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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Investigation of elemental distribution in human femoral head by PIXE and SRXRF microprobe
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Investigation of elemental distribution in human femoral head by PIXE and SRXRF microprobe

机译:用PIXE和SRXRF微探针研究人股骨头中元素的分布

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In order to study the distribution and possible degenerative processes inducing the loss of inorganic substances in bone and to provide a scientific basis for the prevention and therapy of osteoporosis, proton induced X-ray emission (PIXE) method is used for the determination of elemental concentrations in femoral heads from five autopsies and seven patients with femoral neck fractures. Synchrotron radiation X-ray fluorescence (SRXRF) microprobe analysis technique is used to scan a slice of the femoral head from its periphery to its center, via cartilage, compact and spongy zones. The specimen preparation and experiment procedure are described in detail. The results show that the concentrations of P, Ca, Fe, Cu, Sr in the control group are higher than those in the patient group, but the concentrations of S, K, Zn, Mn are not significantly different. The quantitative results of elemental distribution, such as Ca, P, K, Fe, Zn, Sr and Pb in bone slice tissue including cartilage, substantial compact and substantial spongy, are investigated. The data obtained show that the concentrations of Ca, P, K, (the major elements of bone composition), are obviously low in both spongy and cartilage zones in the patient group, but there are no remarkable differences in the compact zone. Combined with the correlations between P, K, Zn, Sr and Ca, the loss mechanism of minerals and the physiological functions of some metal elements in bone are also discussed.
机译:为了研究引起骨骼中无机物质损失的分布和可能的退化过程,并为骨质疏松症的预防和治疗提供科学依据,质子诱导X射线发射(PIXE)方法用于测定元素浓度进行5例尸检和7例股骨颈骨折患者的股骨头。同步辐射X射线荧光(SRXRF)微探针分析技术用于通过软骨,致密和海绵状区域从股骨周围到中心扫描切片。详细描述了样品制备和实验步骤。结果显示,对照组中P,Ca,Fe,Cu,Sr的浓度高于患者组,但S,K,Zn,Mn的浓度无显着差异。研究了骨切片组织中包括软骨,基本紧密和基本海绵状的元素分布(例如Ca,P,K,Fe,Zn,Sr和Pb)的定量结果。获得的数据表明,在患者组的海绵状区域和软骨区域中,Ca,P,K(骨骼组成的主要元素)的浓度均明显较低,但致密区域中没有显着差异。结合磷,钾,锌,锶和钙的相关性,探讨了矿物质的损失机理和骨骼中某些金属元素的生理功能。

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