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Imaging and manipulating living neurons with atomic force microscopy

机译:原子力显微镜成像和操纵活神经元

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Atomic force microscopy (AFM) applications in medicine and biology promises to be significant. Resolutions of living biological materials provided by this technology in the native environment far surpass any modality currently available. The AFM can also be used to physically interact with the sample of interest, allowing for novel experimentation. This report discusses three-dimensional architectures of living chick dorsal root ganglion and sympathetic ganglion somas and growth cones. Secondly, the AFM has been used to inflict damage to these neurons and subsequently image the cell's response to injury. In the Center for Paralysis Research, we intend to expand on these preliminary investigations toward a better understanding of neurotrauma and nerve repair.
机译:原子力显微镜(AFM)在医学和生物学领域的应用有望发挥重要作用。在自然环境中,此技术提供的生物材料的分辨率远远超过了当前可用的任何形式。 AFM还可以用于与目标样品进行物理相互作用,从而进行新颖的实验。本报告讨论了活的小鸡背根神经节和交感神经节的体和生长锥的三维结构。其次,原子力显微镜已被用来对这些神经元造成损害,并随后对细胞对损伤的反应进行成像。在瘫痪研究中心,我们打算扩展这些初步研究,以更好地理解神经外伤和神经修复。

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