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Deep Tissue Wavefront Estimation for Sensorless Aberration Correction

机译:用于无传感器像差校正的深层组织波前估计

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The multiple light scattering in biological tissues limits the measurement depth for traditional wavefront sensor. The attenuated ballistic light and the background noise caused by the diffuse light give low signal to noise ratio for wavefront measurement. To overcome this issue, we introduced a wavefront estimation method based on a ray tracing algorithm to overcome this issue. With the knowledge of the refractive index of the medium, the wavefront is estimated by calculating optical path length of rays from the target inside of the samples. This method can provide not only the information of spherical aberration from the refractive-index mismatch between the medium and biological sample but also other aberrations caused by the irregular interface between them. Simulations based on different configurations are demonstrated in this paper.
机译:生物组织中的多种光散射限制了传统波前传感器的测量深度。衰减的弹道光和由漫射光引起的背景噪声为波前测量提供了低信噪比。为了克服这个问题,我们引入了一种基于光线跟踪算法的波前估计方法来克服这个问题。在了解了介质的折射率的情况下,可通过计算来自样本内部目标的光线的光路长度来估算波前。该方法不仅可以提供来自介质和生物样品之间折射率不匹配的球差信息,还可以提供由它们之间不规则界面引起的其他像差。本文演示了基于不同配置的仿真。

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