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Three-dimensional registration of synchrotron radiation-based micro-computed tomography images with advanced laboratory micro-computed tomography data from murine kidney casts

机译:基于同步加速器辐射的微型计算机断层扫描图像与来自鼠肾模型的先进实验室微型计算机断层扫描数据的三维配准

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Malfunction of oxygen regulation in kidney and liver may lead to the pathogenesis of chronic diseases. The underlying mechanisms are poorly understood. In kidney, it is hypothesized that renal gas shunting from arteries to veins eliminates excess oxygen. Such shunting is highly dependent on the structure of the renal vascular network. The vascular tree has so far not been quantified under maintenance of its connectivity as three-dimensional imaging of the vessel tree down to the smallest capillaries, which in mouse model are smaller than 5 μm in diameter, is a challenging task. An established protocol uses corrosion casts and applies synchrotron radiation-based micro-computed tomography (SRμCT), which provides the desired spatial resolution with the necessary contrast. However, SRuCT is expensive and beamtime access is limited. We show here that measurements with a phoenix nanotom®m (General Electric, Wunstorf, Germany) can provide comparable results to those obtained with SRuCT, except for regions with small vessel structures, where the signal-to-noise level was significantly reduced. For this purpose the nanotom®m measurement was compared with its corresponding measurement acquired at the beamline P05 at PETRA Ⅲ at DESY, Hamburg, Germany.
机译:肾脏和肝脏中氧气调节的功能异常可能导致慢性疾病的发病机理。根本的机制了解甚少。假设在肾脏中,从动脉到静脉的肾脏气体分流可消除多余的氧气。这种分流高度依赖于肾血管网络的结构。迄今为止,由于维持对血管树的三维成像(直至在小鼠模型中直径小于5μm的最小毛细管)的三维成像,因此尚未对其维系连接性进行量化。已建立的协议使用腐蚀铸模,并应用基于同步辐射的微计算机断层扫描(SRμCT),以提供所需的空间分辨率和必要的对比度。但是,SRuCT昂贵,并且波束时间访问受到限制。我们在这里显示,使用phoenixnanotom®m(通用电气,德国翁斯托夫,德国)进行的测量可以提供与SRuCT相比的结果,但脉管结构较小的区域的信噪比水平显着降低。为此,将nanotom®m测量值与在德国汉堡DESY的PETRAⅢ的光束线P05处获得的相应测量值进行比较。

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