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Figure 3 from: Caraballo-Ortiz MA, Trejo-Torres JC (2017) Two new endemic tree species from Puerto Rico: Pisonia horneae and Pisonia roqueae (Nyctaginaceae). PhytoKeys 86: 97-115. https://doi.org/10.3897/phytokeys.86.11249
Figure 3 - Distribution of Pisonia (excluding P. aculeata) in Puerto Rico and adjacent islands based on herbarium specimens. Empty symbols represent historical localities where populations have been presumably extirpated (see Trejo-Torres 2005 and this study for details).
Figure 6 from: Caraballo-Ortiz MA, Trejo-Torres JC (2017) Two new endemic tree species from Puerto Rico: Pisonia horneae and Pisonia roqueae (Nyctaginaceae). PhytoKeys 86: 97-115. https://doi.org/10.3897/phytokeys.86.11249
Figure 6 - Holotype specimen of Pisonia roqueae from the National Herbarium of the Smithsonian Institution (Proctor et al. 48064, US [00707324]). Note the dendroid staminate inflorescences with globose crowns and the leafless branches during the flowering period. Photo courtesy of The United States National Herbarium, Smithsonian Institution.
Figure 2 from: Caraballo-Ortiz MA, Trejo-Torres JC (2017) Two new endemic tree species from Puerto Rico: Pisonia horneae and Pisonia roqueae (Nyctaginaceae). PhytoKeys 86: 97-115. https://doi.org/10.3897/phytokeys.86.11249
Figure 2 - Isotype specimen of Pisonia horneae from the University of Florida Herbarium (Trejo et al. 2310, FLAS [230768]). Photo courtesy of The University of Florida Herbarium (FLAS) – Florida Museum of Natural History.
Figure 1 from: Caraballo-Ortiz MA, Trejo-Torres JC (2017) Two new endemic tree species from Puerto Rico: Pisonia horneae and Pisonia roqueae (Nyctaginaceae). PhytoKeys 86: 97-115. https://doi.org/10.3897/phytokeys.86.11249
Figure 1 - Pisonia horneae. A Branch showing adaxial side of leaves B Abaxial side of leaves C Staminate (left) and pistilate (right) flowers at anthesis D Seedlings E Bark F Lower trunk of an adult tree. Note the characteristic swollen base observed in all Pisonia from Puerto Rico, where the trunk base wraps over the rocks as it grows. Photo credits: A–B, E–F: JCTT; C–D: MACO.
Figures 18-20 from: Jordal B (2017) Ancient diversity of Afrotropical Microborus: three endemic species – not one widespread. ZooKeys 710: 33-42. https://doi.org/10.3897/zookeys.710.14902
Figures 18-20 - Internal features of Microborus angustus. 18 wing base 19 proventriculus 20 aedeagus.
Figures 1-2 from: Jordal B (2017) Ancient diversity of Afrotropical Microborus: three endemic species – not one widespread. ZooKeys 710: 33-42. https://doi.org/10.3897/zookeys.710.14902
Figures 1-2 - Typical host plant condition for species of Microborus. 1 Standing Stereospermum tree with thick bark, with attacks of ambrosia beetles, cossonine weevils and Microborus in the lower bole (Ankarafantsika NP, Madagascar). 2 Inner side of bark with tunnels made by M. brevisetosus Jordal, starting from the entrance hole of Euplatypus madagascariensis (Schedl).
Figures 9-17 from: Jordal B (2017) Ancient diversity of Afrotropical Microborus: three endemic species – not one widespread. ZooKeys 710: 33-42. https://doi.org/10.3897/zookeys.710.14902
Figures 9-17 - Head, venter and declivity of the Afrotropical species of Microborus. 9–11 M. angustatus 12–14 M. brevisetosus 15–17 M. camerunus.
Figure 21 from: Jordal B (2017) Ancient diversity of Afrotropical Microborus: three endemic species – not one widespread. ZooKeys 710: 33-42. https://doi.org/10.3897/zookeys.710.14902
Figure 21 - Maximum likelihood phylogeny based on six gene fragments and a GTR model of gene evolution. Tree topology and bootstrap values were identical in the maximum parsimony analysis (L = 1657, CI = 0.85, RI = 072).
Figures 3-8 from: Jordal B (2017) Ancient diversity of Afrotropical Microborus: three endemic species – not one widespread. ZooKeys 710: 33-42. https://doi.org/10.3897/zookeys.710.14902
Figures 3-8 - Dorsal and lateral view of the Afrotropical species of Microborus. 3–4 M. angustatus 5–6 M. brevisetosus 7–8 M. camerunus.
FIGURES 66−67 in New Indian species of Dacus Fabricius (Diptera: Tephritidae: Dacinae: Dacini) similar to Dacus crabroniformis (Bezzi), endemic to the Western Ghats and Northeastern Himalayas
FIGURES 66−67. Dacus crabroniformis (Bezzi). 66, dorsal habitus; 67, lateral habitus.
FIGURE 2 in First ontogenesis and bioecological study of Sciobia bouvieri (Orthoptera, Gryllidae), a North African endemic species.
FIGURE 2. Life cycle of Sciobia bouvieri
FIGURE 1 in First ontogenesis and bioecological study of Sciobia bouvieri (Orthoptera, Gryllidae), a North African endemic species.
FIGURE 1. Timing of appearance of each state and larval stage
Figure 5 in A third European species of grayling (Actinopterygii, Salmonidae), endemic to the Loire River basin (France), Thymallus ligericus n. sp.
Figure 5. – Average dot numbers on each scale row on the flank for populations of Thymallus ligericus n. sp. from the Upper Ance (47 specimens), Lower Ance (7 specimens) and Lignon Rivers (16 specimens) in the Loire drainage as well as for Thymallus thymallus populations from the Ain (176 specimens) and Loue rivers (35 specimens) in the Rhône drainage.
Figure 4 in Barbatula leoparda (Actinopterygii, Nemacheilidae), a new endemic species of stone loach of French Catalonia
Figure 4. – Boxplots highlighting morphometric differences between Barbatula leoparda (in grey) and the two other species Barbatula barbatula and Barbatula quignardi, for the two sizes classes (36 to 47 mm SL and> 47 mm SL). only by a larger interorbital width (35.5 to 40.5% HL, vs. 21.4 to 35.6% HL; Fig. 4B).
Figure 3 in Barbatula leoparda (Actinopterygii, Nemacheilidae), a new endemic species of stone loach of French Catalonia
Figure 3. – Mouth of holotype of Barbatula leoparda MNHN 2018- 0228, 62.6 mm SL ♀, Têt River at Nefiach, 7 Sep. 2016, Denys and ONEMA coll. Abbreviations: medial indentation of upper lip (mi), mental lobe of lower lip (ml). Scale bar = 1 mm.
Figure 1 in Barbatula leoparda (Actinopterygii, Nemacheilidae), a new endemic species of stone loach of French Catalonia
Figure 1. – Specimens of Barbatula spp. in lateral view. A: Holotype of Barbatula leoparda MNHN 2018-0228, 62.6 mm SL ♀, Têt River at Nefiach, 7 Sep. 2016, Denys and ONEMA coll.; B: Paratype of Barbatula leoparda n. sp. MNHN 2016-0351, 46.5 mm SL ♀, Tech River at Céret, 9 Sep. 2016, Denys, Hautecoeur and ONEMA coll; C: Barbatula barbatula MNHN 2013-0826, 72.9 mm SL ♂, stream Clauge (Rhône drainage) at La Loye, 1 Jul. 2013, Denys and ONEMA coll.; D: Holotype of Barbatula quignardi MGAB77, 52 mm SL ♂, Lez River, Jul. 1962, Băcescu coll.
Male (left) and female Fire-maned Bowerbird Sericulus bakeri, the endemic bowerbird of the Adelbert Mountains (William Cooper, reproduced from Cooper & Forshaw 1977, with the kind permission of Dr Wendy Cooper) in Avifauna of the Adelbert Mountains, New Guinea: why is Fire-maned Bowerbird Sericulus bakeri the mountains' only endemic bird species?
Male (left) and female Fire-maned Bowerbird Sericulus bakeri, the endemic bowerbird of the Adelbert Mountains (William Cooper, reproduced from Cooper & Forshaw 1977, with the kind permission of Dr Wendy Cooper)
Figs. 10-18 in Review of the genus Malaxella (Hemiptera: Fulgoroidea: Delphacidae) endemic in China, with a description of a new species
Figs. 10-18. Malaxella macracantha Ren & Qin sp. nov. 10. Male genitalia, caudal view; 11. Male genitalia, lef lateral view; 12. Pygofer, caudal view; 13. Anal segment, aedeagus-suspensorium complex, connective and parameres, lef lateral view; 14. Aedeagus-suspensorium complex, caudal view; 15. Anal segment and aedeagus-suspensorium complex, lef lateral view; 16. Anal segment, caudal view; 17. Parameres, posterior view; 18. Forewing. Scale bars = 0.20 mm (Figs. 10-17); 0.50 mm (Fig. 18).
Figs. 19-27. Malaxella tetracantha Qin & Zhang. 19 in Review of the genus Malaxella (Hemiptera: Fulgoroidea: Delphacidae) endemic in China, with a description of a new species
Figs. 19-27. Malaxella tetracantha Qin & Zhang. 19. Male genitalia, caudal view; 20. Male genitalia, lef lateral view; 21. Pygofer, caudal view; 22. Anal segment, aedeagus-suspensorium complex, connective and parameres, lef lateral view; 23. Aedeagus-suspensorium complex, caudal view; 24. Anal segment and aedeagussuspensorium complex, caudal view; 25. Parameres, lef lateral view; 26. Parameres, posterior view; 27. Forewing. Scale bars = 0.20 mm (Figs. 19-22, 24); 0.10 mm (Figs. 23, 25, 26); 0.50 mm (Fig. 27).`
Fig. 4 in Preliminary Studies On The Genetic Diversity Of An Endemic And Endangered Species Saussurea Esthonica Baer Ex Rupr. In Latvia
Fig. 4 Phylogenetic tree based on AFLP data using the Neighbour-Joining algorithm with Nei's genetic distance.
ScienceDex guides
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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)
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.