Latorre-Carmona Pedro, Sánchez-Ortiga Emilio, Xiao Xiao, Pla Filiberto, Martínez-Corral Manuel, Navarro Héctor, Saavedra Genaro, Javidi Bahram
Institute of New Imaging Technologies, Universidad Jaume I Campus del Riu Sec s/n, 12071 Castellón de la Plana, Spain.
Opt Express. 2012 Nov 5;20(23):25960-9. doi: 10.1364/OE.20.025960.
This paper presents an acquisition system and a procedure to capture 3D scenes in different spectral bands. The acquisition system is formed by a monochrome camera, and a Liquid Crystal Tunable Filter (LCTF) that allows to acquire images at different spectral bands in the [480, 680]nm wavelength interval. The Synthetic Aperture Integral Imaging acquisition technique is used to obtain the elemental images for each wavelength. These elemental images are used to computationally obtain the reconstruction planes of the 3D scene at different depth planes. The 3D profile of the acquired scene is also obtained using a minimization of the variance of the contribution of the elemental images at each image pixel. Experimental results show the viability to recover the 3D multispectral information of the scene. Integration of 3D and multispectral information could have important benefits in different areas, including skin cancer detection, remote sensing and pattern recognition, among others.
本文介绍了一种用于在不同光谱波段捕获三维场景的采集系统和程序。该采集系统由一台单色相机和一个液晶可调谐滤波器(LCTF)组成,该滤波器允许在[480, 680]纳米波长区间内的不同光谱波段采集图像。合成孔径积分成像采集技术用于获取每个波长的基元图像。这些基元图像用于通过计算获得三维场景在不同深度平面的重建平面。还通过最小化每个图像像素处基元图像贡献的方差来获得采集场景的三维轮廓。实验结果表明恢复场景三维多光谱信息的可行性。三维信息和多光谱信息的整合在包括皮肤癌检测、遥感和模式识别等不同领域可能具有重要益处。