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Correction accuracy in image-based adaptive optics for nonlinear microscopy

机译:用于非线性显微镜的基于图像的自适应光学器件的校正精度

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We investigate the parameters governing the accuracy of correction in modal sensorless adaptive optics for microscopy. In this paper we focus on the case of two-photon excited fluorescence. Using analytical, numerical and experimental results, we show that using a suitable number of measurements, accurate correction can be achieved for up to 2 rad rms initial aberrations even without optimisation of the correction modes. We demonstrate that this correction can be achieved using low light levels to minimise photobleaching and toxicity, and we provide examples of such optimised correction.
机译:我们研究了用于显微镜的模态无传感器自适应光学中控制校正精度的参数。在本文中,我们关注于双光子激发荧光的情况。使用分析,数值和实验结果,我们表明,使用适当数量的测量结果,即使不优化校正模式,也可以实现高达2 rad rms的初始像差的准确校正。我们证明了可以使用弱光将光漂白和毒性降至最低来实现这种校正,并提供了此类优化校正的示例。

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