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首页> 外文期刊>Journal of materials science >Ultrastructural Observation Of Electron Irradiation Damage Of Lamellar Bone
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Ultrastructural Observation Of Electron Irradiation Damage Of Lamellar Bone

机译:层状骨电子辐照损伤的超微结构观察

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The ultrastructure of murine femoral lamellar bone and the effect of electron irradiation (200 kV) on collagen and mineral features were investigated using in situ high resolution transmission electron microscopy (HRTEM). Bands of collagen fibrils were mostly aligned parallel to the long axis of the bones, with some bands of fibrils inclined in longitudinal sections. The similarity of the ultrastructure between the longitudinal and transverse sections supports the rotated plywood structure of the lamellar bone. The collagen fibrils appeared damaged and the mineral crystals were coarsened after electron irradiation. Continuous diffraction rings became spotty and the contrast between rings and the background became sharper, further suggesting coarsening of apatite crystals and increased crystallinity after irradiation. No new phases were observed after irradiation. Both the damage to collagen and coarsening of apatite crystals can deteriorate the strength and integrity of bone, and may provide insight into fracture in patients who have undergone radiation therapy.
机译:使用原位高分辨率透射电子显微镜(HRTEM)研究了鼠股骨层状骨的超微结构以及电子辐照(200 kV)对胶原和矿物质特征的影响。胶原蛋白原纤维的条带大部分平行于骨头的长轴排列,有些原纤维条在纵向截面上倾斜。纵向和横向截面之间的超微结构的相似性支持了层状骨的旋转胶合板结构。电子辐照后,胶原蛋白原纤维似乎受损,矿物晶体粗化。连续的衍射环变得斑点,并且环与背景之间的对比度变得更加尖锐,这进一步表明磷灰石晶体的粗化和辐照后结晶度的提高。辐照后未观察到新相。胶原蛋白的损坏和磷灰石晶体的粗化都会降低骨骼的强度和完整性,并可能为接受放射治疗的患者的骨折提供洞察力。

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