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APS -APS March Meeting 2017 - Event - Selective Plane Illumination Differential Dynamic Microscopy with Adaptive Optics

机译:APS -APS 2017年3月会议-事件-带有自适应光学元件的选择性平面照明微分动态显微镜

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We measure the dynamics of colloidal particles and DNA molecules using differential dynamic microscopy (DDM) on images captured through selective-plane illumination microscopy (SPIM). Combining DDM, a digital Fourier microscopy method, and SPIM, an optical sectioning microscopy technique, we can analyze the dynamics of concentrated suspensions of colloids and biopolymers. Further, selective-plane illumination differential dynamic microscopy (SPIDDM) exploits the spatial variations of the Gaussian light-sheet to obtain diffusion data over a wide range of spatial frequencies. Presented work focuses on in vitro measurements of colloids, DNA molecules and cytoskeleton networks. We have measured the collective dynamics of DNA in actin and microtubule networks spanning an order of magnitude in spatial frequencies. This work could easily extend to living samples given SPIDDM's sparing use of excitation light. We are currently adding adaptive optics into our light-sheet microscope with a deformable mirror. We discuss using adaptive optics for multiple purposes. The mirror corrects optical aberrations due to the sample holder and the sample. We are also using adaptive optics to optimize the three-dimensional point spread function for DDM measurements. Using the deformable mirror to purposefully introduce known aberrations could allow for a more precise measurement of colloidal or molecular dynamics in three-dimensions.
机译:我们通过选择平面照明显微镜(SPIM)捕获的图像上使用差分动态显微镜(DDM)测量胶体颗粒和DNA分子的动力学。结合数字傅里叶显微镜技术DDM和光学切片显微镜技术SPIM,我们可以分析胶体和生物聚合物浓缩悬浮液的动力学。此外,选择性平面照明差分动态显微镜(SPIDDM)利用高斯光片的空间变化来获得在宽范围的空间频率上的扩散数据。目前的工作集中于胶体,DNA分子和细胞骨架网络的体外测量。我们已经测量了肌动蛋白和微管网络中DNA在空间频率上的数量级数量级的集体动力学。鉴于SPIDDM很少使用激发光,这项工作可以轻松地扩展到活体样品。目前,我们正在使用可变形镜将自适应光学元件添加到我们的光片显微镜中。我们讨论了将自适应光学元件用于多种目的。镜子校正由于样品架和样品引起的光学像差。我们还使用自适应光学器件来优化DDM测量的三维点扩展函数。使用可变形反射镜有目的地引入已知的像差,可以更精确地测量三维胶体或分子动力学。

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