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Comparison of the ocean inherent optical properties obtained from measurements and inverse modeling.
Loisel H, Stramski D, Mitchell BG, Fell F, Fournier-Sicre V, Lemasle B, Babin M. Loisel H, et al. Among authors: stramski d. Appl Opt. 2001 May 20;40(15):2384-97. doi: 10.1364/ao.40.002384. Appl Opt. 2001. PMID: 18357247
A model developed recently by Loisel and Stramski [Appl. Opt. 39, 3001-3011 (2000)] for estimating the spectral absorption a(lambda), scattering b(lambda), and backscattering b(b)(lambda) coefficients in the upper ocean from the irradiance reflectance just beneath the sea …
A model developed recently by Loisel and Stramski [Appl. Opt. 39, 3001-3011 (2000)] for estimating the spectral absorption a(lambda), …
An overview of approaches and challenges for retrieving marine inherent optical properties from ocean color remote sensing.
Werdell PJ, McKinna LIW, Boss E, Ackleson SG, Craig SE, Gregg WW, Lee Z, Maritorena S, Roesler CS, Rousseaux CS, Stramski D, Sullivan JM, Twardowski MS, Tzortziou M, Zhang X. Werdell PJ, et al. Among authors: stramski d. Prog Oceanogr. 2018 Jan;160:186-212. doi: 10.1016/j.pocean.2018.01.001. Epub 2018 Jan 6. Prog Oceanogr. 2018. PMID: 30573929 Free PMC article.
A global compilation of in situ aquatic high spectral resolution inherent and apparent optical property data for remote sensing applications.
Casey KA, Rousseaux CS, Gregg WW, Boss E, Chase AP, Craig SE, Mouw CB, Reynolds RA, Stramski D, Ackleson SG, Bricaud A, Schaeffer B, Lewis MR, Maritorena S. Casey KA, et al. Among authors: stramski d. Earth Syst Sci Data. 2020 May 19;12(2):1123-1139. doi: 10.5194/essd-12-1123-2020. Earth Syst Sci Data. 2020. PMID: 36419961 Free PMC article.
33 results