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105 results for “La Réunion”
Solar and meteorological data collected from the Saint Paul Le Carat station (La Réunion) by the ENERGY-Lab at the University of La Reunion between October 2022 and December 2024
<p>Scientific data provided by ENERGY-Lab located at the University of La Reunion. These data come from solar and meteorological stations present in the following territories: La Reunion, Comoros, Madagascar, Mauritius, Seychelles and South Africa. A THREDDS Data Server was created as part of the IOS-net (Indian Ocean Solar Network, https://galilee.univ-reunion.fr) project which aims to study the solar field and the optimisation of intelligent solar energy systems in the countries of the IOC (Indian Ocean Commission). These data are served by Unidata's Thematic Realtime Environmental Distributed Data Services (THREDDS) Data Server (TDS) in a variety of interoperable data services and output formats.</p> <p>Dataset is available from the THREDDS Data Server to this url: <a href="https://galilee.univ-reunion.fr/thredds/catalog/dataStations/catalog.html"> https://galilee.univ-reunion.fr/thredds/catalog/dataStations/catalog.html</a>.</p> <p>Data are also viewable and exploitable on the mobile application of the IOS-net project. The SolarIO app is downloadable in all stores.</p> <p><strong><em>ENERGY-Lab data may be reused, provided that related metadata explaining the data has been reviewed by the user, and that the data are appropriately acknowledged.</em></strong></p>
Solar and meteorological data collected from the Saint Joseph Marie station (La Réunion) by the ENERGY-lab at the University of La Reunion between September 2013 and June 2015
<p>Scientific data provided by ENERGY-lab located at the University of La Reunion. These data come from solar and meteorological stations present in the following territories: La Reunion, Comoros, Madagascar, Mauritius, Seychelles and South Africa. A THREDDS Data Server was created as part of the IOS-net (Indian Ocean Solar Network, https://galilee.univ-reunion.fr) project which aims to study the solar field and the optimisation of intelligent solar energy systems in the countries of the IOC (Indian Ocean Commission). These data are served by Unidata's Thematic Realtime Environmental Distributed Data Services (THREDDS) Data Server (TDS) in a variety of interoperable data services and output formats.</p> <p>Dataset is available from the THREDDS Data Server to this url: <a href="https://galilee.univ-reunion.fr/thredds/catalog/dataStations/catalog.html"> https://galilee.univ-reunion.fr/thredds/catalog/dataStations/catalog.html</a>.</p> <p>Data are also viewable and exploitable on the mobile application of the IOS-net project. The SolarIO app is downloadable in all stores.</p> <p><strong><em>ENERGY-lab data may be reused, provided that related metadata explaining the data has been reviewed by the user, and that the data are appropriately acknowledged.</em></strong></p>
Fig. 1 in Découverte à La Réunion de Elaphoglossum multisquamosum (Dryopteridaceae), connue jusqu'alors comme endémique de Madagascar
Fig. 1.– Carte de répartition de Elaphoglossum multisquamosum Bonap. (cercles rouges) et E. poolii (Baker) Christ (cercles noirs) à Madagascar et La Réunion.
Fig. 2. – Elaphoglossum multisquamosum Bonap. A in Découverte à La Réunion de Elaphoglossum multisquamosum (Dryopteridaceae), connue jusqu'alors comme endémique de Madagascar
Fig. 2. – Elaphoglossum multisquamosum Bonap. A. Ecailles du limbe; B. Ecailles du pétiole; C. Plante entière fertile; D–E. Aspect général; F. Pétiole; G. Détail du limbe stérile, face inférieure; H. Détail du limbe stérile, face supérieure; I. Rhizome; J–K. Ecailles du rhizome; L. Rhizome. [A–B, I–J: Rouhan 443, P00749412; C: Waterlot s.n., P01359928; D: Rouhan 473, P00749446; E: Robert 1335, P00749889; F–H: Proisy 249, P00636592; K–L: Andriamihajarivo 45, P01031713] [Photos: A–D, F–L: G. Rouhan; E: Y. Robert]
Figure 4 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 4. – Canthigaster caeruleolineata new species, SMNS 27147, holotype 86 mm SL, southwestern Indian Ocean, La Réunion, Anse des Cascades, 21°11'10.68"S 55°50'4.45"E. Photograph by Julien Wickel. Colour pattern after one month of preservation; detail of head showing dermal denticle pattern.
Figure 1 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 1. – Stations in La Réunion where Canthigaster caeruleolineata new species was collected. Overview of the island (A); Holotype locality at Anse des Cascades (B); Locality of the additional specimen during the Biolave 2007 Cruise (C). Bathymetry is indicated in the maps.
Figure 5 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 5. – Canthigaster caeruleolineata new species, southwestern Indian Ocean, La Réunion, 11.5 km south of Anse des Cascades, ca. 27°17'19"S, 55°49'09"E. Photograph by Aquarium de La Réunion, 2007. Fresh colouration. Specimen not preserved.
Figure 6 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 6. – Maximum-likelihood tree for the genus Canthigaster. Numbers on nodes denote ultrafast bootstrap approximation (UFboot) values with 1000 replicates and the SH-like approximate likelihood ratio test (SH-aLRT) also with 1000 bootstrap replicates. UFboot and SH-aLRT displayed only for nodes with values below 90.
Figure 8 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 8. – Boulder habitat at Anse des Cascades, La Réunion, where the holotype of Canthigaster caeruleolineata n. sp. was collected. Photograph: Julien Wickel.
Figure 3 in Canthigaster caeruleolineata, a new species of toby (Teleostei: Tetraodontidae) from La Réunion, southwestern Indian Ocean
Figure 3. – Canthigaster caeruleolineata new species, SMNS 27147, holotype 86 mm SL, southwestern Indian Ocean, La Réunion, Anse des Cascades, 21°11'10.68"S 55°50'4.45"E. Photograph by Julien Wickel. Colour pattern after one month of preservation; left side of body.
Underwater images collected by Scuba diving in La-Saline, Réunion - 2015-06-16
<i>This dataset was collected by Scuba diving in La-Saline, Réunion - 2015-06-16.</i> <br> <br><br>Underwater or aerial images collected by scientists or citizens can have a wide variety of use for science, management, or conservation. These images can be annotated and shared to train IA models which can in turn predict the objects on the images. We provide a set of tools (hardware and software) to collect marine data, predict species or habitat, and provide maps.<br> Underwater Images Collected by Scuba Diving in Réunion Island during the Hyscores Project. <br> For more details, visit the <a href="https://archimer.ifremer.fr/doc/00350/46122/" target="_blank">Hyscores Project</a>.<br><br> <h2> Generic folder structure </h2> YYYYMMDD_COUNTRYCODE-optionalplace_device_session-number <br> ├── DCIM : folder to store videos and photos depending on the media collected. <br> ├── GPS : folder to store any positioning related file. If any kind of correction is possible on files (e.g. Post-Processed Kinematic thanks to rinex data) then the distinction between device data and base data is made. If, on the other hand, only device position data are present and the files cannot be corrected by post-processing techniques (e.g. gpx files), then the distinction between base and device is not made and the files are placed directly at the root of the GPS folder. <br> │ ├── BASE : files coming from rtk station or any static positioning instrument. <br> │ └── DEVICE : files coming from the device. <br> ├── METADATA : folder with general information files about the session. <br> ├── PROCESSED_DATA : contain all the folders needed to store the results of the data processing of the current session. <br> │ ├── BATHY : output folder for bathymetry raw data extracted from mission logs. <br> │ ├── FRAMES : output folder for georeferenced frames extracted from DCIM videos. <br> │ ├── IA : destination folder for image recognition predictions. <br> │ └── PHOTOGRAMMETRY : destination folder for reconstructed models in photogrammetry. <br> └── SENSORS : folder to store files coming from other sources (bathymetry data from the echosounder, log file from the autopilot, mission plan etc.). <br> <h2> Software </h2> <br> All the raw data was processed using our <a href="https://github.com/SeatizenDOI/plancha-workflow/releases/tag/v1.0.3" target="_blank">worflow</a>. <br>All predictions were generated by our <a href="https://github.com/SeatizenDOI/plancha-inference/releases/tag/v1.0.0" target="_blank">inference pipeline</a>. <br>You can find all the necessary scripts to download this data in this <a href="https://github.com/SeatizenDOI/zenodo-tools" target="_blank">repository</a>. <br>Enjoy your data with <a href="https://github.com/SeatizenDOI" target="_blank">SeatizenDOI</a>! <br>
Figure 2 in Premier signalement de Pseudanthias bicolor (Serranidae) sur différents habitats artificiels à La Réunion
Figure 2. - Spécimens de Pseudanthias bicolor photographiés à La Réunion. A: 9 octobre 2012 sur un récif artificiel de la baie de La Possession (–25 m); B: 22 mai 2013 sur l'épave du navire Sea Venture en baie de Saint-Paul (–45 m). [Specimens of Pseudanthias bicolor photographed at Reunion Island. A: 9 October 2012 on an artificial reef in La Possession Bay (–25 m); B: 22 May 2013 on the shipwreck Sea Venture in Saint-Paul Bay (–45 m).]
Figure 1 in Premier signalement de Pseudanthias bicolor (Serranidae) sur différents habitats artificiels à La Réunion
Figure 1. - Géomorphologie côtière de La Réunion et habitats artificiels littoraux des baies de Saint-Paul et La Possession. 1 et 2: stations de signalement des deux spécimens de Pseudanthias bicolor décrits dans cette étude. [Coastal geomorphology of Reunion Island and artificial habitats in Saint-Paul and La Possession bays. 1 and 2: stations recording the two specimens of Pseudanthias bicolor described in this study.]
Figure 4 in Influence des facteurs environnementaux sur la structure des peuplements ichtyologiques de l'île de La Réunion (Sud-Ouest de l'océan Indien)
Figure 4. - ACC des variables environnementales et des espèces caractéristiques. A. sexf: Abudefduf sexfasciatus; A. vaig: Abudefduf vaigiensis; A. bloc: Acanthurus blochii; A. duss: Acanthurus dussumieri; A. gutt: Acanthurus guttatus; A. thom: Acanthurus thompsoni; A. caer: Anampses caeruleopunctatus; A. mele: Anampses meleagrides; A. furc: Aphareus furca; A. holo: Apogon holotaenia; Apo. sp: Apogon sp.; A. vire: Aprion virescens; A. hisp: Arothron hispidus; B. viri: Balistoides viridescens; B. anth: Bodianus anthioides; B. axil: Bodianus axillaris; B. dian: Bodianus diana; B. manc: Bothus mancus; C. nata: Canthigaster natalensis; C. bisp: Centropyge bispinosa; C. dolo: Chaetodon dolosus; C. mela: Chaetodon melannotus; C. line: Cheilodipterus lineatus; C. lepi: Chromis lepidolepis; C. web: Chromis weberi; C. cuvi: Coris cuvieri; C. trun: Ctenochaetus truncatus; E. mida: Ecsenius midas; E. flav: Epinephelus flavocaeruleus; E. macr: Epinephelus macrospilos; E. merr: Epinephelus merra; E. mult: Epinephelus multinotatus; E. brev: Exallias brevis; G. gran: Gymnocranius grandoculis; G. gris: Gymnothorax griseus; H. nebu: Halichoeres nebulosus; H. scap: Halichoeres scapularis; H. fasc.: Hemigymnus fasciatus; K. cine: Kyphosus cinerascens; L. nebu: Lethrinus nebulosus; L. nota: Lutjanus notatus; M. bipa: Macropharyngodon bipartitus; M. nige: Melichthys niger; M. flav: Mulloidichthys flavolineatus; N. thyn: Naso thynnoides; O. taen: Ostorhinchus taeniophorus; P. hepa: Paracanthurus hepatus; P. hept: Parupeneus heptacanthus; P. rube: Parupeneus rubescens; P. schw: Pempheris schwenckii; P. picu: Plectorhinchus picus; P. line: Plotosus lineatus; P. rich: Pomachromis richardsoni; P. evid: Ptereleotris evides; S. grac: Saurida gracilis; S. scab: Scarus scaber; S. crum: Selar crumenophthalmus; S. arge: Siganus argenteus; Sig. sp: Siganus sp.; S. suto: Siganus sutor; S. varie: Synodus variegatus; T. ambl: Thalassoma amblycephalum; T. hard: Thalassoma hardwicke; T. fusc: Torpedo fuscomaculata; V. stri: Valenciennea strigata; X. auro: Xanthichthys auromarginatus. Le coefficient de corrélation (r) entre espèces et variables environnementales est de 0,92 sur l'axe 1 et de 0,93 sur l'axe 2. Le test de Monte-Carlo réalisé avec 1000 permutations sur tous les axes donne des valeurs significatives (P = 0,001). [Biplot CCA of environmental variables and characteristic species. Correspondence with species names, Cf. French label. The species-environment correlation factor value (r) is 0.92 on axis 1 and 0.93 on axis 2. The Monte-Carlo test processed with 1000 permutations for all canonical axes produces significant values (P = 0.001).]
Figure 3 in Influence des facteurs environnementaux sur la structure des peuplements ichtyologiques de l'île de La Réunion (Sud-Ouest de l'océan Indien)
Figure 3. - ACC des variables environnementales et des secteurs échantillonnés, identifiés par leur localisation sur l'île: z Nord-Ouest; O Nord-Est; • Sud-Ouest; Z Sud-Est. La correspondance des noms des secteurs est disponible sur la Fig. 1. Le coefficient de corrélation (r) entre secteurs et variables environnementales est de 0,92 sur l'axe 1 et de 0,93 sur l'axe 2. Le test de Monte-Carlo réalisé avec 1000 permutations sur tous les axes donne des valeurs significatives (P = 0,001). [Biplot CCA of environmental variables and sectors categorized by their localization on the island: z North- West; O North-East; • South-West; Z South-East. The correspondence with sector names is available on Fig. 1. The sector-environment correlation factor value (r) is 0.92 on axis 1 and 0.93 on axis 2. The Monte-Carlo test processed with 1000 permutations for all canonical axes produces significant values (P = 0.001).]
Figure 2 in Influence des facteurs environnementaux sur la structure des peuplements ichtyologiques de l'île de La Réunion (Sud-Ouest de l'océan Indien)
Figure 2. - Distribution géographique des espèces. (1) Circumtropicale; (2) Indopacifique; (3) Indo-Ouest Pacifique et mer Rouge; (4) Sud-Ouest de l'océan Indien. [Geographical distribution of sampled species. (1) Circumtropical; (2) Indo-Pacific; (3) Indo-West Pacific and Red Sea; (4) South-Western Indian Ocean.]
Figure 1 in Influence des facteurs environnementaux sur la structure des peuplements ichtyologiques de l'île de La Réunion (Sud-Ouest de l'océan Indien)
Figure 1 - Localisation des secteurs échantillonnés et géomorphologie côtière de La Réunion. [Location of sampled sectors and coastal geomorphology of Réunion Island.]
Linked collectors and determiners for: Aix-Marseille Université - MARS herbarium – Herbier Jacob de Cordemoy, La Réunion.
Natural history specimen data linked to collectors and determiners held within, "Aix-Marseille Université - MARS herbarium – Herbier Jacob de Cordemoy, La Réunion". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/763fb11e-061f-45a4-a24c-4dd4659b3a24">https://bionomia.net/dataset/763fb11e-061f-45a4-a24c-4dd4659b3a24</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/763fb11e-061f-45a4-a24c-4dd4659b3a24">https://gbif.org/dataset/763fb11e-061f-45a4-a24c-4dd4659b3a24</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Découverte à La Réunion de Elaphoglossum multisquamosum (Dryopteridaceae), connue jusqu'alors comme endémique de Madagascar.
Natural history specimen data linked to collectors and determiners held within, "Découverte à La Réunion de Elaphoglossum multisquamosum (Dryopteridaceae), connue jusqu'alors comme endémique de Madagascar". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/a34a76c4-f490-4ef5-8a4d-4fad13aae029">https://bionomia.net/dataset/a34a76c4-f490-4ef5-8a4d-4fad13aae029</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/a34a76c4-f490-4ef5-8a4d-4fad13aae029">https://gbif.org/dataset/a34a76c4-f490-4ef5-8a4d-4fad13aae029</a>. Formatted as a Frictionless Data package.
Figure 2 in Brittle stars (Echinodermata: Ophiuroidea) from La Réunion and the systematic position of Ophiocanops Koehler, 1922
Figure 2. SEM images of Ophiocanops multispina sp. nov. holotype (MNHN EcOs 23818–23820). A, dorsal view; B, dorsal disc; C, dorsal arm plates beyond gonadal chamber; D, disc spine; E, arm laterally; F, dorsal arm spine; G, ventral arm spines; H, lateral arm plate; I, base of dorsal arm spine; J, ventral overview; K, first ventral arm plate; L, arm ventrally; M, proximal face of vertebra; N, distal face of vertebra. Abbreviations: AS, adoral shield; DAP, dorsal arm plate; LAP, lateral arm plate; M, madreporite; NO, nerve opening; OP, oral papillae; SA, spine articulation; VAP, ventral arm plate. Scale bars in millimetres.
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