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High-resolution visualization of airspace structures in intact mice via synchrotron phase-contrast X-ray imaging (PCXI)

机译:通过同步加速器相衬X射线成像(PCXI)高分辨率观察完整小鼠的空域结构

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摘要

Anatomical visualization of airspace-containing organs in intact small animals has been limited by the resolution and contrast available from current imaging methods such as X-ray, micro-computed tomography and magnetic resonance imaging. Determining structural relationships and detailed anatomy has therefore relied on suitable fixation, sectioning and histological processing. More complex and informative analyses such as orthogonal views of an organ and three-dimensional structure visualizations have required different animals and image sets, laboriously processed to gather this complementary structural information. Precise three-dimensional anatomical views have always been difficult to achieve in small animals. Here we report the ability of phase-contrast synchrotron X-ray imaging to provide detailed two- and three-dimensional visualization of airspace organ structures in intact animals. Using sub-micrometre square pixel charge-coupled device array detectors, the structure and anatomy of hard and soft tissues, and of airspaces, is readily available using phase-contrast synchrotron X-ray imaging. Moreover, software-controlled volume-reconstructions of tomographic images not only provide unsurpassed image clarity and detail, but also selectable anatomical views that cannot be obtained with established histological techniques. The morphology and structure of nasal and lung airways and the middle ear are illustrated in intact mice, using two- and three-dimensional representations. The utility of phase-contrast synchrotron X-ray imaging for non-invasively localizing objects implanted within airspaces, and the detection of gas bubbles transiting live airways, are other novel features of this visualization methodology. The coupling of phase-contrast synchrotron X-ray imaging technology with software-based reconstruction techniques holds promise for novel and high-resolution non-invasive examination of airspace anatomy in small animal models.
机译:完整小动物中包含空域的器官的解剖学可视化受到当前成像方法(例如X射线,微计算机断层扫描和磁共振成像)可获得的分辨率和对比度的限制。因此,确定结构关系和详细的解剖结构取决于合适的固定,切片和组织学处理。更复杂,信息量更大的分析(例如器官的正交视图和三维结构可视化)需要不同的动物和图像集,需要费力地处理这些动物和图像集以收集这些互补的结构信息。在小型动物中,始终很难获得精确的三维解剖视图。在这里,我们报告相衬同步加速器X射线成像的能力,以提供完整动物中空域器官结构的详细二维和三维可视化。使用亚微米级正方形像素电荷耦合器件阵列检测器,使用相衬同步加速器X射线成像可轻松获得硬组织和软组织以及空域的结构和解剖结构。此外,层析图像的软件控制的体积重建不仅提供了无与伦比的图像清晰度和细节,而且还提供了已建立的组织学技术无法获得的可选解剖学视图。使用二维和三维表示法在完整的小鼠中说明了鼻,肺气道和中耳的形态和结构。相衬同步加速器X射线成像技术用于非侵入性地定位植入空气空间内的物体,以及检测穿过活动气道的气泡,是该可视化方法的其他新颖特征。相衬同步加速器X射线成像技术与基于软件的重建技术的结合为小型动物模型中的空域解剖结构的新颖,高分辨率无创检查提供了希望。

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