荧光
荧光寿命成像显微镜
纳米尺度
显微镜
光学切片
材料科学
轴突
分辨率(逻辑)
薄层荧光显微镜
生物物理学
髓鞘
电子显微镜
荧光显微镜
成像技术
轴突变性
化学
光学成像
显微镜
中尺度气象学
微尺度化学
原位
光学
作者
Wei Wang,Xiongtao Ruan,Gaoxiang Liu,Daniel E. Milkie,Wenping Li,Eric Betzig,Srigokul Upadhyayula,Ruixuan Gao
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-10-16
卷期号:390 (6770): eadr9109-eadr9109
被引量:2
标识
DOI:10.1126/science.adr9109
摘要
Optical nanoscopy of intact biological specimens has been transformed by recent advancements in hydrogel-based tissue clearing and expansion, enabling the imaging of cellular and subcellular structures with molecular contrast. However, existing high-resolution fluorescence microscopes are physically limited by objective-to-specimen distance, which prevents the study of whole-mount specimens without physical sectioning. To address this challenge, we developed a photochemical strategy for spatially precise sectioning of specimens. By combining serial photochemical sectioning with lattice light-sheet imaging and petabyte-scale computation, we imaged and reconstructed axons and myelin sheaths across entire mouse olfactory bulbs at nanoscale resolution. An olfactory bulb-wide analysis of myelinated and unmyelinated axons revealed distinctive patterns of axon degeneration and de-/dysmyelination in the neurodegenerative brain, highlighting the potential for peta- to exabyte-scale super-resolution studies using this approach.
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