Zeiss Global Centre, School of Engineering, University of Portsmouth, Portsmouth, UK.
Diamond Light Source, Oxfordshire OX11 0QX, UK.
J Mech Behav Biomed Mater. 2018 Dec;88:109-119. doi: 10.1016/j.jmbbm.2018.08.012. Epub 2018 Aug 16.
The use of synchrotron radiation micro-computed tomography (SR-microCT) is becoming increasingly popular for studying the relationship between microstructure and bone mechanics subjected to in situ mechanical testing. However, it is well known that the effect of SR X-ray radiation can considerably alter the mechanical properties of bone tissue. Digital volume correlation (DVC) has been extensively used to compute full-field strain distributions in bone specimens subjected to step-wise mechanical loading, but tissue damage from sequential SR-microCT scans has not been previously addressed. Therefore, the aim of this study is to examine the influence of SR irradiation-induced microdamage on the apparent elastic properties of trabecular bone using DVC applied to in situ SR-microCT tomograms obtained with different exposure times. Results showed how DVC was able to identify high local strain levels (> 10,000 µε) corresponding to visible microcracks at high irradiation doses (~ 230 kGy), despite the apparent elastic properties remained unaltered. Microcracks were not detected and bone plasticity was preserved for low irradiation doses (~ 33 kGy), although image quality and consequently, DVC performance were reduced. DVC results suggested some local deterioration of tissue that might have resulted from mechanical strain concentration further enhanced by some level of local irradiation even for low accumulated dose.
同步辐射微计算机断层扫描(SR-microCT)在研究原位力学测试下微观结构与骨力学之间的关系方面的应用越来越受欢迎。然而,众所周知,SR X 射线辐射的影响会显著改变骨组织的力学性能。数字体积相关(DVC)已广泛用于计算逐步机械加载下骨标本的全场应变分布,但尚未解决来自连续 SR-microCT 扫描的组织损伤问题。因此,本研究的目的是使用 DVC 检查 SR 辐照诱导的微损伤对小梁骨表观弹性特性的影响,该方法应用于具有不同曝光时间的原位 SR-microCT 断层扫描图。结果表明,尽管表观弹性特性保持不变,DVC 如何能够识别高局部应变水平(>10000µε),这些应变水平对应于高辐照剂量(230 kGy)下的可见微裂纹。对于低辐照剂量(33 kGy),未检测到微裂纹且保留了骨塑性,尽管图像质量和因此,DVC 性能降低。DVC 结果表明,组织的局部恶化可能是由于机械应变集中所致,即使对于低累积剂量,局部辐照也会进一步增强这种集中。