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Ultrafast, accurate, and robust localization of anisotropic dipoles

机译:各向异性偶极子的超快,准确和强大的定位

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The resolution of single molecule localization imaging techniques largely depends on the precision of localization algorithms. However, the commonly used Gaussian function is not appropriate for anisotropic dipoles because it is not the true point spread function. We derived the theoretical point spread function of tilted dipoles with restricted mobility and developed an algorithm based on an artificial neural network for estimating the localization, orientation and mobility of individual dipoles. Compared with fitting-based methods, our algorithm demonstrated ultrafast speed and higher accuracy, reduced sensitivity to defocusing, strong robustness and adaptability, making it an optimal choice for both two-dimensional and three-dimensional super-resolution imaging analysis.
机译:单分子定位成像技术的分辨率很大程度上取决于定位算法的精度。但是,常用的高斯函数不适用于各向异性偶极子,因为它不是真正的点扩散函数。我们推导了具有受限迁移率的倾斜偶极子的理论点扩展函数,并开发了一种基于人工神经网络的算法,用于估计单个偶极子的定位,方向和迁移率。与基于拟合的方法相比,我们的算法显示出超快的速度和更高的精度,降低的散焦灵敏度,强大的鲁棒性和适应性,使其成为二维和三维超分辨率成像分析的最佳选择。

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