皮质骨和小梁骨的NMR测量都是成功的。

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