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首页> 外文期刊>Journal of Microscopy >Sequential quantitative X-ray elemental imaging of frozen-hydrated and freeze-dried biological bulk samples in the SEM.
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Sequential quantitative X-ray elemental imaging of frozen-hydrated and freeze-dried biological bulk samples in the SEM.

机译:在SEM中对冷冻水合和冷冻干燥的生物大宗样品进行连续的定量X射线元素成像。

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摘要

Planed frozen-hydrated (FH) bulk biological samples of chicken retina were analysed by X-ray elemental imaging in a scanning electron microscope and reanalysed after freeze-drying in the microscope column. Sequential elemental imaging of the same bulk sample in this way provides improved information on element distributions. There was no evidence of element redistribution during the freeze-drying process. Quantitative elemental images were obtained and interpreted to deduce relative and absolute element concentrations in different regions of the retina. Water concentrations were determined from the difference in oxygen concentrations at 15 kV and 5 kV in FH and freeze-dried (FD) samples, respectively. Two accelerating voltages were used to maintain similar X-ray excitation volumes. Water concentrations were also estimated by relating measured oxygen concentration in FH samples to the concentration of oxygen in solutions of a generalized protein in water and by comparing concentrations of phosphorous or sulphur in the FH and FD states.
机译:在扫描电子显微镜中通过X射线元素成像分析计划化的鸡视网膜冷冻水合(FH)散装生物样品,并在显微镜下冷冻干燥后重新分析。以这种方式对相同的大量样品进行顺序元素成像可提供有关元素分布的改进信息。没有证据表明在冷冻干燥过程中元素会重新分布。获得定量的元素图像并解释以推断出视网膜不同区域中的相对和绝对元素浓度。根据FH和冻干(FD)样品中15 kV和5 kV的氧气浓度差异确定水浓度。使用两个加速电压来维持相似的X射线激发体积。通过将FH样品中测得的氧气浓度与水中广义蛋白质溶液中的氧气浓度相关联,并比较FH和FD状态下的磷或硫浓度,可以估算水的浓度。

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