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Figures 13-16 from: Savary WE, Bryson Jr RW (2016) Pseudouroctonus maidu, a new species of scorpion from northern California (Scorpiones, Vaejovidae). ZooKeys 584: 49-59. https://doi.org/10.3897/zookeys.584.6026
Figures 13-16 - Pedipalp patellas of Pseudouroctonus glimmei (Hjelle, 1972) and Pseudouroctonus maidu sp. n.: 13 female Pseudouroctonus glimmei, prolateral (internal) view 14 Pseudouroctonus glimmei, dorsal view 15 female Pseudouroctonus maidu, prolateral (internal) view 16 Pseudouroctonus maidu, dorsal view. The internomedial carina is indicated by "im".
Figures 11-12 from: Savary WE, Bryson Jr RW (2016) Pseudouroctonus maidu, a new species of scorpion from northern California (Scorpiones, Vaejovidae). ZooKeys 584: 49-59. https://doi.org/10.3897/zookeys.584.6026
Figures 11-12 - Carapaces of Pseudouroctonus maidu sp. n. and Pseudouroctonus glimmei (Hjelle, 1972): 11 female Pseudouroctonus maidu 12 female Pseudouroctonus glimmei.
Figures 2-7 from: Savary WE, Bryson Jr RW (2016) Pseudouroctonus maidu, a new species of scorpion from northern California (Scorpiones, Vaejovidae). ZooKeys 584: 49-59. https://doi.org/10.3897/zookeys.584.6026
Figures 2-7 - Hemispermatophores of California species of Pseudouroctonus Stahnke, 1974 and Kovarikia Soleglad, Fet & Graham, 2014: 2 hemispermatophore of Pseudouroctonus maidu sp. n. (ph = primary hook; sh = secondary hook) 3 primary lamellar hook of Pseudouroctonus maidu 4 primary lamellar hook of Pseudouroctonus iviei (Gertsch & Soleglad, 1972) 5 primary lamellar hook of Pseudouroctonus glimmei (Hjelle, 1972) 6 primary lamellar hook of Kovarikia bogerti (Gertsch & Soleglad, 1972) 7 primary lamellar hook of Kovarikia angelena (Gertsch & Soleglad, 1972).
Figures 8-10 from: Savary WE, Bryson Jr RW (2016) Pseudouroctonus maidu, a new species of scorpion from northern California (Scorpiones, Vaejovidae). ZooKeys 584: 49-59. https://doi.org/10.3897/zookeys.584.6026
Figures 8-10 - Metasomas of California species of Pseudouroctonus Stahnke, 1974: 8 female Pseudouroctonus iviei (Gertsch & Soleglad, 1972) 9 female Pseudouroctonus glimmei (Hjelle, 1972) 10 female Pseudouroctonus maidu sp. n.
Figure 4 from: Foster JM, Thoma BP (2016) Polycheria josephensis, a new species of symbiotic amphipod (Crustacea, Amphipoda, Dexaminidae) from the Northern Gulf of Mexico, with notes on its ecology. Zoosystematics and Evolution 92(1): 23-31. https://doi.org/10.3897/zse.92.5789
Figure 4 - A–B closeup of Polycheria josephensis sp. n. in situ in tunicin of Eudistoma hepaticum C in situ photo of Eudistoma hepaticum D close-up of Polycheria josephensis sp. n. in situ in tunicin of Didemnum sp. E Polycheria josephensis sp. n. in situ in tunicin of Didemnum sp. Scale = 5 mm (A, B, D); 25 mm (C); 10 mm (E).
Figure 3 from: Foster JM, Thoma BP (2016) Polycheria josephensis, a new species of symbiotic amphipod (Crustacea, Amphipoda, Dexaminidae) from the Northern Gulf of Mexico, with notes on its ecology. Zoosystematics and Evolution 92(1): 23-31. https://doi.org/10.3897/zse.92.5789
Figure 3 - Polycheria josephensis sp. n. ♂, 5.0 mm, Paratype, USNM 1297738, 200 meters north of Blacks Island, St. Joseph Bay, Florida. Scale = 0.5 mm GN1 – P7; 1.0 mm URO; 0.3 mm U1-T.
Figure 1 from: Foster JM, Thoma BP (2016) Polycheria josephensis, a new species of symbiotic amphipod (Crustacea, Amphipoda, Dexaminidae) from the Northern Gulf of Mexico, with notes on its ecology. Zoosystematics and Evolution 92(1): 23-31. https://doi.org/10.3897/zse.92.5789
Figure 1 - Polycheria josephensis sp. n. (St. Joseph Bay, Florida) A whole animal B coxae 1-7: female, 5.0 mm, Paratype, USNM 1297737, 200 meters north of Blacks Island, St. Joseph Bay, Florida. Scale = 1.0 mm (A), 0.5 mm (B).
Figure 2 from: Foster JM, Thoma BP (2016) Polycheria josephensis, a new species of symbiotic amphipod (Crustacea, Amphipoda, Dexaminidae) from the Northern Gulf of Mexico, with notes on its ecology. Zoosystematics and Evolution 92(1): 23-31. https://doi.org/10.3897/zse.92.5789
Figure 2 - Polycheria josephensis sp. n. ♂, 5.0 mm, Paratype, USNM 1297738, 200 meters north of Blacks Island, St. Joseph Bay, Florida. Scale = 0.10 mm; MP = 0.25 mm.
Figure 2 from: Martine CT, Frawley ES, Cantley JT, Jordon-Thaden IE (2016) Solanum watneyi, a new bush tomato species from the Northern Territory, Australia named for Mark Watney of the book and film "The Martian". PhytoKeys 61: 1-13. https://doi.org/10.3897/phytokeys.61.6995
Figure 2 - Illustration of Solanum watneyi. Mature branch with flowers and a developing fruit. Based on plant grown at Bucknell University from seeds of Martine and Martine 4065. Drawing by Rachel F. Martine.
Figure 1 from: Martine CT, Frawley ES, Cantley JT, Jordon-Thaden IE (2016) Solanum watneyi, a new bush tomato species from the Northern Territory, Australia named for Mark Watney of the book and film "The Martian". PhytoKeys 61: 1-13. https://doi.org/10.3897/phytokeys.61.6995
Figure 1 - Distribution map of Solanum watneyi and Solanum eburneum based on accessions held by DNA, BUPL and CONN. Specimens of Solanum eburneum mapped are cited in Appendix 1.
Figure 3 from: Martine CT, Frawley ES, Cantley JT, Jordon-Thaden IE (2016) Solanum watneyi, a new bush tomato species from the Northern Territory, Australia named for Mark Watney of the book and film "The Martian". PhytoKeys 61: 1-13. https://doi.org/10.3897/phytokeys.61.6995
Figure 3 - Comparisons of Solanum eburneum and Solanum watneyi. A–C Solanum eburneum in habitat (gray cracked clay), in flower, and mature fruits D–F same for Solanum watneyi (habit showing reddish sandy loam) G corolla comparisons of staminate (upper) and hermaphrodite (lower) flowers for Solanum eburneum (left) and Solanum watneyi (right) H leaf shape across varying leaf ages for Solanum watneyi (top) and Solanum eburneum (bottom) in cultivation; I) field growth habit of Solanum eburneum (left) and Solanum watneyi (right) showing the more sprawling and prostrate nature of Solanum watneyi. Photos A, C, D, E, F, I by CTM; B, G by JC; H by EF.
Figure 3 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 3 - Illustration of dorsal perspective of the pronotum of Cornucollis masoalensis gen.n., sp. n., male (scale bar = 1 mm).
Figure 4 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 4 - Illustration of the cervical sclerites of Cornucollis masoalensis gen.n., sp. n., male (scale bar = 1 mm). Abbreviations: ics = intercervical sclerites; lcs = lateral cervical sclerites; vcs = ventral cervical sclerite.
Figure 6 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 6 - Cornucollis masoalensis gen.n., sp.n male genital complex. Right phallomeric lobe and dorsal sclerotization of the left phallomeric complex (i.e., the left phallomere) are pictured in the ventral perspective; the ventral sclerotization of the left phallomere complex (i.e., the ventral phallomere) (L4A) is shown in the dorsal perspective (scale bar = 1 mm). Abbreviations: an = anterior apodeme; ap = anterior process; bm = right arm; L1, L2, L4B = a sub-sclerite of the dorsal sclerotization of the left phallomeric complex; L4A = the ventral sclerotization of the left phallomeric complex; loa = lobo membranoso; paa = apical process; pda = distal process; pia = piastra ventrale; pva = processo ventrale sclerificato; R1 = a sub-sclerite of the right phallomere; R3 = a sub-sclerite of the right phallomere.
Figure 5 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 5 - Arrow indicates procumbent posteroventral foretibial spine arrangement of Cornucollis masoalensis gen.n., sp. n., male (scale bar = 1 mm).
Figure 2 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 2 - Illustration of anterior perspective of the cranium of Cornucollis masoalensis gen.n., sp. n., male (scale bar = 1 mm).
Figure 1 from: Brannoch SK, Svenson GJ (2016) A new genus and species (Cornucollis gen. n. masoalensis sp. n.) of praying mantis from northern Madagascar (Mantodea, Iridopterygidae, Tropidomantinae). ZooKeys 556: 65-81. https://doi.org/10.3897/zookeys.556.6906
Figure 1 - Cornucollis masoalensis gen.n., sp. n., male (scale bar = 10 mm). A dorsal habitus B ventral habitus.
Figure 9 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 9 - Male genitalia of Hydrobius morphotypes in dorsal view. A Hydrobius fuscipes fuscipes B Hydrobius fuscipes subrotundus C Hydrobius fuscipes rottenbergii D Hydrobius arcticus.
Figure 8 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 8 - Species tree with the largest posterior probability from BPP v3.0 analyses conducted on Hydrobius specimens. Multi-locus data (COI, H3 and ITS2) used with Hydrobius convexus included as outgroup. Values above branches indicate range of split posterior probabilities, i.e. the probability for the node representing a speciation event, from four different prior-combinations. Values in red have split probabilities < 1.0. *Clade VII only delimited when specimens from Clade VII were a priori assigned as a potential species separate from Hydrobius arcticus and Hydrobius fuscipes rottenbergii.
Figure 17 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 17 - Habitus of Hydrobius morphotypes in dorsal view. A Hydrobius arcticus B Hydrobius fuscipes rottenbergii C Hydrobius fuscipes fuscipes D Hydrobius fuscipes subrotundus.
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.