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Imaging brain amyloid deposition using grating-based differential phase contrast tomography

机译:使用基于光栅的差分相衬层析成像对脑淀粉样蛋白沉积进行成像

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One of the core pathological features of Alzheimer's disease (AD) is the accumulation of amyloid plaques in the brain. Current efforts of medical imaging research aim at visualizing amyloid plaques in living patients in order to evaluate the progression of the pathology, but also to facilitate the diagnosis of AD at the prodromal stage. In this study, we evaluated the capabilities of a new experimental imaging setup to image amyloid plaques in the brain of a transgenic mouse model of Alzheimer's disease. This imaging setup relies on a grating interferometer at a synchrotron X-ray source to measure the differential phase contrast between brain tissue and amyloid plaques. It provides high-resolution images with a large field of view, making it possible to scan an entire mouse brain. Here, we showed that this setup yields sufficient contrast to detect amyloid plaques and to quantify automatically several important structural parameters, such as their size and their regional density in 3D, on the scale of a whole mouse brain. Whilst future developments are required to apply this technique in vivo, this grating-based setup already gives the possibility to perform powerful studies aiming at quantifying the amyloid pathology in mouse models of AD and might accelerate the evaluation of anti-amyloid compounds. In addition, this technique may also facilitate the development of other amyloid imaging methods such as positron emission tomography (PET) by providing convenient high-resolution 3D data of the plaque distribution for multimodal comparison.
机译:阿尔茨海默氏病(AD)的核心病理特征之一是大脑中淀粉样斑块的积累。医学成像研究的当前努力旨在可视化活着患者的淀粉样斑块,以评估病理学进展,也有助于在前驱期诊断AD。在这项研究中,我们评估了一种新的实验成像装置对阿尔茨海默氏病转基因小鼠模型的大脑中淀粉样蛋白斑成像的能力。这种成像设置依赖于同步加速器X射线源上的光栅干涉仪来测量大脑组织和淀粉样蛋白斑之间的差分相衬。它提供了具有大视野的高分辨率图像,从而可以扫描整个鼠标的大脑。在这里,我们证明了这种设置可产生足够的对比度,以检测淀粉样蛋白斑并自动量化几个重要的结构参数,例如在整个小鼠大脑的大小上的大小和3D区域密度。尽管需要在体内应用该技术的未来发展,但这种基于光栅的设置已经为进行强有力的研究提供了可能,该研究旨在量化AD小鼠模型中的淀粉样蛋白病理,并可能加速抗淀粉样蛋白化合物的评估。此外,该技术还可以通过提供斑块分布的便捷高分辨率3D数据进行多模式比较,从而促进其他淀粉样蛋白成像方法的开发,例如正电子发射断层扫描(PET)。

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