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基于同步辐射的不同年龄大鼠骨的 X 射线衍射。

Synchrotron-based XRD from rat bone of different age groups.

机构信息

Science Based Applications to Engineering (SBAI), Physics Division, University of Rome "La Sapienza", Via Scarpa 10, 00161 Roma, Italy.

Science Based Applications to Engineering (SBAI), Physics Division, University of Rome "La Sapienza", Via Scarpa 10, 00161 Roma, Italy.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 May 1;74:207-218. doi: 10.1016/j.msec.2016.11.136. Epub 2016 Dec 3.

Abstract

Synchrotron-based XRD spectra from rat bone of different age groups (w, 56 w and 78w), lumber vertebra at early stages of bone formation, Calcium hydroxyapatite (HAp) [Ca(PO)(OH)] bone fill with varying composition (60% and 70%) and bone cream (35-48%), has been acquired with 15keV synchrotron X-rays. Experiments were performed at Desy, Hamburg, Germany, utilizing the Resonant and Diffraction beamline (P9), with 15keV X-rays (λ=0.82666 A). Diffraction data were quantitatively analyzed using the Rietveld refinement approach, which allowed us to characterize the structure of these samples in their early stages. Hydroxyapatite, received considerable attention in medical and materials sciences, since these materials are the hard tissues, such as bone and teeth. Higher bioactivity of these samples gained reasonable interest for biological application and for bone tissue repair in oral surgery and orthopedics. The results obtained from these samples, such as phase data, crystalline size of the phases, as well as the degree of crystallinity, confirm the apatite family crystallizing in a hexagonal system, space group P6/m with the lattice parameters of a=9.4328Å and c=6.8842Å (JCPDS card #09-0432). Synchrotron-based XRD patterns are relatively sharp and well resolved and can be attributed to the hexagonal crystal form of hydroxyapatite. All the samples were examined with scanning electron microscope at an accelerating voltage of 15kV. The presence of large globules of different sizes is observed, in small age groups of the rat bone (8w) and lumber vertebra (LV), as distinguished from, large age groups (56 and 78w) in all samples with different magnification, reflects an amorphous phase without significant traces of crystalline phases. Scanning electron microscopy (SEM) was used to characterize the morphology and crystalline properties of Hap, for all the samples, from 2 to 100μm resolution.

摘要

利用德国汉堡 DESY 的共振与衍射线束线站 P9 进行了实验,采用 15keV 的同步加速器 X 射线(λ=0.82666Å),获得了来自不同年龄段大鼠骨(w、56w 和 78w)、早期骨形成的腰椎骨、具有不同组成(60%和 70%)的羟磷灰石(HAp)[Ca(PO)(OH)]骨填充物和骨膏(35-48%)的基于同步加速器的 XRD 光谱。这些实验样本都经过了定量分析,使用了 Rietveld 精修方法,这种方法使我们能够在早期阶段对这些样本的结构进行特征分析。羟磷灰石在医学和材料科学中受到了广泛关注,因为这些材料是硬组织,如骨骼和牙齿。这些样本具有更高的生物活性,这使其在生物应用和口腔外科及矫形领域的骨组织修复中得到了合理的关注。从这些样本中获得的结果,例如相数据、各相的结晶度大小以及结晶度程度,都证实了磷灰石家族在六方晶系、空间群 P6/m 中结晶,晶格参数为 a=9.4328Å 和 c=6.8842Å(JCPDS 卡片#09-0432)。基于同步加速器的 XRD 图谱相对尖锐且分辨率良好,这归因于羟磷灰石的六方晶型。所有样本都在 15kV 的加速电压下用扫描电子显微镜进行了检查。在大鼠骨(8w)和腰椎骨(LV)的小年龄段以及所有样本的大年龄段(56 和 78w)中,都观察到大小不一的大液滴,这表明存在无定形相,没有明显的结晶相痕迹。扫描电子显微镜(SEM)用于对所有样本的 Hap 进行形貌和结晶性能的特征分析,分辨率为 2 至 100μm。

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