Cull Christy Fernandez, Choi Kerkil, Brady David J, Oliver Tim
Fitzpatrick Institute for Photonics and Department of Electrical and Computer Engineering, Duke University, 129 Hudson Hall, Durham, North Carolina 27708, USA.
Appl Opt. 2010 Apr 1;49(10):B59-70. doi: 10.1364/AO.49.000B59.
We apply a coded aperture snapshot spectral imager (CASSI) to fluorescence microscopy. CASSI records a two-dimensional (2D) spectrally filtered projection of a three-dimensional (3D) spectral data cube. We minimize a convex quadratic function with total variation (TV) constraints for data cube estimation from the 2D snapshot. We adapt the TV minimization algorithm for direct fluorescent bead identification from CASSI measurements by combining a priori knowledge of the spectra associated with each bead type. Our proposed method creates a 2D bead identity image. Simulated fluorescence CASSI measurements are used to evaluate the behavior of the algorithm. We also record real CASSI measurements of a ten bead type fluorescence scene and create a 2D bead identity map. A baseline image from filtered-array imaging system verifies CASSI's 2D bead identity map.
我们将编码孔径快照光谱成像仪(CASSI)应用于荧光显微镜。CASSI记录三维(3D)光谱数据立方体的二维(2D)光谱滤波投影。我们通过对二维快照进行数据立方体估计,利用总变差(TV)约束最小化一个凸二次函数。我们通过结合与每种珠子类型相关的光谱的先验知识,调整TV最小化算法以从CASSI测量中直接识别荧光珠子。我们提出的方法创建了一个二维珠子识别图像。模拟的荧光CASSI测量用于评估算法的性能。我们还记录了十种珠子类型荧光场景的实际CASSI测量,并创建了一个二维珠子识别图。来自滤波阵列成像系统的基线图像验证了CASSI的二维珠子识别图。