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78 results for “habitat survey”
Figure 15 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 15 - Distribution maps, and distribution over habitat and altitude classes, for Lycodryas sanctijohannis, Oplurus cuvieri comorensis and Paroedura sanctijohannis.
Figure 5 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 5 - Species photographs. A Blommersia sp., ZSM 1706/2008, Mayotte B Boophis sp., ZSM 1711/2008, Mayotte C Ramphotyphlops braminus, ZSM 163/2010, Anjouan D Typhlops comorensis, MNHN 1895/126, Grand Comoro E Typhlops sp., ZSM 361/2002, Grand Comoro F drawings of heads of Ramphotyphlops braminus, Typhlops comorensis and Typhlops sp. (left to right) G Leioheterodon madagascariensis, Nosy Boraha, Madagascar H Liophidium mayottensis, ZSM 1693/2008, Mayotte.
Figure 14 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 14 - Distribution maps, and distribution over habitat and altitude classes, for Hemidactylus platycephalus, Leioheterodon madagascariensis and Liophidium mayottensis.
Figure 9 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 9 - Species photographs. A Hemidactylus frenatus, ZSM 116/2010, Mohéli B Hemidactylus parvimaculatus, ZSM 370/2002, Mohéli C Hemidactylus mercatorius, ZSM 121/2010, Anjouan D Hemidactylus platycephalus, Anjouan E Geckolepis maculata, ZSM 83/2010, Anjouan F Oplurus cuvieri comorensis, Grand Comoro G Agama agama, male, Grand Comoro H Agama agama, juvenile, Grand Comoro.
Figure 12 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 12 - Distribution maps, and distribution over habitat and altitude classes, for Furcifer cephalolepis, Furcifer polleni and Geckolepis maculata.
Figure 11 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 11 - Distribution maps, and distribution over habitat and altitude classes, for Boophis sp., Cryptoblepharus boutonii and Ebenavia inunguis.
Figure 10 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 10 - Distribution maps, and distribution over habitat and altitude classes, for Agama agama, Amphiglossus johannae and Blommersia sp.
Figure 1 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 1 - Habitats on the Comoro islands. Maps of habitat classes and relative land cover are given for each island.
Figure 7 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 7 - Species photographs. A Cryptoblepharus boutonii ater, Grand Comoro B Cryptoblepharus boutonii mohelicus, ZSM 1680/2008, Mohéli C Cryptoblepharus boutonii mayottensis, ZSM 1703/2008, Mayotte D Cryptoblepharus boutonii degrijsii, ZSM 63/2010, Anjouan E Amphiglossus johannae, ZSM 54/2010, Anjouan F Phelsuma laticauda, Anjouan G Phelsuma dubia, Mayotte H Phelsuma robertmertensi, Mayotte.
Figure 17 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 17 - Distribution maps, and distribution over habitat and altitude classes, for Phelsuma nigristriata, Phelsuma pasteuri and Phelsuma robertmertensi.
Figure 18 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 18 - Distribution maps, and distribution over habitat and altitude classes, for Phelsuma v-nigra, Ramphotyphlops braminus and Trachylepis comorensis.
Figure 13 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 13 - Distribution maps, and distribution over habitat and altitude classes, for Hemidactylus frenatus, Hemidactylus mercatorius and Hemidactylus parvimaculatus.
Data from: Daphnia galeata and D. dentifera are geographically and ecologically separated whereas their hybrids occur in intermediate habitats: a survey of 44 Chinese lakes
The idea that hybridization promotes range expansion has received recent attention, but support from field studies is limited. We hypothesized that in the cladoceran waterflea Daphnia, parental species are geographically and ecologically separated, whereas hybrids occupy intermediate or occasionally extreme environments, potentially facilitating range expansion of parental species. We assessed the distribution of Daphnia dentifera, D. galeata and their interspecific hybrids across 44 lakes in China (using mitochondrial and microsatellite markers), and related it to geographical and environmental lake descriptors. Parental species were geographically separated: D. dentifera occurred in western and central China, and D. galeata in eastern and central China, whereas hybrids were found in the western and central parts of country. However, after controlling for geographical differences, the effect of environment on species distribution was strong and significant. Specifically, D. dentifera was present in high-altitude oligotrophic lakes, D. galeata in low-altitude eutrophic lakes, and hybrids at intermediate to high altitudes, mainly in mesotrophic lakes. Microsatellite data indicated that hybrids were locally produced rather than having migrated from elsewhere; they probably resulted from encounters between expanding D. galeata and resident D. dentifera. The present study provides evidence that hybrids can survive in habitats that are otherwise suitable for only one of their parental species, emphasizing the importance of hybridization in expansion of species gene pools.
Figure 20 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 20 - Proposed areas of conservational importance for the herpetofauna on the Comoro islands.
Figure 2 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 2 - Land cover, localities and number of recorded species
Figure 4 from: Hawlitschek O, Brückmann B, Berger J, Green K, Glaw F (2011) Integrating field surveys and remote sensing data to study distribution, habitat use and conservation status of the herpetofauna of the Comoro Islands. ZooKeys 144: 21-79. https://doi.org/10.3897/zookeys.144.1648
Figure 4 - Localities and number of species in relation to altitude.
Data from: Daphnia galeata and D. dentifera are geographically and ecologically separated whereas their hybrids occur in intermediate habitats: a survey of 44 Chinese lakes
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Fig. 10 in The northernmost discovery of Aradus brenskei (Reuter, 1884) (Heteroptera: Aradidae). Considerations on the local distribution and the habitat preferences of this new Belgian species following a nine-months field survey
Fig. 10. Belgian distribution of Aradus brenskei (5x5 km squares). Grey squares: investigated squares with structures infested by Fomes fomentarius. Red dots: squares with structures colonised by Aradus brenskei. © André van Loon, EIS Kenniscentrum voor Insecten en andere ongewervelden, Leiden.
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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.