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On the effect of X-ray irradiation on the deformation and fracture behavior of human cortical bone.

机译:X射线辐射对人皮质骨的变形和断裂行为的影响。

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In situ mechanical testing coupled with imaging using high-energy synchrotron X-ray diffraction or tomography is gaining in popularity as a technique to investigate micrometer and even sub-micrometer deformation and fracture mechanisms in mineralized tissues, such as bone and teeth. However, the role of the irradiation in affecting the nature and properties of the tissue is not always taken into account. Accordingly, we examine here the effect of X-ray synchrotron-source irradiation on the mechanistic aspects of deformation and fracture in human cortical bone. Specifically, the strength, ductility and fracture resistance (both work-of-fracture and resistance-curve fracture toughness) of human femoral bone in the transverse (breaking) orientation were evaluated following exposures to 0.05, 70, 210 and 630 kGrays (kGy) irradiation. Our results show that the radiation typically used in tomography imaging can have a major and deleterious impact on the strength, post-yield behavior and fracture toughness of cortical bone, with the severity of the effect progressively increasing with higher doses of radiation. Plasticity was essentially suppressed after as little as 70 kGy of radiation; the fracture toughness was decreased by a factor of five after 210 kGy of radiation. Mechanistically, the irradiation was found to alter the salient toughening mechanisms, manifest by the progressive elimination of the bone's capacity for plastic deformation which restricts the intrinsic toughening from the formation "plastic zones" around crack-like defects. Deep-ultraviolet Raman spectroscopy indicated that this behavior could be related to degradation in the collagen integrity.
机译:结合使用高能同步加速器X射线衍射或断层扫描成像的原位机械测试作为研究微米级甚至亚微米级矿化组织(例如骨骼和牙齿)的变形和断裂机制的技术,已越来越普及。然而,并不总是考虑辐照在影响组织的性质和特性方面的作用。因此,我们在这里检查X射线同步加速器源辐照对人皮质骨变形和断裂的力学方面的影响。具体而言,在暴露于0.05、70、210和630 kGrays(kGy)之后,评估了人类股骨在横向(断裂)方向上的强度,延展性和断裂强度(断裂功和断裂曲线韧性)。辐射。我们的结果表明,通常在断层扫描成像中使用的辐射会对皮质骨的强度,屈服后行为和断裂韧性产生重大而有害的影响,随着辐射剂量的增加,影响的严重性会逐渐增加。在低至70 kGy的辐射后,可塑性基本上被抑制; 210 kGy辐射后,断裂韧性降低了五倍。从机理上讲,发现辐照改变了显着的增韧机制,表现为逐渐消除骨骼的塑性变形能力,从而限制了裂纹状缺陷周围“塑性区”形成的固有增韧。深紫外拉曼光谱表明这种行为可能与胶原蛋白完整性的下降有关。

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