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Biomedical research at LIPSION - Present state and future developments

机译:LIPSION的生物医学研究-现状和未来发展

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摘要

Since its commissioning in 1998 the high energy ion nanoprobe LIPSION has been developed into a versatile tool for a variety of applications in biomedical research. It includes quantitative trace element analysis with sub-micron spatial resolution and 3D-element imaging, as well as 2D- and 3D-microscopy of density distributions. The analytical methods base on particle induced X-ray emission spectrometry (PIXE) and PIXE-tomography, Rutherford backscattering spectrometry (RBS), as well as scanning transmission ion microscopy (STIM) and STIM-tomography.The continuous developments led to improved capabilities for trace element analysis. For sub-micron analysis the spatial resolution could be improved to 0.3 μm for high resolution work and to 0.5 μm for routine analysis. On the other hand, LIPSION was optimized for high sample throughput in quantitative element imaging maintaining a lateral resolution of 1 -2 μm. Recently the methods of PIXE- and STIM-tomography of biological specimens have been extended to limited angle tomography to avoid the complicated preparation of free-standing samples.Besides its analytical applications, the nanoprobe is also used for targeted irradiation of living cells with counted single ions for radiobiological research. It is capable of irradiating up to 20,000 cells per hour. Furthermore, we have developed a technique to achieve confined cell growth based on the proton beam writing technique (PBW) and agar. The paper presents an overview of the current biomedical research fields at LIPSION and gives an outlook on prospective developments.
机译:自1998年投入使用以来,高能离子纳米探针LIPSION已发展成为一种多功能工具,可用于生物医学研究的各种应用。它包括具有亚微米空间分辨率和3D元素成像的定量痕量元素分析,以及密度分布的2D和3D显微镜。分析方法基于粒子诱导X射线发射光谱(PIXE)和PIXE断层扫描,卢瑟福背散射光谱(RBS)以及扫描透射离子显微镜(STIM)和STIM断层扫描。微量元素分析。对于亚微米分析,对于高分辨率工作,空间分辨率可以提高到0.3μm,对于常规分析,空间分辨率可以提高到0.5μm。另一方面,LIPSION已针对定量元素成像中的高样品通量进行了优化,以保持1-2μm的横向分辨率。近年来,生物标本的PIXE和STIM断层摄影方法已扩展到有限角度断层摄影技术,从而避免了制备独立样品的复杂过程。除其分析应用外,纳米探针还用于单细胞计数的活细胞靶向照射。离子用于放射生物学研究。它每小时可以照射多达20,000个细胞。此外,我们已经开发了一种基于质子束写入技术(PBW)和琼脂来实现受限细胞生长的技术。本文概述了LIPSION当前的生物医学研究领域,并对未来的发展进行了展望。

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  • 来源
    《Nuclear Instruments & Methods in Physics Research》 |2011年第20期|p.2254-2259|共6页
  • 作者单位

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany University of North Texas, Department of Physics, 1155 Union Circle, Denton, TX 76203, USA;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

    Universitiit Leipzig, Institut fur Experimented Physik II, Linnestr. 5, 04103 Leipzig, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LIPSION; trace element analysis; neuromelanin; STIM; PIXE;

    机译:力普;微量元素分析;神经黑色素STIM;像素;

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