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Optimization of a retrospective technique for respiratory-gated high speed micro-CT of free-breathing rodents

机译:自由呼吸啮齿动物呼吸门高速微CT回顾技术的优化

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摘要

The objective of this study was to develop a technique for dynamic respiratory imaging using retrospectively gated high-speed micro-CT imaging of free-breathing mice. Free-breathing C57B16 mice were scanned using a dynamic micro-CT scanner, comprising a flat-panel detector mounted on a slip-ring gantry. Projection images were acquired over ten complete gantry rotations in 50 s, while monitoring the respiratory motion in synchrony with projection-image acquisition. Projection images belonging to a selected respiratory phase were retrospectively identified and used for 3D reconstruction. The effect of using fewer gantry rotations-which influences both image quality and the ability to quantify respiratory function-was evaluated. Images reconstructed using unique projections from six or more gantry rotations produced acceptable images for quantitative analysis of lung volume, CT density, functional residual capacity and tidal volume. The functional residual capacity ( 0.15 +/- 0.03 mL) and tidal volumes ( 0.08 +/- 0.03 mL) measured in this study agree with previously reported measurements made using prospectively gated micro-CT and at higher resolution ( 150 mu m versus 90 mu m voxel spacing). Retrospectively gated micro-CT imaging of free-breathing mice enables quantitative dynamic measurement of morphological and functional parameters in the mouse models of respiratory disease, with scan times as short as 30 s, based on the acquisition of projection images over six gantry rotations.
机译:这项研究的目的是开发一种动态呼吸成像技术,该技术使用自由呼吸小鼠的回顾性门控高速micro-CT成像技术。使用动态微型CT扫描仪扫描自由呼吸的C57B16小鼠,该扫描仪包括安装在滑环龙门上的平板检测器。投影图像是在50秒内经过十次完整的机架旋转获取的,同时与投影图像的采集同步地监测呼吸运动。回顾性地识别属于所选呼吸阶段的投影图像,并将其用于3D重建。评估了使用较少的门架旋转的效果-它影响图像质量和量化呼吸功能的能力。使用来自六个或更多龙门旋转的独特投影重建的图像产生了可接受的图像,用于肺体积,CT密度,功能残余容量和潮气量的定量分析。在这项研究中测得的功能残余容量(0.15 +/- 0.03 mL)和潮气量(0.08 +/- 0.03 mL)与先前报道的使用前瞻性门控微CT进行的测量结果相符,且分辨率更高(150μm对90μm米体素间距)。回顾性门控的微型CT成像可对呼吸性小鼠的形态学和功能参数进行定量动态测量,其扫描时间可短于30 s,这是基于在六个龙门旋转上获取投影图像而得出的。

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