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Recent applications of superresolution microscopy in neurobiology

机译:超分辨率显微镜在神经生物学中的最新应用

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Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals are vectorially transmitted between two neurons. Excitatory synapses occur mostly on dendritic spines, submicron sized protrusions of the neuronal dendritic arborizations. Axons establish contacts with these tiny specializations purported to be the smallest functional processing units in the central nervous system. The minute size of synapses and their macromolecular constituents creates an inherent difficulty for imaging but makes them an ideal object for superresolution microscopy. Here we discuss some representative examples of nanoscopy studies, ranging from quantification of receptors and scaffolding proteins in postsynaptic densities and their dynamic behavior, to imaging of synaptic vesicle proteins and dendritic spines in living neurons or even live animals.
机译:脑中的化学突触是结构性分化,其中兴奋性或抑制性信号在两个神经元之间进行矢量传递。兴奋性突触主要发生在树突棘上,是神经元树突乔化的亚微米大小的突起。轴突与这些微小的专业领域建立了联系,这些专业领域被称为中枢神经系统中最小的功能处理单元。突触的微小尺寸及其大分子成分给成像带来了固有的困难,但使其成为超分辨率显微镜的理想对象。在这里,我们讨论了纳米显微镜研究的一些代表性实例,从定量突触后密度及其动态行为的受体和支架蛋白到活的神经元甚至是活体动物的突触小泡蛋白和树突棘的成像,不一而足。

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