Aberrations limit scanning fluorescence microscopy when imaging in scattering materials such as biological tissue. Model-based approaches for adaptive optics take advantage of a computational model of the optical setup. Such models can be combined with the optimization techniques of machine learning frameworks to find aberration corrections, as was demonstrated for focusing a laser beam through aberrations onto a camera [arXiv:2007.13400]. Here, we extend this approach to two-photon scanning microscopy. The developed sensorless technique finds corrections for aberrations in scattering samples and will be useful for a range of imaging application, for example in brain tissue.
翻译:生物组织等散射材料中成像时,偏差限制了扫描荧光显微镜; 适应性光学的模型方法利用光学装置的计算模型; 这种模型可以与机器学习框架的优化技术相结合,以寻找偏差校正,例如通过偏差将激光束聚焦到相机上[arXiv:2007.1300]。在这里,我们将这一方法推广到两枚磷扫描显微镜。开发的无传感器技术为散射样品中的偏差找到校正,并将有益于一系列成像应用,例如脑组织中的成像应用。