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Figure 5. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 5. - Abdomen of P. hardyi female, showing constriction between tergites 4 and 5, the telescoping form of tergite 8 and the ovipositor and associated structures.
Figure 19. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 19. - Leg of Canaceoides hawaiiensis, showing two regular rows of setae on posterior surface of femur. The specimen imaged was from collection 205542.
Figure 22. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 22. - Wing of Scatella kauaiensis, showing breaks in the costal vein at the insertion points of the humeral crossvein and the subcostal vein. The specimen imaged was from collection 205192.
Figure 4. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 4. - External male genitalia of P. hardyi. The narrowed, lightened tips of the surstyli suggest that this species is most closely related to P. constricta. Refer to figure 162e from Hardy and Delfinado (1980).
Figure 6. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 6. - Abdomen of P. constricta female, showing constriction between tergites 4 and 5, the lateral extension of tergite 8 beyond the apex of the ovipositor, and the ovipositor and associated structures. The specimen imaged is from collection 205268.
Figure 10. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 10. - Distribution of P. acuminata on Oahu, Molokai, Maui and Hawaii and P. nigroviridis on Kauai.
Figure 21. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 21. - Head of Scatella kauaiensis, showing the large face which extends over the oral cavity. The clypeus is normal in size and does not extend over the mouth. The specimen imaged was from collection 205192.
Figure 15. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 15. - Wing of Canaceoides hawaiiensis, showing a single break at the terminus of the subcostal vein. The specimen imaged was from collection 205542.
Figure 4. from: Melampyrum sylvaticum as a pre-diapause host plant of the scarce fritillary (Euphydryas maturna) in Finland - Biodiversity Data Journal 3: e5610 (17 July 2015) https://doi.org/10.3897/BDJ.3.e5610
Figure 4. - Euphydryas maturna habitat in a commercial, thinned pine-dominated forest with ca. 30-year old trees, and in a clear-cut edge. This kind of forest habitat is probably suitable after thinning for several years, but longer than spruce-dominated forests (Fig. 3). Also, edge habitats in these relatively dry habitats overgrow somewhat slower than in moister edges (Fig. 2).
Figure 5. from: Melampyrum sylvaticum as a pre-diapause host plant of the scarce fritillary (Euphydryas maturna) in Finland - Biodiversity Data Journal 3: e5610 (17 July 2015) https://doi.org/10.3897/BDJ.3.e5610
Figure 5. - Powerline habitat of Euphydryas maturna. Vegetation under powerlines is kept open continuously, so powerline habitats may function both as breeding places and dispersal corridors.
Figure 3. from: Melampyrum sylvaticum as a pre-diapause host plant of the scarce fritillary (Euphydryas maturna) in Finland - Biodiversity Data Journal 3: e5610 (17 July 2015) https://doi.org/10.3897/BDJ.3.e5610
Figure 3. - Euphydryas maturna habitat in a commercial, thinned spruce-dominated forest. Such habitats are probably suitable after thinning for several years.
Figure 2. from: Melampyrum sylvaticum as a pre-diapause host plant of the scarce fritillary (Euphydryas maturna) in Finland - Biodiversity Data Journal 3: e5610 (17 July 2015) https://doi.org/10.3897/BDJ.3.e5610
Figure 2. - Clear-cut edge habitat of Euphydryas maturna. Clear-cut edges typically remain suitable for breeding for some years only until they become overgrown by tall grasses and tree seedlings.
Figure 1d. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 1d. - Molophilus balcanicus Kolcsár sp. n. Figure 1a. male habitus Figure 1b. male hypopygium, ventral (tergal) view Figure 1c. male hypopygium, lateral view Figure 1d. aedeagal complex, lateral view <br> aedeagal complex, lateral view
Figure 1. from: Melampyrum sylvaticum as a pre-diapause host plant of the scarce fritillary (Euphydryas maturna) in Finland - Biodiversity Data Journal 3: e5610 (17 July 2015) https://doi.org/10.3897/BDJ.3.e5610
Figure 1. - Larval web of Euphydryas maturna on Melampyrum sylvaticum in Sipoo, S Finland (November 2nd, 2014).
Figure 2d. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 2d. - Molophilus variispinus Stary, 1971 Figure 2a. male habitus Figure 2b. male hypopygium, ventral (tergal) view Figure 2c. male hypopygium, ventral (tergal) view Figure 2d. aedeagal complex, lateral view <br> aedeagal complex, lateral view
Figure 2a. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 2a. - Molophilus variispinus Stary, 1971 Figure 2a. male habitus Figure 2b. male hypopygium, ventral (tergal) view Figure 2c. male hypopygium, ventral (tergal) view Figure 2d. aedeagal complex, lateral view <br> male habitus
Figure 3c. from: A new species and new records of Molophilus Curtis, 1833 (Diptera: Limoniidae) from the Western Palaearctic Region - Biodiversity Data Journal 3: e5466 (21 August 2015) https://doi.org/10.3897/BDJ.3.e5466
Figure 3c. - Molophilus serpentiger Edwards, 1938 Figure 3a. male habitus Figure 3b. male hypopygium, ventral (tergal) view Figure 3c. male hypopygium, lateral view Figure 3d. aedeagal complex, lateral view <br> male hypopygium, lateral view
Figure 2. from: New evidence shows that Pocillopora 'damicornis-like' corals in Singapore are actually Pocillopora acuta (Scleractinia: Pocilloporidae) - Biodiversity Data Journal 5: e11407 (13 February 2017) https://doi.org/10.3897/BDJ.5.e11407
Figure 2. - Pocillopora specimens previously identified as P. damicornis from the Zoological Reference Collection, Lee Kong Chian Natural History Museum, Singapore (A, B: ZRC.1980.20.133; C, D: ZRC.1991.766; E, F: ZRC.1987.1538; G, H: ZRC.1987.1995; I, J: ZRC.1991.763; K, L: ZRC.1987.1537). A–F, colonies with thick branches; G–L, colonies with thinner branches. Scale bars represent 1 cm.
Figure 3. from: New evidence shows that Pocillopora 'damicornis-like' corals in Singapore are actually Pocillopora acuta (Scleractinia: Pocilloporidae) - Biodiversity Data Journal 5: e11407 (13 February 2017) https://doi.org/10.3897/BDJ.5.e11407
Figure 3. - Maximum likelihood tree of seven Pocillopora species based on the mitochondrial open reading frame. Colonies from Singapore are shown in red. Bootstrap values (≥ 50) and Bayesian posterior probabilities (≥ 0.85) are shown for supported clades.
Figure 3. from: New evidence shows that Pocillopora 'damicornis-like' corals in Singapore are actually Pocillopora acuta (Scleractinia: Pocilloporidae) - Biodiversity Data Journal 5: e11407 (13 February 2017) https://doi.org/10.3897/BDJ.5.e11407
Figure 3. - Maximum likelihood tree of seven Pocillopora species based on the mitochondrial open reading frame. Colonies from Singapore are shown in red. Bootstrap values (≥ 50) and Bayesian posterior probabilities (≥ 0.85) are shown for supported clades.
ScienceDex guides
Understand access before you commit
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.