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首页> 外文期刊>Practical neurology >Transdural spinal cord herniation with extradural cerebrospinal fluid collection.
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Transdural spinal cord herniation with extradural cerebrospinal fluid collection.

机译:硬膜外脊髓疝伴硬膜外脑脊液收集。

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摘要

Fluorescence microscopy allows us to observe fluorescently labeled molecules in diverse biological processes and organelle structures within living cells. However, the diffraction limit restricts its spatial resolution to about half of its wavelength, limiting the capability of biological observation at the molecular level. Structured-illumination microscopy (SIM), a type of super-resolution microscopy, doubles the spatial resolution in all three dimensions by illuminating the sample with a patterned excitation light, followed by computer reconstruction. SIM uses a relatively low illumination power compared with other methods of super-resolution microscopy and is easily available for multicolor imaging. SIM has great potential for meeting the requirements of live-cell imaging. Recent developments in diverse types of SIM have achieved higher spatial (~50 nm lateral) and temporal (~100 Hz) resolutions. Here, we review recent advancements in SIM and discuss its application in noninvasive live-cell imaging.
机译:荧光显微镜使我们可以观察活细胞内各种生物过程和细胞器结构中的荧光标记分子。但是,衍射极限将其空间分辨率限制在其波长的一半左右,从而限制了在分子水平上进行生物学观察的能力。结构照明显微镜(SIM)是一种超分辨率显微镜,它通过使用图案化的激发光照射样品,然后进行计算机重建,在所有三个维度上将空间分辨率提高了一倍。与其他超分辨率显微镜方法相比,SIM使用较低的照明功率,并且易于用于多色成像。 SIM具有满足活细胞成像要求的巨大潜力。各种类型的SIM的最新发展已实现了更高的空间(横向约50 nm)和时间(约100 Hz)分辨率。在这里,我们回顾了SIM的最新进展,并讨论了其在无创活细胞成像中的应用。

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