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Estimating Perturbations to Laser Position on Tissue for Lissajous Scanning in Endomicroscopy*

机译:估计内镜下利萨如扫描对组织激光位置的扰动*

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This paper proposes an algorithm to reduce motion artifacts in Lissajous-scanned images taken from a custom-built endomicroscope based on microelectromechanical system (MEMS) laser scanning. The proposed algorithm uses an extended Kalman Filter to estimate uncertain perturbation to the position of the scanner relative to tissue during the Lissajous scan. The estimated states, which describe the estimated position perturbation to the scanner, are used to update the inferred laser trajectory during image reconstruction. To aid in estimation, the Jacobian matrix of a measurement function from other nearby points in the Lissajous pattern is computed using a trend of previous pixel values. For validation, the proposed algorithm was tested on both artificially generated blur images and real tissue images taken with the prototype confocal fluorescence endomicroscope. The reconstructed images with the estimated states showed reduced motion artifacts compared to the original images. The algorithm can be used in other single-pixel imaging applications that rely on beam steering technology to estimate the scanner’s real trajectory and reduce motion artifacts.
机译:本文提出了一种算法,用于减少基于微机电系统(MEMS)激光扫描的定制内窥镜拍摄的利萨如扫描图像中的运动伪影。所提出的算法使用扩展的卡尔曼滤波器来估计在李沙育扫描期间相对于组织的扫描器位置的不确定扰动。描述对扫描仪的估计位置扰动的估计状态用于在图像重建过程中更新推断的激光轨迹。为了帮助估计,使用先前像素值的趋势来计算李萨如模式中其他附近点的测量函数的雅可比矩阵。为了进行验证,在人工生成的模糊图像和使用共聚焦荧光内窥镜原型拍摄的真实组织图像上测试了所提出的算法。与原始图像相比,具有估计状态的重建图像显示出减少的运动伪像。该算法可用于其他依赖于光束控制技术的单像素成像应用中,以估计扫描仪的真实轨迹并减少运动伪像。

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