论文标题

基于迭代方法的FLC-SLM系统设计,用于与组织同时在3D体积中同时形成多个复杂结构

An iterative method based FLC-SLM system design for forming multiple complex structures simultaneously in 3D volume with tissue

论文作者

Kumar, Amit, Thakur, Sarvesh, Biswas, S. K.

论文摘要

由于折射率异质性,随机光散射和斑点噪声的形成,内部或通过浑浊的介质内部或通过浑浊的介质进行快速聚焦是一项具有挑战性的任务。在这里,我们提出了具有基于R的基于R平量的健身函数的加权辅助遗传算法(WMA-GA),该功能可以推进对比度,分辨率,使光线紧密聚焦,并通过散射介质对简单和复杂的结构形成进行快速收敛。作为与二进制WMA-GA的兼容系统,我们提出了一种快速,成本效益且可靠的迭代波前整形系统设计,具有负担得起的铁电液晶(FLC)基于二进制的二进制相阶段空间光调制器(SLM)。所提出的波前塑形系统设计已用于通过优化的单相罩同时在3D体积中同时构建多个复杂的异质结构。 WMA-GA及其原型系统已通过120、220、450和600粒度玻璃扩散器以及323、588和852μm厚的新鲜鸡肉组织验证。我们已经证明了所提出的方法是从组织中嵌入的局部荧光染料中控制光子内和光子输出的鲁棒性。详细的结果表明,拟议的算法支持的集成系统类别以更高的对比度收敛并提高分辨率。

Complex structure formation and fast focusing of light inside or through turbid media is a challenging task due to refractive index heterogeneity, random light scattering and speckle noise formation. Here, we have proposed a weighted-mutation assisted genetic algorithm (WMA-GA) with an R-squared metric based fitness function that advances the contrast, resolution, focuses light tightly and does fast convergence for both simple and complex structure formation through the scattering media. As a compatible system with the binary WMA-GA, we have presented a fast, cost-effective, and robust iterative wavefront shaping system design with an affordable ferroelectric liquid crystal (FLC) based binary-phase spatial light modulator (SLM). The proposed wavefront shaping system design has been used to construct multiple complex hetero-structures simultaneously in 3D volume by an optimized single phase-mask. The WMA-GA and the prototype system have been validated with 120, 220, 450, and 600 grit ground glass diffusers along with 323, 588, and 852 μm thick fresh chicken tissues including fluorescence in it. We have demonstrated the robustness of the proposed method to control the photon-in and photon-out from a localized fluorescent dye embedded in the tissue. The detailed results show that the proposed class of algorithm-backed integrated system converges fast with higher contrast and advances the resolution.

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