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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Synchrotron-based x-ray fluorescence applied to invertebrates to investigate the role of essential trace elements in a biological process
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Synchrotron-based x-ray fluorescence applied to invertebrates to investigate the role of essential trace elements in a biological process

机译:基于同步加速器的x射线荧光应用于无脊椎动物,以研究必需微量元素在生物过程中的作用

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The fluorescence spectra have been detected by exciting invertebrate individual structures, such as external shell, embedded soft-tissue and operculum, with 8, 10 and 12 keV synchrotron x-rays, to find out about the accumulation of trace elements and biological processes in a small animal shell. A new hard x-ray micro-spectroscopy beamline facility, X27A, available at National Synchrotron Light Source, Brookhaven National Laboratory, USA, was utilized. It provided the primary beam in a small spot of the order of ~10 μm, for focusing. With this spatial resolution and high flux throughput, the synchrotron-induced x-ray fluorescent intensities were measured using a liquid-nitrogen-cooled 13-element energy-dispersive high-purity germanium detector. The fluorescence spectrum arising from the sample as a whole was assessed. Calcium is predominant in these aquatic organisms and a normal constituent of all living matter. The percentage of calcium is lower in the soft tissue, as distinguished from other samples, and the contributions of Cu and Zn are considerable. The latter possibility is due to some ground-based minerals, which may enter the sample when it traverses the land, and get attached to the soft tissue. This way, the accumulation of biominerals will be enhanced in addition to the originally presented ones. The presence of other bioactive trace elements such as Ti, Cr, Mn, Fe, Ni, Cu, Zn, As, Rb and Sr was observed in low proportions. Some of these trace elements, for example, Mn, Fe, Cu, Rb and Sr, may induce toxic effects and the other potentially toxic elements, Ni and As, induce disorder in the organism if present in higher and lower proportions.
机译:通过激发8、10和12 keV同步加速器X射线激发无脊椎动物的单个结构(例如外壳,嵌入的软组织和盖)来检测荧光光谱,以了解痕量元素的积累和生物过程。小动物壳。利用了一种新的硬X射线显微光谱光束线设备X27A,该设备可从美国布鲁克黑文国家实验室的国家同步加速器光源获得。它在约10μm量级的小点上提供了主光束以进行聚焦。具有这种空间分辨率和高通量通量,使用液氮冷却的13元素能量分散高纯度锗检测器测量了同步加速器诱导的X射线荧光强度。评估从样品整体产生的荧光光谱。钙在这些水生生物中占主导地位,是所有生物的正常组成部分。与其他样品不同,软组织中的钙百分比较低,并且铜和锌的贡献很大。后一种可能性是由于某些地面矿物造成的,这些矿物在穿过地面时可能会进入样本并附着在软组织上。这样,除了最初提出的矿物质外,还将增加生物矿物质的积累。以低比例观察到其他生物活性微量元素的存在,例如Ti,Cr,Mn,Fe,Ni,Cu,Zn,As,Rb和Sr。这些微量元素中的某些元素,例如Mn,Fe,Cu,Rb和Sr,可能会引起毒性作用,而其他潜在的毒性元素Ni和As会以较高和较低的比例引起机体疾病。

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