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860 results for “distribution ecology”
Figures 31-34 from: Assmann T, Boutaud E, Buse J, Drees C, Friedman A-L, Harry I, Khoury F, Orbach E, Renan I, Schmidt C, Schmidt K, Wrase DW, Zumstein P (2021) The ground beetle tribe Platynini Bonelli, 1810 (Coleoptera, Carabidae) in the southern Levant: dichotomous and interactive identification tools, ecological traits, and distribution. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 449-478. https://doi.org/10.3897/zookeys.1044.62615
Figures 31-34 Habitats of Platynini species in the southern Levant 31 Merom Golan (Golan Heights): water reservoir, habitat of Agonum rugicolle, A. sordidum, A. marginatum, A. viridicupreum, A. nigrum, and Anchomenus dorsalis infuscatus32 Ein Akev (Central Negev): headwater stream in desert, habitat of Agonum nigrum33 Breikhat Ya'ar (Coastal Plain, east of Hadera): winter pond, habitat of Agonum monachum syriacum, A. viridicupreum, A. nigrum, and Anchomenus dorsalis infuscatus34 Nahal Bezet (Upper Galilee): softwood floodplain woodland with Oleander (Nerium oleander), habitat of Atranus ruficollis.
Figures 1-4 from: Assmann T, Boutaud E, Buse J, Drees C, Friedman A-L, Harry I, Khoury F, Orbach E, Renan I, Schmidt C, Schmidt K, Wrase DW, Zumstein P (2021) The ground beetle tribe Platynini Bonelli, 1810 (Coleoptera, Carabidae) in the southern Levant: dichotomous and interactive identification tools, ecological traits, and distribution. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 449-478. https://doi.org/10.3897/zookeys.1044.62615
Figures 1-4 Platynini species 1Agonum marginatum2Agonum mesostictum3Agonum monachum syriacum4Agonum nigrum.
FIGURES 1–3. Quedius spelaeus spelaeus pupa. 1 in Description of the pupa and observations on the distribution, ecology, and life history of Quedius spelaeus spelaeus Horn (Coleoptera: Staphylinidae) in Nova Scotia, Canada
FIGURES 1–3. Quedius spelaeus spelaeus pupa. 1, lateral view; 2, dorsal view; 3, ventral view.
FIGURE 4 in Description of the pupa and observations on the distribution, ecology, and life history of Quedius spelaeus spelaeus Horn (Coleoptera: Staphylinidae) in Nova Scotia, Canada
FIGURE 4. Distribution of Quedius s. spelaeus in Nova Scotia, Canada.
Figure 4 from: Berisha N, Rizani KL, Kadriaj B, Millaku F (2021) Notes on the distribution, ecology, associated vegetation and conservation status of Gymnadenia (Orchidaceae) in Kosovo. Italian Botanist 12: 1-27. https://doi.org/10.3897/italianbotanist.12.65699
Figure 4 Comparative data on species richness and richness in endemic taxa beween the plant communities of four Gymnadenia species in Kosovo.
Figure 2 from: Berisha N, Rizani KL, Kadriaj B, Millaku F (2021) Notes on the distribution, ecology, associated vegetation and conservation status of Gymnadenia (Orchidaceae) in Kosovo. Italian Botanist 12: 1-27. https://doi.org/10.3897/italianbotanist.12.65699
Figure 2 Elevational distribution of four Gymnadenia species based on the study of 179 herbarium specimens, geographically located in Kosovo.
Figure 3 from: Berisha N, Rizani KL, Kadriaj B, Millaku F (2021) Notes on the distribution, ecology, associated vegetation and conservation status of Gymnadenia (Orchidaceae) in Kosovo. Italian Botanist 12: 1-27. https://doi.org/10.3897/italianbotanist.12.65699
Figure 3 Boxplots representing the ecological preferences for nutrients, pH reaction, moisture, continentality, temperature and light–for four studied Gymnadenia species, based on their phytosociological communities.
Figure 1 from: Berisha N, Rizani KL, Kadriaj B, Millaku F (2021) Notes on the distribution, ecology, associated vegetation and conservation status of Gymnadenia (Orchidaceae) in Kosovo. Italian Botanist 12: 1-27. https://doi.org/10.3897/italianbotanist.12.65699
Figure 1 Known distribution of Gymnadenia species in Kosovo, based on herbarium specimens, as well as phytosociological relevés.
FIGURE 7 in Morpho (Morpho) helenor (Cramer) (Lepidoptera, Nymphalidae, Morphinae) in Bolivia: Geographical distribution and ecological plasticity, with a description of a new subspecies
FIGURE 7. Specimens from Río Undumo (U) and from Rurrenabaque (R).
FIGURE 8 in Morpho (Morpho) helenor (Cramer) (Lepidoptera, Nymphalidae, Morphinae) in Bolivia: Geographical distribution and ecological plasticity, with a description of a new subspecies
FIGURE 8. Northeastern specimens with theodorus (a), intermediate (b) and coelestis (c) phenotypes.
FIGURE 4 in Morpho (Morpho) helenor (Cramer) (Lepidoptera, Nymphalidae, Morphinae) in Bolivia: Geographical distribution and ecological plasticity, with a description of a new subspecies
FIGURE 4. Altitudinal distribution of Morpho helenor subspecies.
FIGURE 6 in The Crotonia fauna of New Zealand revisited (Acari: Oribatida): taxonomy, phylogeny, ecological distribution and biogeography
FIGURE 6. Crotonia cophinaria (Michael, 1908), female; a) dorsal; b) ventral. Scale bar = 200 µm.
FIGURE 5 in The Crotonia fauna of New Zealand revisited (Acari: Oribatida): taxonomy, phylogeny, ecological distribution and biogeography
FIGURE 5. Crotonia brachyrostrum (Hammer, 1966), female; a) dorsal; b) ventral. Scale bar = 200 µm.
FIGURE 3 in The Crotonia fauna of New Zealand revisited (Acari: Oribatida): taxonomy, phylogeny, ecological distribution and biogeography
FIGURE 3. Crotonia unguifera (Michael, 1908), female; a) dorsal; b) ventral. Scale bar = 200 µm.
FIGURE 4 in The Crotonia fauna of New Zealand revisited (Acari: Oribatida): taxonomy, phylogeny, ecological distribution and biogeography
FIGURE 4. Crotonia caudalis (Hammer, 1966), female; a) dorsal; b) ventral. Scale bar = 200 µm.
FIGURE 1 in The Crotonia fauna of New Zealand revisited (Acari: Oribatida): taxonomy, phylogeny, ecological distribution and biogeography
FIGURE 1. Crotonia ramsayi sp. nov. holotype female; a) dorsal; b) ventral. Scale bar = 200 µm.
Figure 7 from: Printzen C, Domaschke S, Fernández-Mendoza F, Pérez-Ortega S (2013) Biogeography and ecology of Cetraria aculeata, a widely distributed lichen with a bipolar distribution. MycoKeys 6: 33-53. https://doi.org/10.3897/mycokeys.6.3185
Figure 7 - Community classification of four populations of Alphaproteobacteria associated with Cetraria aculeata. The bar on the left indicates the value of the cophenetic distances between communities. From Printzen et al. (2012).
Figure 5 from: Printzen C, Domaschke S, Fernández-Mendoza F, Pérez-Ortega S (2013) Biogeography and ecology of Cetraria aculeata, a widely distributed lichen with a bipolar distribution. MycoKeys 6: 33-53. https://doi.org/10.3897/mycokeys.6.3185
Figure 5 - Dependency of net photosynthesis (NP) on temperature at various photon flux densities (0 to 1200 µmol m-2 s-1) related to different geographical origins of Cetraria aculeata. Figures are based on measurements of 7-8 thalli per location. Further details under Material and methods.
Figure 4 from: Printzen C, Domaschke S, Fernández-Mendoza F, Pérez-Ortega S (2013) Biogeography and ecology of Cetraria aculeata, a widely distributed lichen with a bipolar distribution. MycoKeys 6: 33-53. https://doi.org/10.3897/mycokeys.6.3185
Figure 4 - Nucleotide diversity (π) of different populations of photobionts (grey) and mycobionts (white) based on ITS sequences from 222 thalli of Cetraria aculeata (data from Domaschke et al. 2012). Size of the semi-circles is proportional to the diversity level. Circles on the right summarize diversity levels within regions. Numbers of observed haplotypes and estimated absolute numbers following Chao 1 (in brackets) are added. Arrows indicate inferred historical migration events.
Figure 2 from: Printzen C, Domaschke S, Fernández-Mendoza F, Pérez-Ortega S (2013) Biogeography and ecology of Cetraria aculeata, a widely distributed lichen with a bipolar distribution. MycoKeys 6: 33-53. https://doi.org/10.3897/mycokeys.6.3185
Figure 2 - 95 % parsimony probability haplotype network based on ITS sequences of the mycobiont displaying genetic differences between Beringian samples of the Cetraria aculeata group (grey) and individuals from two haplotype groups present on Iceland and Svalbard (white). Large circles represent haplotypes, each line a mutational step and black dots missing haplotypes. The size of the circles is proportional to the number of individuals sharing that haplotype. The presence of three unconnected haplogroups indicates that the genetic differences between them are too large to find a connection with a 95 % probability of being the most parsimonious one.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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.