Search Results - distribution spatiale

  1. Distribution of duricrusted bauxites and laterites on the Bamiléké plateau (West Cameroon): constraints from GIS mapping and geochemistry by Momo, M.N., Yemefack, Martin, Tematio, P., Beauvais, A., Ambrosi, J.

    Published 2016
    “…Estimation of the mineral resources potential is an important issue for most of developing countries. The spatial distribution of bauxites and lateritic land surfaces on the Bamiléké plateau (West Cameroon) has been investigated with a Boolean modeling process into a GIS environment on the basis of geological constraints such as elevation, rock and soil types, and landscape morphology. …”
    Get full text
    Journal Article
  2. A new soil-landscape approach to the genesis and distribution of typic and vertic Argiudolls in the Rolling Pampa of Argentina by Morras, Hector, Moretti, Lucas Martin

    Published 2017
    “…A new sedimentological and geopedologic approach explains more accurately the development and spatial distribution of the main soils in the subregion. …”
    Get full text
    Get full text
    Get full text
    Capítulo de libro
  3. Spatial and temporal analysis of Rift Valley fever outbreaks in livestock in Uganda: a retrospective study from 2013 to 2022 by Arinaitwe, E., Atuhaire, D.K., Hasahya, Emmanuel, Nakanjako, G.K., Mwebe, R., Nizeyimana, G., Afayoa, M., Mwiine, F.N., Erume, J.

    Published 2025
    “…Maps were generated using QGIS software to illustrate the spatial distribution of RVF outbreaks. The distribution and trends were analyzed using the R programming language. …”
    Get full text
    Journal Article
  4. Spatial evapotranspiration, rainfall and land use data in water accounting - Part 1: review of the accuracy of the remote sensing data by Karimi, P., Bastiaanssen, Wim G.M.

    Published 2015
    “…This paper reviews the reliability of remote sensing algorithms to accurately determine the spatial distribution of actual evapotranspiration, rainfall and land use. …”
    Get full text
    Journal Article
  5. Spatial examination of social and environmental drivers of Middle East respiratory syndrome coronavirus (MERS-CoV) across Kenya by Lawrence, T.J., Kangogo, G.K., Fredman, A., Deem, S.L., Fèvre, Eric M., Gluecks, Ilona, Brien, J.D., Shacham E.

    Published 2024
    “…To answer our questions, we analyzed the spatial distribution of historical cases based on serological evidence of MERS-CoV at the county level and applied spatial statistical analysis to examine the spatial relationships of the MERS-CoV cases between 2016 and 2018 to climate, agriculture, and socio-demographic factors of agro-pastoralism. …”
    Get full text
    Journal Article
  6. Mapping genetic diversity of Cherimoya (Annona cherimola Mill.): application of spatial analysis for conservation and use of plant genetic resources by Zonneveld, M. van, Scheldeman, Xavier, Escribano, P., Viruel, M.A., Damme, Patrick van, García, W., Tapia, C., Romero, J., Siguenas, M., Hormaza, J.I.

    Published 2012
    “…We present spatial analyses to (1) improve the understanding of spatial distribution of genetic diversity of cherimoya natural stands and cultivated trees in Ecuador, Bolivia and Peru based on microsatellite molecular markers (SSRs); and (2) formulate optimal conservation strategies by revealing priority areas for in situ conservation, and identifying existing diversity gaps in ex situ collections. …”
    Get full text
    Journal Article
  7. Mapping Genetic Diversity of Cherimoya (Annona cherimola Mill.): Application of Spatial Analysis for Conservation and Use of Plant Genetic Resources by Van Zonneveld, Maarten J., Scheldeman, Xavier, Escribano, Pilar, Viruel, María A., Van Damme, Patrick, García, Willman, Tapia, César, Romero, José, Sigüeñas Saavedra, Segundo Manuel, Hormaza, José I.

    Published 2021
    “…We present spatial analyses to (1) improve the understanding of spatial distribution of genetic diversity of cherimoya natural stands and cultivated trees in Ecuador, Bolivia and Peru based on microsatellite molecular markers (SSRs); and (2) formulate optimal conservation strategies by revealing priority areas for in situ conservation, and identifying existing diversity gaps in ex situ collections. …”
    Get full text
    Get full text
    Artículo
  8. Landscape approach to assess key soil functional properties in the highlands of Cameroon: Repercussions of spatial relationships for land management interventions by Takoutsing, B., Martín, J.A.R., Weber, John C., Shepherd, Keith D., Sila, Andrew M., Tondoh, Jérôme E.

    Published 2017
    “…Kriged maps provided detailed visualization of soil properties at landscape scale, and helped to identify critical areas for targeted land management interventions to improve land quality. The spatial distribution of selected soil properties showed a well-defined pattern of higher concentrations in the lowlands and valleys and areas with permanent vegetation cover in both sites. …”
    Get full text
    Journal Article
  9. Drivers and spatial modelling of soil organic carbon in Argentinian subtropical forests: path towards sustainable management and climate mitigation by Manrique, Silvana M., Gaitan, Juan José, Balducci, Ezequiel Diego, Speranza, Flavio Cesar, Blundo, Cecilia, Gasparri, Ignacio, Zavala, Miguel A., Peri, Pablo Luis

    Published 2025
    “…Understanding how these factors influence the distribution of SOC can help assist to design more sustainable land-use practices, with the aim of promoting and preserving its SOC storage. …”
    Get full text
    Get full text
    Get full text
    Artículo
  10. A hierarchical method for soil erosion assessment and spatial risk modelling: a case study of Kiambu district in Kenya. by Okoth, Peter F.

    Published 2003
    “…These spatial attributes offer the opportunity to predict and view the distribution of the risk of erosion on the broader landscape and at different attention levels. …”
    Get full text
    Tesis
  11. Recent decline in suitable environmental conditions for African great apes by Junker, J, Blake, S, Boesch, C, Campbell, G., Toit, L. du, Duvall, C, Ekobo, A, Etoga, G., Galat-Luong, A, Gamys, J, Ganas-Swaray, J, Gatti, S, Ghiurghi, A, Granier, N, Hart, J, Head, J., Herbinger, I, Hicks, T.C, Huijbregts, B, Imong, I.S, Kuempel, N, Lahm, S, Lindsell, J, Maisels, F., McLennan, M, Martínez, L., Morgan, B, Morgan, D, Mulindahabi, F, Mundry, R, N’Goran, K.P, Normand, E, Ntongho, A, Okon, D.T, Petre, C, Plumptre, A, Rainey, H, Regnaut, S, Sanz, C., Stokes, E, Tondossama, A, Tranquilli, S, Sunderland-Groves, J., Walsh, P, Warren, Y, Williamson, E.A, Kuehl, H.S.

    Published 2012
    “…To predict the distribution of suitable environmental conditions (SEC) for eight African great ape taxa for a first time period, the 1990s and then project it to a second time period, the 2000s; to assess the relative importance of factors influencing SEC distribution and to estimate rates of SEC loss, isolation and fragmentation over the last two decades.Twenty‐two African great ape range countries.We extracted 15,051 presence localities collected between 1995 and 2010 from 68 different areas surveyed across the African ape range. …”
    Get full text
    Journal Article

Search Tools: