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首页> 外文期刊>Journal of synchrotron radiation >Methodological challenges of optical tweezers-based X-ray fluorescence imaging of biological model organisms at synchrotron facilities
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Methodological challenges of optical tweezers-based X-ray fluorescence imaging of biological model organisms at synchrotron facilities

机译:基于光镊的同步加速器设施中的生物模型生物的X射线荧光成像的方法挑战

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摘要

Recently, a radically new synchrotron radiation-based elemental imaging approach for the analysis of biological model organisms and single cells in their natural in vivo state was introduced. The methodology combines optical tweezers (OT) technology for non-contact laser-based sample manipulation with synchrotron radiation confocal X-ray fluorescence (XRF) microimaging for the first time at ESRF-ID13. The optical manipulation possibilities and limitations of biological model organisms, the OT setup developments for XRF imaging and the confocal XRF-related challenges are reported. In general, the applicability of the OT-based setup is extended with the aim of introducing the OT XRF methodology in all research fields where highly sensitive in vivo multi-elemental analysis is of relevance at the (sub)micrometre spatial resolution level.
机译:最近,引入了一种全新的基于同步加速器辐射的元素成像方法,用于分析处于自然体内状态的生物模型生物和单细胞。该方法首次在ESRF-ID13上将用于非接触式激光样品处理的光镊(OT)技术与同步加速器共聚焦X射线荧光(XRF)显微成像技术结合在一起。报告了生物模型生物的光学操纵可能性和局限性,用于XRF成像的OT装置开发以及与XRF共聚焦的挑战。通常,基于OT的设置的适用性得到了扩展,目的是在所有高度敏感的体内多元素分析与(亚)微米空间分辨率水平相关的所有研究领域中引入OT XRF方法。

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