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73 results for “environmental protection”
Fig. 8 in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 8. Pardosa maisa, male, A, B = mal left palp, A = ventral, B = lateral, C = male, habitus. Scale bars: 1 mm for A–B, 3 mm for C
Fig. 3 in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 3. Pitfall traps used at Subotica Sandland in 2014. A) in situ at habitat M1, Locality 1. B) Construction of the traps 1) wire mesh, 2) wooden sticks, 3) sampling cup, 4) plastic
Fig. 2 in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 2. Position of the localities at Subotica Sandland (Serbia) in 2014; Locality 1: Krčevine, Locality 2: Livada kod Djavolovog Kanala, Locality 3: Livada kod Stare škole. Habitats: M1 (Chrysopogonetum pannonicum), W1 (Populus alba), W2 (P. alba + P. nigra), W3 (Quercus robur + P. alba), W4 (Robinia pseudoacacia), M2 (Festucetum vaginate danubiale), W5 (P. alba + P. canascens), F (Carex spp.), M3 (Molinietum caeruleae), W6 (Celtis ocidentalis)
Fig. 5. Gnaphosa mongolica, A–C in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 5. Gnaphosa mongolica, A–C = male left palp, A = retrolateral, B = ventral, C = prolateral, D = epigyne, ventral, E = vulva, dorsal. Scale bars: 1 mm for A–C, 0.5 mm for D–E
Fig. 4 in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 4. Argenna patula, male palp: A = conductor of the right, expanded palp, B = left palp, retrolateral. Scale bars: 0.1 mm for A, 0.5 mm for B
Fig. 13. Theridion uhligi, A–C male left palp, A in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 13. Theridion uhligi, A–C male left palp, A = retrolateral, B = ventral, C = prolateral, D–E = female epigyne in clove oil, D = ventral, E = dorsal, F = male habitus. Scale bars: 0.5
Fig. 12. Tallusia vindobonensis, A–B in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 12. Tallusia vindobonensis, A–B = male left palp, A = retrolateral, B = detail of the lamella characteristica, C = female epigyne, D = vulva dorsal. Scale bars: 0.5 mm for A, 0.1 mm for B, 0.2 mm for C–D
Figure 2 in Harvestmen (Arachnida: Opiliones) from the Atlantic Forest of the Fernão Dias Environmental Protection Area, southern Minas Gerais, Brazil
Figure 2. Harvestmen records at the Fernão Dias EPA, Gonçalves municipality, southern Minas Gerais state: A) Ampheres luteus (Giltay, 1928). B) Megapachylus anomalus (Mello-Leitão, 1922). C) Gonyleptes pseudogranulatus (Soares, 1946). D) Munequita sp. / Registros de opiliones de la APA Fernão Dias, municipio de Gonçalves, sur del estado de Minas Gerais: A) Ampheres luteus (Giltay, 1928). B) Megapachylus anomalus (Mello-Leitão, 1922). C) Gonyleptes pseudogranulatus (Soares, 1946). D) Munequita sp.
Figure 1 in Harvestmen (Arachnida: Opiliones) from the Atlantic Forest of the Fernão Dias Environmental Protection Area, southern Minas Gerais, Brazil
Figure 1. Sampling areas for harvestmen (Arachnida) in the Atlantic Forest of the Fernão Dias EPA in the municipality of Gonçalves, southern Minas Gerais state, in mixed and seasonal semideciduous forests. / Áreas de muestreo para opiliones (Arachnida) en la Mata Atlántica de la APA Fernão Dias en el municipio de Gonçalves, sur del estado de Minas Gerais, en bosques semideciduos mixtos y estacionales.
Figure 1 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 1 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Lenticular leaf gall on Bignoniaceae sp.1, b) Linear leaf gall on Varronia curassavica Jacq. (Boraginaceae), c) Lenticular leaf gall on Protium brasiliense (Spr.) Engl. (Burseraceae), d-e) Galls on Andira fraxinifolia Benth. (Fabaceae): d) globoid, hairy leaf gall, e) Fusiform leaf vein gall, f) Fruit gall induced by Cecidomyiidae on Ocotea notata (Ness) Mez. (Lauraceae).
Figure 4 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 4 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Fusiform stem gall on Smilax rufescens Griseb (Smilacaceae), b-c) Leaf galls on Lantana fucata Lindl. (Verbenaceae): b) Globoid, c) Cylindrical.
Figure 3 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 3 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Lenticular leaf gall on Eugenia copacabanensis Kiaersk. (Myrtaceae), b) Flower bud gall on Neomitranthes obscura (DC.) N. J. E. Silveira (Myrtaceae), c-d) Leaf galls on Myrtaceae sp.1: c) Marginal roll, d) lenticular, e) Globoid, glabrous leaf gall on Guapira opposita (Vell.) Reitz (Nyctaginaceae), f) Fruit gall on Coccoloba sp. (Polygonaceae).
Figure 6 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 6 Grouping diagram (UPGMA) for similarity of gall-inducing insects among different Brazilian restingas. AC – Arraial do Cabo, ASP – Acaraí State Park, BAB – Babitonga, BRSP – Bertioga Restinga, State Park, CSSP – Costa do Sol State Park, FCPRNH – Fazenda Caruara Private Reserve of Natural Heritage, GR – Grumari Restinga, JRNP – Jurubatiba Restinga National Park, MEPA – Maricá Environmental Protection Area, MI – Marambaia Island, MR – Marambaia Restinga, PCVSP – Paulo César Vinha State Park, PSSBR – Praia do Sul State Biological Reserve.
Figure 5 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 5 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Leaf galls on Neomitranthes obscura (DC.) N. Silveira (Myrtaceae) – black arrow: original galls induced by Stephomyia mina Maia, 1993 (Diptera, Cecidomyiidae), white arrows: galls modified by inquilines, b-c) Bud galls on Erythroxylum ovalifolium Peyr (Erythroxylaceae): b) Original gall induced by Lopesia erythroxyli Rodrigues & Maia, 2010 (Diptera, Cecidomyiidae), c) Gall modified by inquilines, d-e) Bud galls on Eugenia astringens Cambess. (Myrtaceae): d) Original galls induced byStephomyia rotundifoliorum Maia, 1993 (Diptera, Cecidomyiidae), e) Galls modified by inquiline, f-g) Bud galls on Myrcia ovata Cambess. (Myrtaceae): f) Original gall induced by Myrciamyia maricaensis Maia, 1995 (Diptera, Cecidomyiidae), g) Gall modified by inquilines, h-j) Leaf galls on Paullinia weinmanniifolia Mart. (Sapindaceae): h) Original gall induced by Paulliniamyia ampla Maia, 2001 (Diptera, Cecidomyiidae), i) Gall modified by inquilines.
Figure 2 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 2 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Fusiform stem gall on Struthanthus taubatensis Eichler (Loranthaceae), b-c) Flower bud galls on Byrsonima sericea DC. (Malpighiaceae): b) Ovoid, c) Cylindrical, d) Lenticular leaf gall on Schwartzia brasiliensis (Choisy) Bedell ex Gir.-Cañas (Marcgraviaceae), e) Globoid leaf gall on Marcetia taxifolia (A.St.-Hil.) DC. (Melastomataceae), f) Conical bud gall on Myrsine parvifolia (A.DC.) Mez. (Primulaceae).
Linked collectors and determiners for: Estonian University of Life Sciences Institute of Agricultural and Environmental Sciences Department of Plant Protection.
Natural history specimen data linked to collectors and determiners held within, "Estonian University of Life Sciences Institute of Agricultural and Environmental Sciences Department of Plant Protection". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/91afc73f-a11a-4e8b-9313-ed056697cf05">https://bionomia.net/dataset/91afc73f-a11a-4e8b-9313-ed056697cf05</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/91afc73f-a11a-4e8b-9313-ed056697cf05">https://gbif.org/dataset/91afc73f-a11a-4e8b-9313-ed056697cf05</a>. Formatted as a Frictionless Data package.
Fig. 1 in Benthic hydrozoan assemblages as potential indicators of environmental health in a mediterranean marine protected area Abstract
Fig. 1: Sampling stations and associated level of impact in the study area.
Fig. 11. Sintula spiniger, A–C male left palp, A in Spiders (Araneae) Of Subotica Sandland (Serbia): Additional Arguments In Environmental Protection
Fig. 11. Sintula spiniger, A–C male left palp, A = prolateral, B = retrolateral, C = paracym-
Survey instrument, data, and code for paper "Freihardt, Buntaine, Bernauer (2024): Choosing to protect: Public support for flood defense over relocation in climate change adaptation. Environmental Research Letters. DOI 10.1088/1748-9326/ad6781"
<p>This is the survey instrument, data, and code underlying the manuscript:</p> <p>"Freihardt, Buntaine, Bernauer (2024): Choosing to protect: Public support for flood defense over relocation in climate change adaptation. Environmental Research Letters. DOI 10.1088/1748-9326/ad6781"</p>
Resources for "BMF CP 100: Engaging children with nature to cultivate their environmental awareness and protection"
<p><span>The current study is conducted to examine the following research questions:</span></p> <ul> <li><span>How is engaging children with nature associated with their environmental awareness?</span></li> <li><span><span><span> </span></span></span><span>How is engaging children with nature associated with their environmental protection participation?</span></li> </ul>
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.