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Implementation of a double-grating interferometer for phase-contrast computed tomography in a conventional system nanotom® m

机译:在传统系统Nanotom®M中的相位对比计算机断层扫描的双光栅干涉仪的实现

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摘要

Visualizing the internal architecture of large soft tissue specimens within the laboratory environment in a label-free manner is challenging, as the conventional absorption-contrast tomography yields a poor contrast. In this communication, we present the integration of an X-ray double-grating interferometer (XDGI) into an advanced, commercially available micro computed tomography system nanotom® m with a transmission X-ray source and a micrometer-sized focal spot. The performance of the interferometer is demonstrated by comparing the registered three-dimensional images of a human knee joint sample in phase- and conventional absorption-contrast modes. XDGI provides enough contrast (1.094 ± 0.152) to identify the cartilage layer, which is not recognized in the conventional mode (0.287 ± 0.003). Consequently, the two modes are complementary, as the present XDGI set-up only reaches a spatial resolution of (73 ± 6) μm, whereas the true micrometer resolution in the absorption-contrast mode has been proven. By providing complimentary information, XDGI is especially a supportive quantitative method for imaging soft tissues and visualizing weak X-ray absorbing species in the direct neighborhood of stronger absorbing components at the microscopic level.
机译:以无标签的方式可视化实验室环境内的大型软组织标本的内部架构是具有挑战性的,因为传统的吸收 - 对比度断层摄影产生较差的对比度。在这种通信中,我们将X射线双光栅干涉干涉仪(XDGI)集成到先进的市售微计算机断层扫描系统Nanotom®M中,具有传输X射线源和千分尺寸的焦点。通过将人膝关节样品的登记的三维图像与相位和常规的吸收 - 对比模式进行比较来证明干涉仪的性能。 XDGI提供足够的对比度(1.094±0.152)以识别软骨层,该软骨层在传统模式下不识别(0.287±0.003)。因此,两种模式是互补的,因为当前的XDGI设置仅达到(73±6)μm的空间分辨率,而在吸收 - 对比模式中的真正的千分尺分辨率已经被证明。通过提供互补信息,XDGI特别是用于在微观水平处的较强吸收组分的直接邻域中成像和可视化弱X射线吸收物种的支持性定量方法。

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