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A deconvolution method to improve automated 3D-analysis of dendritic spines: application to a mouse model of Huntington's disease.

机译:一种用于改善树突棘的自动化3D分析的反卷积方法:在亨廷顿舞蹈症小鼠模型中的应用。

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Dendritic spines are postsynaptic structures the morphology of which correlates with the strength of synaptic efficacy. Measurements of spine density and spine morphology are achievable using recent imaging and bioinformatics tools. The three-dimensional automated analysis requires optimization of image acquisition and treatment. Here, we studied the critical steps for optimal confocal microscopy imaging of dendritic spines. We characterize the deconvolution process and show that it improves spine morphology analysis. With this method, images of dendritic spines from medium spiny neurons are automatically detected by the software Neuronstudio, which retrieves spine density as well as spine diameter and volume. This approach is illustrated with three-dimensional analysis of dendritic spines in a mouse model of Huntington's disease: the transgenic R6/2 mice. In symptomatic mutant mice, we confirm the decrease in spine density, and the method brings further information and show a decrease in spine volume and dendrite diameter. Moreover, we show a significant decrease in spine density at presymptomatic age which so far has gone unnoticed.
机译:树突棘是突触后结构,其形态与突触效力有关。使用最新的成像和生物信息学工具可以实现脊柱密度和脊柱形态的测量。三维自动分析需要优化图像采集和处理。在这里,我们研究了树突棘最佳共聚焦显微镜成像的关键步骤。我们表征反卷积过程,并表明它改善了脊柱形态分析。使用这种方法,可以通过软件Neuronstudio自动检测来自中等棘突神经元的树突棘的图像,该软件可以检索脊柱密度以及脊柱直径和体积。在亨廷顿氏病小鼠模型中,通过树突棘的三维分析对这种方法进行了说明:转基因R6 / 2小鼠。在有症状的突变小鼠中,我们确认了脊柱密度的降低,该方法带来了更多的信息,并显示出脊柱体积和树突直径的降低。此外,在有症状的年龄之前,我们显示出脊柱密度显着下降,至今尚未引起注意。

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