论文标题

多灶平面显微镜的自适应光学器件

Adaptive optics for multifocal plane microscopy

论文作者

Gore, Benjamin, Schwartz, Noah, Dalgarno, Paul

论文摘要

多灶平面显微镜(MUM)允许在单个相机框架中成像三维对象。我们的方法使用双向衍射相光栅,并使用二次变形线,将散热器应用于第一个衍射顺序,当与中继镜头配对时,可以在单个相机芯片上成像9个焦距。这种方法需要强大的信号水平,以确保在衍射光中足够强度,但具有紧凑而直接实现的优势。随着显微镜开始更深入地集中在样品中,样本介质中的折射率不匹配和不均匀性引起的畸变会对信号的质量产生不利影响。在本文中,我们研究了通过将自适应光学器件(AO)应用于多焦点平面显微镜所带来的图像质量改进。单个校正设备(8x8可变形镜(DM))与基于图像的AO控制策略相结合,以执行光学畸变的校正。我们使用已建立的数值建模系统比较了完整的端到端建模结果,该系统适用于显微镜,可在测试样本和许多生物样品上进行实验室结果。最后,我们将证明结合AO和妈妈,我们能够提高生物样品的图像质量,并在整个生物样品的整体中提供良好的校正。

Multifocal plane microscopy (MUM) allows three dimensional objects to be imaged in a single camera frame. Our approach uses dual orthogonal diffraction phase gratings with a quadratic distortion of the lines to apply defocus to the first diffraction orders which, when paired with a relay lens, allows for 9 focal planes to be imaged on a single camera chip. This approach requires a strong signal level to ensure sufficient intensity in the diffracted light, but has the advantage of being compact and straightforward to implement. As the microscope begins to focus deeper into the sample, aberrations caused by refractive index mismatch and inhomogeneity in the sample's media have an adverse effect on the signal's quality. In this paper, we investigate the image quality improvement brought by applying adaptive optics (AO) to multifocal plane microscopy. A single correction device (an 8x8 deformable mirror (DM)) is combined with an image-based AO control strategy to perform the correction of optical aberrations. We compare full end-to-end modelling results using an established numerical modelling system adapted for microscopy to laboratory results both on a test sample and on a number of biological samples. Finally, we will demonstrate that combining AO and MUM, we are able to improve the image quality of biological samples and provide a good correction throughout the volume of the biological sample.

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