Citation: F. Goudail et P. Refregier, Statistical algorithms for target detection in coherent active polarimetric images, J OPT SOC A, 18(12), 2001, pp. 3049-3060
Citation: O. Germain et P. Refregier, Edge location in SAR images: Performance of the likelihood ratio filter and accuracy improvement with an active contour approach, IEEE IM PR, 10(1), 2001, pp. 72-78
Citation: F. Goudail et P. Refregier, Statistical techniques for target detection in polarization diversity images, OPTICS LETT, 26(9), 2001, pp. 644-646
Citation: E. Hueber et al., Optical snake-based segmentation processor with a shadow-casting incoherent correlator, OPTICS LETT, 26(23), 2001, pp. 1852-1854
Citation: O. Ruch et P. Refregier, Minimal-complexity segmentation with a polygonal snake adapted to different optical noise models, OPTICS LETT, 26(13), 2001, pp. 977-979
Authors:
Garcia-Martinez, P
Refregier, P
Arsenault, HH
Ferreira, C
Citation: P. Garcia-martinez et al., Maximum likelihood for target location in the presence of substitutive noise, APPL OPTICS, 40(23), 2001, pp. 3855-3860
Citation: F. Goudail et al., Deconvolution of several versions of a scene perturbed by different defocus blurs: influence of kernel diameters on restoration quality and on robustness to kernel estimation, APPL OPTICS, 39(35), 2000, pp. 6602-6612
Citation: C. Chesnaud et al., Statistical region snake-based segmentation adapted to different physical noise models, IEEE PATT A, 21(11), 1999, pp. 1145-1157
Citation: V. Page et al., Improved robustness of target location in nonhomogeneous backgrounds by use of the maximum-likelihood ratio test location algorithm, OPTICS LETT, 24(20), 1999, pp. 1383-1385
Citation: O. Germain et P. Refregier, Snake-based method for the segmentation of objects in multichannel images degraded by speckle, OPTICS LETT, 24(12), 1999, pp. 814-816
Citation: H. Sjoberg et al., Comparison of the maximum likelihood ratio test algorithm and linear filters for target location in binary images, OPT COMMUN, 163(4-6), 1999, pp. 252-258