Page 56 - FGDP revista FEGLININ
P. 56

© FEGLININ                                                                                            ISSN 2594-2298

  | Año 7, No 28, enero – marzo 2024 |




                     •  [7] R. Ramos-Bernal, “Estudio de la susceptibilidad al deslizamiento de laderas en el Estado
                         de Guerrero, México, aplicando Tecnologías de Información Geográfica,” Universidad Rey
                         Juan Carlos, Madrid, 2018.
                     •  [8] INEGI, “Guía Para la Interpretación de Cartografía. Uso del Suelo y Vegetación. Escala
                         1:250,000; Serie IV,” Aguascalientes, 2012.
                     •  [9] INEGI, “Censo De Población y Vivienda 2020,” Mar. 2021.
                     •  [10] ABRAMS, M., HOOK, S. and RAMACHANDRAN, B., 2002. ASTER User Handbook.
                         Advanced  Spaceborne  Thermal  Emission  and  Reflection  Radiometer.  Version  2.  Jet
                         Propulsion Laboratory and EROS Data Center eds.
                     •  [11] USGS, 2015. AST_L1T Product User’s Guide. Version 1.0. Department of the Interior
                         U.S. Geological Survey ed.
                     •  [12]  CHAVEZ  JR,  Pat  S.,  1988.  An  improved  dark-object  subtraction  technique  for
                         atmospheric scattering correction of multispectral data. Remote sensing of environment, vol.
                         24, no. 3, pp. 459-479 DOI https://doi.org/10.1016/0034-4257(88)90019-3.
                     •  [13] VÁZQUEZ-JIMÉNEZ, R., et al, 2017c. Topographic Correction to Landsat Imagery
                         through Slope Classification by Applying the SCS+C Method in Mountainous Forest Areas.
                         ISPRS  International  Journal  of  Geo-Information,  vol.  6,  no.  9,  pp.  287  DOI
                         10.3390/ijgi6090287.
                     •  [14] PARK, S., CHOI, C., KIM, B. and KIM, J., 2013. Landslide Susceptibility Mapping
                         using  Frequency  Ratio,  Analytic  Hierarchy  Process,  Logistic  Regression,  and  Artificial
                         Neural Network Methods at the Inje Area, Korea. Environmental Earth Sciences, vol. 68, no.
                         5, pp. 1443-1464 DOI 10.1007/s12665-012-1842-5.
                     •  [15] CASTELLANA, L., TARANTINO, C., BLONDA, P.and PASQUARIELLO, G., 2004.
                         Bayesian  Approach  to  Land  Cover  Change  Detection  using  a  Priori  Scene  Description.
                         Geoscience and Remote Sensing Symposium, 2004. IGARSS '04. Proceedings. 2004 IEEE
                         International ed., IEEE, 20-24 Sept. 2004, DOI 10.1109/IGARSS.2004.1368682.
                     •  [16] CHUVIECO, E., 2010. Teledetección Ambiental: La Observación De La Tierra Desde
                         El Espacio. 1a. ed. Madrid, España: Ariel., Oct-2010 ISBN 978-84-344-3498-1.







































  Pág.   56
   51   52   53   54   55   56   57   58