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Dynamics and morphometric characterization of hippocampus neurons using Digital Holographic Microscopy

机译:使用数字全息显微镜的海马神经元动力学和形态计量学表征

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In this paper we report on the use of digital holographic microscopy for 3D real time imaging of cultured neurons and neural networks, in vitro. Digital holographic microscopy is employed as an assessment tool to study the biophysical origin of neurodegenerative diseases. Our study consists in the morphological characterization of the axon, dendrites and cell bodies. The average size and thickness of the soma were 21 and 13 μm, respectively. Furthermore, the average size and diameter of some randomly selected neurites were 4.8 and 0.89 μm, respectively. In addition, the spatiotemporal growth process of cellular bodies and extensions was fitted to by a non-linear behavior of the nerve system. Remarkably, this non-linear process represents the relationship between the growth process of cellular body with respect to the axon and dendrites of the neurons.
机译:在本文中,我们报告了数字全息显微镜在体外对培养的神经元和神经网络进行3D实时成像的报告。数字全息显微镜被用作评估工具来研究神经退行性疾病的生物物理起源。我们的研究包括轴突,树突和细胞体的形态表征。体的平均大小和厚度分别为21和13μm。此外,一些随机选择的神经突的平均大小和直径分别为4.8和0.89μm。此外,神经系统的非线性行为适应了细胞体及其延伸的时空生长过程。值得注意的是,这种非线性过程代表了细胞体相对于轴突的生长过程与神经元树突之间的关系。

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