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Modernization of Golgi staining techniques for high-resolution, 3-dimensional imaging of individual neurons

机译:高尔基染色技术的现代化,可对单个神经元进行高分辨率的3维成像

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Analysis of neuronal arborization and connections is a powerful tool in fundamental and clinical neuroscience. Changes in neuronal morphology are central to brain development and plasticity and are associated with numerous diseases. Golgi staining is a classical technique based on a deposition of metal precipitate in a random set of neurons. Despite their versatility, Golgi methods have limitations that largely precluded their use in advanced microscopy. We combined Golgi staining with fluorescent labeling and tissue clearing techniques in an Alzheimer's disease model. We further applied 3D electron microscopy to visualize entire Golgi-stained neurons, while preserving ultrastructural details of stained cells, optimized Golgi staining for use with block-face scanning electron microscopy, and developed an algorithm for semi-automated neuronal tracing of cells displaying complex staining patterns. Our method will find use in fundamental neuroscience and the study of neuronal morphology in disease.
机译:在基础和临床神经科学中,对神经元乔化和连接的分析是一个强大的工具。神经元形态的变化对于大脑发育和可塑性至关重要,并且与多种疾病有关。高尔基体染色是一种基于金属沉淀物在随机神经元集合中沉积的经典技术。尽管它们具有通用性,但高尔基方法仍具有局限性,因此在高级显微镜中无法使用。我们在阿尔茨海默氏病模型中将高尔基染色与荧光标记和组织清除技术相结合。我们进一步应用3D电子显微镜来可视化整个高尔基染色的神经元,同时保留染色细胞的超微结构细节,优化了高尔基体染色以用于块面扫描电子显微镜,并开发了一种算法,用于对显示复杂染色的细胞进行半自动神经元示踪模式。我们的方法将用于基础神经科学和疾病中神经元形态的研究。

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