Sebastien Rapinel

Grade
Ingénieur de recherche
Coordonnées
Coordonnées

Tél.: 02 99 14 18 47

Mail : sebastien.rapinel(at)univ-rennes2.fr

 

Fonctions et responsabilités

Ingénieur de recherche en télédétection et biodiversité

 

CV

Depuis 2016 : Ingénieur de recherche, UMR LETG 6554 CNRS/Université de Rennes

2013 - 2016 : Chercheur, UMR ECOBIO 6553 CNRS/Université de Rennes

2013 : Chargé d'étude, Conservatoire Botanique National de Brest

2008-2012 : Doctorat de géographie (environnement télédétection) , dir. L. Hubert-Moy, co-dir. B. Clément, Université de Rennes

 

Distinction

Activités de recherche

Thématiques de recherche

  • Télédétection
  • Zones humides
  • Biodiversité végétale
  • Gestion de l'environnement

Projets de recherche

Activités d'enseignement

Enseignements en formation initiale

  • Traitement de l’image appliquée à la télédétection
  • Géomatique et restauration des milieux
  • Photo-interprétation
  • CAO / DAO
  • Analyse de cartes de végétation

Enseignement en formation à distance 

  • Master DEGIP (2024 - ...) : création et tutorat du module "Paysages et zone humide"
  • Campus numérique ENVAM (2015 - 2023) : participation à la création et au tutorat de 4 modules  ("Traitement d’images en télédétection", "Caractériser et délimiter une zone humide", "Fonctions et valeurs des zones humides", "Identifier, cartographier et gérer les habitats naturels")

Formation interne CNRS

  • Utilisation avancée du logiciel eCognition (2013)

Co-encadrement de thèses

Co-encadrement de stages

  • Liam Loizeau, Master 2, Université Rennes 2, 2023.
  • Anthony Nicolas, Master 2, Université Rennes 2, 2022.
  • Quentin Demarquet, Master 2, Université Rennes 2, 2021.
  • Léa Panhelleux, Master 2, Université Rennes 2, 2020.
  • Clémence Rozo, Master 2, Agrocampus Ouest, 2018.
  • Elodie Fabre, Master 2, Université  Rennes 2, 2018.
  • Elise Séveno, Master 1, Université Rennes 2, 2018.
Publications

2025-2029

[41] Loizeau-Woollgar L., Rapinel S., Pellen J., Clément B., Hubert-Moy L., 2025. Contribution of ECOSTRESS thermal imagery to wetland mapping: Application to heathland ecosystems, ISPRS Journal of Photogrammetry and Remote Sensing, 220, 649-660. https://doi.org/10.1016/j.isprsjprs.2025.01.014

2020-2024

[40] Demarquet Q., Rapinel S., Gore O., Dufour S., Hubert-Moy L., 2024. Continuous change detection outperforms traditional post-classification change detection for long-term monitoring of wetlands, International Journal of Applied Earth Observation and Geoinformation, Volume 133,
104142, https://doi.org/10.1016/j.jag.2024.104142.

[39] Demarquet, Q., Rapinel, S., Arvor, D., Corgne, S., & Hubert-Moy, L., 2024. Satellite Long-Term Monitoring of Wetland Ecosystem Functioning in Ramsar Sites for Their Sustainable Management. Sustainability, 16(15), 6301. https://doi.org/10.3390/su16156301

[38] Perrin G., Rapinel, S., Choisnet G., Clément, B., Bouzillé J.-B., Hubert-Moy, L., 2023. La démarche Ellenberg : une alternative simple et robuste à la démarche réglementaire pour la délimitation des zones humides en France métropolitaine. Sciences Eaux & Territoires, (43), 37–42. https://doi.org/10.20870/Revue-SET.2023.43.7506

[37] Panhelleux L., Rapinel S., Lemercier B., Gayet G., Hubert-Moy L., 2023. A 5 m dataset of digital terrain model derivatives across mainland France, Data in Brief, Volume 49, 109369, ISSN 2352-3409, https://doi.org/10.1016/j.dib.2023.109369.

[36] Panhelleux L., Rapinel S., Hubert-Moy L., 2023. Natural grasslands across mainland France: A dataset including a 10 m raster and ground reference points, Data in Brief, 109348, ISSN 2352- 3409, https://doi.org/10.1016/j.dib.2023.109348.

[35] Rapinel S., Panhelleux L., Gayet G., Vanacker R., Lemercier B., Laroche B., Chambaud F., Guelmami A., Hubert-Moy L., 2023. National wetland mapping using remote-sensing-derived environmental variables, archive field data, and artificial intelligence, Heliyon, Volume 9, Issue 2, e13482, https://doi.org/10.1016/j.heliyon.2023.e13482.

[34] Demarquet Q, Rapinel S, Dufour S, Hubert-Moy L., 2023. Long-Term Wetland Monitoring Using the Landsat Archive: A Review, Remote Sensing, 15(3), 820. https://doi.org/10.3390/rs15030820

[33] Perrin G., Rozo C., Bioret F., Hubert-Moy L., Rapinel S., 2023. Predicting the suitability area of heath alliances over France using open-source data, Plant Biosystems - An International Journal Dealing with all Aspects of Plant Biology, 1-13, https://doi.org/10.1080/11263504.2023.2165562

[32] Gayet G., Botcazou F., Gibeault-Rousseau J.M., Hubert-Moy L., Rapinel S., Lemercier B, 2022, Field dataset of punctual observations of soil properties and vegetation types distributed along soil moisture gradients in France, Data in Brief, Volume 45, 108632, ISSN 2352-3409, https://doi.org/10.1016/j.dib.2022.108632.

[31] Hubert-Moy L., Rozo C., Perrin G., Bioret F., Rapinel S., 2022. Large-scale and fine-grained mapping of heathland habitats using open-source remote sensing data, Remote sensing in Ecology and Conservation, https://doi.org/10.1002/rse2.253

[30] Rapinel S., Panhelleux L., Lalanne A., Hubert-Moy L., 2021. Combined use of environmental and spectral variables with vegetation archives for large-scale modeling of grassland habitats. Progress in Physical Geography: Earth and Environment. https://doi.org/10.1177/03091333211023689

[29] Rapinel S., Hubert-Moy L., 2021. One-Class Classification of Natural Vegetation Using Remote Sensing: A Review, Remote Sensing, 13(10), 1892

[28] Hubert-Moy L., Fabre E., Rapinel S., 2020. Contribution of SPOT-7 multi-temporal imagery for mapping wetland vegetation, European Journal of Remote Sensing, 53:1, 201-210

[27] Perrin G., Rapinel S., Hubert-Moy L., Bioret F., 2020, Bioclimatic dataset of Metropolitan France under current conditions derived from the WorldClim model, Data in Brief, https://doi.org/10.1016/j.dib.2020.105815

[26] Mercier A., Betbeder J., Rapinel S., Jegou N., Baudry J., Hubert-Moy L., 2020. Evaluation of Sentinel-1 and -2 time series for estimating LAI and biomass of wheat and rapeseed crop types, J. of Applied Remote Sensing, 14(2), 024512

[25]  Rapinel S., Betbeder J., Denize J., Fabre E., Pottier E., Hubert-Moy L., 2020. SAR analysis of wetland ecosystems: Effects of band frequency, polarization mode and acquisition dates, ISPRS Journal of Photogrammetry and Remote Sensing 170 103–113

[23] Rapinel, S., Rozo, C., Delbosc, P., Arvor, D., Thomas, A., Bouzille, J. B., ... & Hubert-Moy, L. (2020). Mapping the functional dimension of vegetation series in the Mediterranean region using multitemporal MODIS data. GIScience & Remote Sensing, 57(1), 60-73.

2015-2019

[22] Hubert-Moy, L., Thibault, J., Fabre, E., Rozo, C., Arvor, D., Corpetti, T., & Rapinel, S. (2019). Time-series spectral dataset for croplands in France (2006–2017). Data in brief, 27, 104810.

[21] Rapinel, S., Fabre, E., Dufour, S., Arvor, D., Mony, C., & Hubert-Moy, L. (2019). Mapping potential, existing and efficient wetlands using free remote sensing data. Journal of environmental management, 247, 829-839.

[20] Rapinel, S., Mony, C., Lecoq, L., Clement, B., Thomas, A., & Hubert-Moy, L. (2019). Evaluation of Sentinel-2 time-series for mapping floodplain grassland plant communities. Remote sensing of environment, 223, 115-129.

[19] Hubert-Moy, L., Thibault, J., Fabre, E., Rozo, C., Arvor, D., Corpetti, T., & Rapinel, S. (2019). Mapping Grassland Frequency Using Decadal MODIS 250 m Time-Series: Towards a National Inventory of Semi-Natural Grasslands. Remote Sensing, 11(24), 3041.

[18] Rapinel, S., Clément, B., & Hubert-Moy, L. (2019). Cartographie des zones humides par télédétection: approche multi-scalaire pour une planification environnementale. Cybergeo: European Journal of Geography.

[17] Rapinel, S., Rossignol, N., Hubert‐Moy, L., Bouzillé, J. B., & Bonis, A. (2018). Mapping grassland plant communities using a fuzzy approach to address floristic and spectral uncertainty. Applied Vegetation Science, 21(4), 678-693.

[16] Rapinel S.; Rossignol N.; Gore O.; Jambon O.; Bouger G.; Mansons J.; Bonis A., 2018. Daily Monitoring of Shallow and Fine-Grained Water Patterns in Wet Grasslands Combining Aerial LiDAR Data and In Situ Piezometric Measurements. Sustainability, 10, 708 doi:10.3390/su10030708.

[15] Rapinel S.; Dusseux P.; Lalanne A.; Bonis A.; Bouzillé J.-B.; Hubert Moy L., 2018. Structural and functional mapping of geosigmeta in Atlantic coastal marshes (France) using a satellite time series. Plant Biosystems. DOI 10.1080/11263504.2017.1418447

[14] Rapinel S., Dufour S., Clément B., Hubert Moy L., 2017. Fine-scale monitoring of long-term wetland loss using LiDAR data and historical aerial photographs: the example of the Couesnon floodplain, France, Wetlands. doi.org/10.1007/s13157-017-0985-2.

[13] Lafage D., Bonis A., Rapinel S., Bouzillé J.-B., 2017. Using landscape metrics on satellite imagery to assess conservation status of Natura 2000 habitats, Documents  Phytosociologiques, 6, 394–411.

[12] Sellin V., Magnanon S., Gourmelon F., Delassus L., Rapinel S., Janvre A., Debaine F., Hubert Moy L., Nabucet J., Clément B., David L., 2017. Cartographie de la végétation par télédétection : résultats d’une étude de faisabilité menée dans l’ouest de la France, Documents  Phytosociologiques, 6, 412–436.

[11] Rapinel S., Hubert-Moy, L., Clément, B., & Maltby, E. 2016. Mapping wetland functions using Earth observation data and multi-criteria analysis, Environmental Monitoring and Assessment, 188(11). doi:10.1007/s10661-016-5644-1

[10] Cazals C., Rapinel S., Frison P.-L., Bonis A., Mercier G., Mallet C., et al. 2016. Mapping and Characterization of Hydrological Dynamics in a Coastal Marsh Using High Temporal Resolution Sentinel-1A Images. Remote Sensing, 8(7), 570. doi:10.3390/rs8070570

[9]  Rapinel S., Bouzillé J.B., Oszwald J., Bonis A., 2015. Use of bi-Seasonal Landsat-8 Imagery for Mapping Marshland Plant Community Combinations at the Regional Scale, Wetlands, 35(6), 1043-1054.

[8] Rapinel S., Bonis A., Oszwald J., Bouzillé J.B., 2015. Cartographie des végétations herbacées des marais littoraux à partir de données topographiques LiDAR, Revue Française de Photogrammétrie et Télédétection, 210, 17-21.

[7] Betbeder J., Rapinel S., Corgne S., Pottier E., Hubert-Moy L., 2015. TerraSAR-X dual-pol time series for mapping of wetland vegetation, ISPRS Journal of Photogrammetry and Remote Sensing, 107, 90-98.

[6] Rapinel S., Hubert-Moy L., Clément B., 2015. Combined use of LiDAR data and multispectral remotely-sensed imagery for wetland habitat mapping, International Journal of Applied Earth Observation and Geoinformation, 37, 56-64.

[5]  Rapinel S., Hubert-Moy L., Clément B., Nabucet J., Cudennec C., 2015. Drainage network extraction and hydrogeomorphological characterization using LiDAR-derived DTM in wetlands, Hydrology research, 46(2), 276-290.

2010-2015

[4]  Rapinel S., Clément B., Magnanon S., Sellin V., Hubert-Moy L., 2014. Identification and mapping of natural vegetation in a coastal site using a Worldview-2 satellite image, Journal of Environmental Management, 144, 236-246.

[3] Betbeder J., Rapinel S., Corpetti T., Pottier E., Corgne S., Hubert-Moy L., 2014. Multi-temporal classification of TerraSAR-X data for wetland vegetation mapping, Journal of Applied Remote Sensing, 8(1), 083648.

[2] Dufour S., Bernez Y., Betbeder J., Corgne S., Hubert-Moy L., Nabucet J., Rapinel S., Sawtschuk J., Trollé C., 2013. Monitoring restored riparian vegetation: how can recent developments in remote sensing sciences help ? Knowledge and management of aquatic ecosystems, 410, 10.

[1] Maréchal C., Pottier E., Hubert-Moy L., Rapinel S., 2012. One year wetland survey investigations from a quad-pol Radarsat-2 time series SAR images. Canadian Journal of Remote Sensing, 38(3), 240-252.