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首页> 外文期刊>Biomedical Optics Express >Multi-plane remote refocusing epifluorescence microscopy to image dynamic Casup2+/sup events
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Multi-plane remote refocusing epifluorescence microscopy to image dynamic Casup2+/sup events

机译:多平面远程重聚焦落射荧光显微镜对动态Ca 2 + 事件的成像

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Rapid imaging of multiple focal planes without sample movement may be achieved through remote refocusing, where imaging is carried out in a plane conjugate to the sample plane. The technique is ideally suited to studying the endothelial and smooth muscle cell layers of blood vessels. These are intrinsically linked through rapid communication and must be separately imaged at a sufficiently high frame rate in order to understand this biologically crucial interaction. We have designed and implemented an epifluoresence-based remote refocussing imaging system that can image each layer at up to 20fps using different dyes and excitation light for each layer, without the requirement for optically sectioning microscopy. A novel triggering system is used to activate the appropriate laser and image acquisition at each plane of interest. Using this method, we are able to achieve axial plane separations down to 15?μm, with a mean lateral stability of ≤ 0.32?μm displacement using a 60x, 1.4NA imaging objective and a 60x, 0.7NA reimaging objective. The system allows us to image and quantify endothelial cell activity and smooth muscle cell activity at a high framerate with excellent lateral and good axial resolution without requiring complex beam scanning confocal microscopes, delivering a cost effective solution for imaging two planes rapidly. We have successfully imaged and analysed Ca 2+ activity of the endothelial cell layer independently of the smooth muscle layer for several minutes.
机译:可以通过远程重新聚焦来实现多个焦平面的快速成像而无样品移动,在这种情况下,成像是在与样品平面共轭的平面中进行的。该技术非常适合研究血管内皮和平滑肌细胞层。它们之间通过快速通讯而固有地联系在一起,并且必须以足够高的帧速率分别成像以了解这种生物学上至关重要的相互作用。我们已经设计并实现了基于落射荧光的远程重聚焦成像系统,该系统可以使用不同的染料和每一层的激发光以高达20fps的速度对每一层成像,而无需进行光学切片显微镜检查。一种新颖的触发系统用于在每个感兴趣的平面上激活适当的激光和图像采集。使用这种方法,使用60倍1.4NA的成像物镜和60倍0.7NA的重新成像物镜,我们能够实现低至15μm的轴向平面间距,平均横向稳定性≤0.32μm位移。该系统使我们能够以优异的横向和良好的轴向分辨率在高帧速率下对内皮细胞活性和平滑肌细胞活性进行成像和量化,而无需复杂的光束扫描共聚焦显微镜,从而提供了一种经济高效的解决方案,可以快速对两个平面进行成像。我们已经成功地成像并分析了内皮细胞层与平滑肌层无关的Ca 2+活性,持续了几分钟。

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