首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Inverse-problem approach for particle digital holography: accurate location based on local optimization
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Inverse-problem approach for particle digital holography: accurate location based on local optimization

机译:粒子数字全息的反问题方法:基于局部优化的精确位置

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摘要

We propose a microparticle localization scheme in digital holography. Most conventional digital holography methods are based on Fresnel transform and present several problems such as twin-image noise, border effects, and other effects. To avoid these difficulties, we propose an inverse-problem approach, which yields the optimal particle set that best models the observed hologram image. We resolve this global optimization problem by conventional particle detection followed by a local refinement for each particle. Results for both simulated and real digital holograms show strong improvement in the localization of the particles, particularly along the depth dimension. In our simulations, the position precision is >=1 (mu)m rms. Our results also show that the localization precision does not deteriorate for particles near the edge of the field of view.
机译:我们提出了数字全息术中的微粒定位方案。大多数传统的数字全息方法都是基于菲涅耳变换的,并且存在一些问题,例如双图像噪声,边界效应和其他效应。为了避免这些困难,我们提出了一种反问题方法,该方法可以产生最佳模型集,该模型可以最佳地模拟观察到的全息图像。我们通过常规的粒子检测,然后对每个粒子进行局部细化来解决此全局优化问题。模拟和真实数字全息图的结果均显示出粒子定位的显着改善,尤其是沿深度方向。在我们的仿真中,位置精度> = 1μmrms。我们的结果还表明,对于靠近视场边缘的粒子,定位精度不会降低。

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