Caron Julien, Fallet Clément, Tinevez Jean-Yves, Moisan Lionel, Braitbart L Philippe Ori, Sirat Gabriel Y, Shorte Spencer L
a Bioaxial SAS ; Paris , France.
Cell Adh Migr. 2014;8(5):430-9. doi: 10.4161/cam.29358.
We present a new technology for super-resolution fluorescence imaging, based on conical diffraction. Conical diffraction is a linear, singular phenomenon, taking place when a laser beam is diffracted through a biaxial crystal. We use conical diffraction in a thin biaxial crystal to generate illumination patterns that are more compact than the classical Gaussian beam, and use them to generate a super-resolution imaging modality. While there already exist several super-resolution modalities, our technology (biaxial super-resolution: BSR) is distinguished by the unique combination of several performance features. Using BSR super-resolution data are achieved using low light illumination significantly less than required for classical confocal imaging, which makes BSR ideal for live-cell, long-term time-lapse super-resolution imaging. Furthermore, no specific sample preparation is required, and any fluorophore can be used. Perhaps most exciting, improved resolution BSR-imaging resolution enhancement can be achieved with any type of objective no matter the magnification, numerical aperture, working distance, or the absence or presence of immersion medium. In this article, we present the first implementation of BSR modality on a commercial confocal microscope. We acquire and analyze validation data, showing high quality super-resolved images of biological objects, and demonstrate the wide applicability of the technology. We report live-cell super-resolution imaging over a long period, and show that the light dose required for super-resolution imaging is far below the threshold likely to generate phototoxicity.
我们提出了一种基于锥形衍射的超分辨率荧光成像新技术。锥形衍射是一种线性奇异现象,当激光束通过双轴晶体衍射时发生。我们在薄双轴晶体中利用锥形衍射生成比经典高斯光束更紧凑的照明图案,并利用它们生成一种超分辨率成像模式。虽然已经存在几种超分辨率模式,但我们的技术(双轴超分辨率:BSR)具有多种性能特征的独特组合。使用BSR超分辨率数据是通过低光照明实现的,其所需的光量明显少于经典共聚焦成像所需的光量,这使得BSR非常适合活细胞、长期延时超分辨率成像。此外,不需要特定的样品制备,并且可以使用任何荧光团。也许最令人兴奋的是,无论物镜的放大倍数、数值孔径、工作距离如何,有无浸没介质,使用任何类型的物镜都可以实现BSR成像分辨率的提高。在本文中,我们展示了BSR模式在商用共聚焦显微镜上的首次应用。我们获取并分析了验证数据,展示了生物物体的高质量超分辨图像,并证明了该技术的广泛适用性。我们报告了长时间的活细胞超分辨率成像,并表明超分辨率成像所需的光剂量远低于可能产生光毒性的阈值。