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Multi-species beam hardening calibration device for x-ray microtomography

机译:用于X射线微微图谱的多物种光束硬化校准装置

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Impact-source X-ray microtomography (XMT) is a widely-used benchtop alternative to synchrotron radiation microtomography. Since X-rays from a tube are polychromatic, however, greyscale ‘beam hardening' artefacts are produced by the preferential absorption of low-energy photons in the beam path. p /pA multi-material ‘carousel' test piece was developed to offer a wider range of X-ray attenuations from well-characterised filters than single-material step wedges can produce practically, and optimization software was developed to produce a beam hardening correction by use of the Nelder-Mead optimization method, tuned for specimens composed of other materials (such as hydroxyapatite [HA] or barium for dental applications.) The carousel test piece produced calibration polynomials reliably and with a significantly smaller discrepancy between the calculated and measured attenuations than the calibration step wedge previously in use. p /pAn immersion tank was constructed and used to simplify multi-material samples in order to negate the beam hardening effect of low atomic number materials within the specimen when measuring mineral concentration of higher-Z regions. When scanned in water at an acceleration voltage of 90 kV a Scanco AG hydroxyapatite / poly(methyl methacrylate) calibration phantom closely approximates a single-material system, producing accurate hydroxyapatite concentration measurements. This system can then be corrected for beam hardening for the material of interest.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:冲击源X射线MICROROMOMACT(XMT)是一种广泛使用的台式替代方案,用于同步辐射微微图谱。然而,由于管的X射线是多色的,但是,通过在光束路径中的低能量光子的优先吸收来产生灰度的“光束硬化”艺术品。 > 开发了一种多材料的“转盘”试验片,以提供更广泛的X射线衰减,而不是单材料步楔,实际生产的优化软件产生优化软件通过使用Nelder-Mead优化方法的光束硬化校正,调节由其他材料(如羟基磷灰石[HA]或牙科应用钡的样品进行调节。转盘试验片可靠地产生校准多项式,并且之间的显着差异计算和测量的衰减比以前使用的校准步骤楔形。浸渍罐构造并用于简化多材料样品,以便在测量高Z区域的矿物浓度时否定在样本内的低原子数材料的光束硬化效果。当在90 kV的加速电压下扫描水中Scanco Ag羟基磷灰石/聚(甲基丙烯酸甲酯)校准模型时,近似近似单材料系统,生产精确的羟基磷灰石浓度测量。然后可以纠正该系统的光束硬化,用于感兴趣的材料。©(2012)照片光学仪表工程师的版权协会(SPIE)。仅供个人使用的摘要下载。

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