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4,937 results for “Endemic species”
Figure 9 from: Hardy NB, Williams DJ (2018) Doubling the known endemic species diversity of New Caledonian armored scale insects (Hemiptera, Diaspididae). ZooKeys 782: 11-47. https://doi.org/10.3897/zookeys.782.27938
Figure 9 Pygidium of 2nd instar of Greenielladacrydiae sp. n.
Figure 5 from: Hardy NB, Williams DJ (2018) Doubling the known endemic species diversity of New Caledonian armored scale insects (Hemiptera, Diaspididae). ZooKeys 782: 11-47. https://doi.org/10.3897/zookeys.782.27938
Figure 5 a Adult female of Fernaldannawhita sp. n. with b enlargement of pygidium.
Figure 4 from: Hardy NB, Williams DJ (2018) Doubling the known endemic species diversity of New Caledonian armored scale insects (Hemiptera, Diaspididae). ZooKeys 782: 11-47. https://doi.org/10.3897/zookeys.782.27938
Figure 4 Second instar of Aonidiapauca.
Figure 2 from: Abramov AV, Bannikova AA, Lebedev VS, Rozhnov VV (2018) A broadly distributed species instead of an insular endemic? A new find of the poorly known Hainan gymnure (Mammalia, Lipotyphla). ZooKeys 795: 77-81. https://doi.org/10.3897/zookeys.795.28218
Figure 2 Neohylomyshainanensis from Vietnam. A total view B skull.
Figure 2 from: Ruan Y-Q, Yu Y-L, Yu F, Deng G-X, Liu Y-L, Wu X-H, Tang M (2019) Reinstatement of the Chinese endemic species Styrax zhejiangensis. PhytoKeys 133: 105-113. https://doi.org/10.3897/phytokeys.133.37942
Figure 2 Distribution map of Styrax zhejiangensis ([INSERT FIGURE 003]) and S. macrocarpus.
Figure 1 from: Mvogo Ndongo PA, von Rintelen T, Cumberlidge N (2019) Taxonomic revision of the endemic Cameroonian freshwater crab genus Louisea Cumberlidge, 1994 (Crustacea, Decapoda, Brachyura, Potamonautidae), with descriptions of two new species from Nkongsamba and Yabassi. ZooKeys 881: 135-164. https://doi.org/10.3897/zookeys.881.36744
Figure 1 Collection localities of the four species of Louisea in Cameroon.
Data from: Island Biogeography, the effects of taxonomic effort and the importance of island niche diversity to single island endemic species
Island biogeography theory is fundamentally reliant on measuring the number of species per island and hence has taxonomy at its foundation. Yet as a metric used in tests of the theory, island species richness (S) has varied with time according to the level of taxonomic effort (a function of the rate of finding and describing species). Studies using a derivative of S, single-island endemic species richness (SIE S), may be prone to change in taxonomic effort. Decreases or increases in species numbers resulting from taxonomic revision or increased sampling are likely to have a large effect on values of SIE S, as they tend to be smaller than total S for the same island. Using simple biogeography models, we analysed estimates of SIE S in plants, land snails, beetles, and fungi from comprehensive data sets for eight island groups, produced species accumulation curves and applied Bayesian regression over five time periods. Explanatory power differed across taxa, but area and island age were not always the best explanatory variables, and niche diversity appeared to be important. Changing levels of SIE S over time had different effects on models with different taxa and between island archipelagos. The results indicated that the taxonomic effort that determines SIE S is important. However, as this cannot often be quantified, we suggest Bayesian approaches should be more useful than frequentist methods in evaluating SIE S in island biogeography theory. Fundamentally, the article highlights the importance of taxonomy to theoretical biogeography.
Figure 2 from: Stirton C, Clark V, Barker N, Muasya M (2011) Psoralea margaretiflora (Psoraleeae, Fabaceae): A new species from the Sneeuberg Centre of Floristic Endemism, Eastern Cape, South Africa. PhytoKeys 5: 31-38. https://doi.org/10.3897/phytokeys.5.1585
Figure 2 - Distribution of Psoralea margaretiflora C.H. Stirton, & V.R. Clark.
Figure 6 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159
Figure 6 - Cluster diagram for the endemic areas of Fulgoromorpha in Iran.
Figure 10 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159
Figure 10 - Final endemic zones and distribution of endemic Fulgoromorpha of Iran.
Figure 2 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159
Figure 2 - The number of endemic planthoppers of Iran in the main biogeographic areas.
Figure 9 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 9 - Holotype specimen of Eugenia echinulata (MO).
Figure 6 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 6 - Holotype specimen of Eugenia calciscopulorum (MO).
Figure 21 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 21 - Holotype specimen of Eugenia wilsoniana (MO).
Figure 3 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 3 - Holotype specimen of Eugenia barriei (MO).
Figure 20 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 20 - Holotype specimen of Eugenia tiampoka (MO).
Figure 18 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 18 - Holotype specimen of Eugenia ravelonarivoi (MO).
Figure 19 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 19 - Holotype specimen of Eugenia razakamalalae (MO).
Figure 16 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 16 - Holotype specimen of Eugenia obovatifolia (MO).
Figure 15 from: Snow N, Callmander M, Phillipson PB (2015) Studies of Malagasy Eugenia – IV: Seventeen new endemic species, a new combination, and three lectotypifications; with comments on distribution, ecological and evolutionary patterns. PhytoKeys 49: 59-121. https://doi.org/10.3897/phytokeys.49.9003
Figure 15 - Holotype specimen of Eugenia manomboensis (MO).
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Allen Brain Atlas
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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.