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Computation of brain neurodegeneration in the Alzheimer's fly

机译:阿尔茨海默病苍蝇脑神经变性的计算

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摘要

Expression of human Aβ42 peptide in the Drosophila brain induces pathological phenotypes resembling Alzheimer's disease (PNAS 101, 6623-6628). Three-dimensional confocal imaging reveals extensive vacuoles caused by neurodegeneration in the brain of aged but not young Aβ 42 flies. Here, we report a three-dimensional computation algorism allowing semi-automatic measurement of numbers and volumes of brain vacuoles. The method employed matched filters, α -shape, and the active-contour techniques. Using this method, a good result depicting the contours of the vacuoles can be obtained. A more accurate algorithm is still under development. Accurate evaluation of brain pathology in Alzheimer's flies may facilitate the understanding of molecular mechanisms underlying Aβ. toxicity and the discovery of novel therapeutic targets for Alzheimer's disease.
机译:果蝇大脑中人Aβ42肽的表达诱导了类似于阿尔茨海默氏病的病理表型(PNAS 101,6623-6628)。三维共聚焦成像揭示了由老年而非青年Aβ42苍蝇的大脑中的神经变性引起的大量液泡。在这里,我们报告了一种三维计算算法,可以半自动测量脑液泡的数量和体积。该方法采用匹配滤波器,α形和主动轮廓技术。使用这种方法,可以获得描绘液泡轮廓的良好结果。仍在开发更精确的算法。准确评估阿尔茨海默病苍蝇的大脑病理状况可能有助于理解Aβ的分子机制。毒性和阿尔茨海默氏病新型治疗靶标的发现。

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