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Multiscale dual energy micro-CT for imaging using iodinated and gold nanoparticles

机译:用于使用碘化和金纳米颗粒成像的多尺度双能量微型CT

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Dual energy (DE) micro-CT shows great potential to provide accurate tissue composition by utilizing the energy dependence of x-ray attenuation in different materials. This is especially well-suited for pre-clinical imaging using nanoparticle-based contrast agents in situations where quantitative material decomposition helps probe processes which are otherwise limited by poor soft tissue contrast. We have previously proposed optimal in vivo DE micro-CT methods for imaging using iodinated and gold nanoparticles. However, in vivo studies are limited in spatial resolution due to constraints in sampling time and radiation dose. Ex vivo dual energy imaging can provide much higher resolution and can serve as a validation of in vivo studies. Our study proposes multiscale in vivo and ex vivo DE micro-CT of the same subjects using two in-house developed micro-CT systems. We use a dual source micro-CT system to scan a mouse that has been injected with both iodinated and gold nanoparticles for in vivo DE scanning at 63 micron resolution. The same mouse is then scanned ex vivo with DE on a separate single source micro-CT system at a spatial resolution of 22 microns. We perform reconstructions using filtered back projection followed by noise reduction via joint bilateral filtration. A dynamic flat field correction method has been applied on the ex vivo micro-CT data to correct for image artifacts. A DE post-reconstruction decomposition is used to create iodine and gold material maps which are used to measure accumulation of contrast agent within the body. We evaluate challenges associated with each imaging methodology. Our results compare image quality and material maps. Overall, our methods represent a substantial tool for multiscale DE micro-CT imaging using well-characterized contrast agents and serving various applications in biological research.
机译:双能量(DE)微型CT通过利用不同材料中的X射线衰减的能量依赖性提供了良好的组织组合物的潜力很大。这尤其适用于使用基于纳米粒子的造影剂在定量材料分解有助于探针过程的临床上成像,有助于探针过程受到差的软组织对比度。我们之前已经提出了使用碘化和金纳米颗粒成像的体内微型CT方法的最佳方法。然而,由于采样时间和辐射剂量的约束,体内研究受到空间分辨率的限制。前体内能量成像可以提供更高的分辨率,可以作为体内研究的验证。我们的研究提出了使用两个内部开发的Micro-CT系统的相同主题的Vivo和Exvivo de Micro-CT的MultiScale。我们使用双源微CT系统来扫描鼠标,该鼠标被碘化和金纳米颗粒注射,用于以63微米的分辨率进行体内扫描。然后将相同的鼠标在单独的单源微CT系统上以22微米的空间分辨率扫描离体。我们使用过滤后投影执行重建,然后通过联合双侧过滤进行降噪。在ExVivo Micro-CT数据上应用了动态平坦场校正方法,以校正图像伪影。 DE重建后分解用于产生碘和金材料图,用于测量体内造影剂的积累。我们评估与每种成像方法相关的挑战。我们的结果比较图像质量和物料地图。总的来说,我们的方法代表了使用良好特征的造影剂和在生物研究中提供各种应用的多尺度De Micro-CT成像的大量工具。

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