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227,023 results for “New species”
Figs 34–38 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 34–38. Cracticotaenia adelaidae sp. nov. 34. Scolex. 35. Detail of hooks crowns. 36. Hooks: anterior (A) and posterior (B). 37. Mature proglottis. 38. Eggs. Scale bars: 34 = 100 µm; 35 = 10 µm; 19 = 500 µm; 36, 38 = 20 µm; 37 = 250 µm.
Fig. 6 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 6. Bennelongia timmsi sp. nov., all represent females with molecular data available. — A-C. Grahams Rock (BVT/10/02 – WAMC52243 – cryptic species A1): A. LVi. B. RVi, detail anterior, tilted. C. RVi. — D-F. Grahams Rock (BVT/10/02 – WAMC52241 – cryptic species A2): D. LVi. E. RVi, detail anterior, tilted. F. RVi. — G-I. King Rocks (BVT/10/06 – WAMC52251 – cryptic species A2): G. LVi. H. RVi, detail anterior, tilted. I. RVi. — J-L. Wave Rock (BVT/10/05 – allotype WAMC52229 – cryptic species A3): J. LVi. K. RVi, detail anterior, tilted. L. RVi. — M-O. Mt Madden Rocks (BVT/10/08 – WAMC52254 – cryptic species A5): M. LVi. N. RVi, detail anterior, tilted. O. RVi. Scales: A, C-D, F-G, I-J, L-M, O = 1 mm; B, E, H, K, N = 200 µm.
Fig. 9 in Four new species of Xiphocentron Brauer, 1870 (Trichoptera: Xiphocentronidae) from the Atlantic Forest, southeastern Brazil
Fig. 9. Xiphocentron (Antillotrichia) tijuca sp. nov., holotype, adult, ♂, genitalia. A. Left lateral view. B. Dorsal view. C. Ventral view. D. Phallus apex, left lateral view. E. Phallus, apex in dorsal view. Scale bar = 0.1 mm.
Fig. 10 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 10. Bennelongia timmsi sp. nov., male paratype (WAMC52232) from type locality (Wave Rock, BVT/10/05) Aberrant specimen. A. Hemipenis. B. Hemipenis. C. Left prehensile palp. C'. Idem, detail of ventroapical part of first segment, showing two lobes and a sensory organ. C". Idem, detail of distal part of second segment, showing aberrant, bilobed morphology. D. Right prehensile palp. Scale: A-D = 92 µm; C', C" = 37 µm.
Fig. 12 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 12. Bennelongia gnamma sp. nov., type material from type locality (Cairn Rock, OSTR012A). A. ♀ paratype, LVi (OC.3322). B. ♀ paratype, RVi (idem). C. ♀ paratype, LVe (idem). D. ♀ paratype, RVe (idem). E. ♀ holotype, LVi (WAMC52263). F. ♀ holotype, RVi (idem). G. ♀ paratype, CpD (WAMC52266). H. ♀ paratype, RVi, detail anterior (OC.3322). I. ♀ paratype, RVi, detail anterior, tilted (idem). J. ♀ holotype, RVi, detail anterior (WAMC52263). K. ♀ holotype, RVi, detail anterior, tilted (idem). Scales: A-G = 1 mm; H-K = 200 µm.
Fig. 6 in Four new species of Xiphocentron Brauer, 1870 (Trichoptera: Xiphocentronidae) from the Atlantic Forest, southeastern Brazil
Fig. 6. Xiphocentron (Antillotrichia) redentor sp. nov., holotype, adult, ♂. A. Tibial spurs of the hind leg. B. Right wings, dorsal view. Scale bar = 0.5 mm.
Fig. 1 in Four new species of Xiphocentron Brauer, 1870 (Trichoptera: Xiphocentronidae) from the Atlantic Forest, southeastern Brazil
Fig. 1. Map showing the collecting sites at Parque Nacional da Tijuca (white circles) and distribution of Xiphocentron Brauer, 1870 in Brazil and part of South America (black circles). Species occurring in Brazil are figured in dorsal view (modified from Schmid 1982; Pes et al. 2013; Vilarino & Calor 2015; Rocha et al. 2017). The Atlantic Forest biome is highlighted in green.
Fig. 5 in Four new species of Xiphocentron Brauer, 1870 (Trichoptera: Xiphocentronidae) from the Atlantic Forest, southeastern Brazil
Fig. 5. Xiphocentron (Antillotrichia) maracanan sp. nov., holotype, adult, ♂, genitalia. A. Left lateral view. B. Dorsal view. C. Ventral view. D. Phallus apex, left lateral view. E. Phallus, apex in dorsal view. Scale bar = 0.1 mm.
Fig. 3 in Predatory midges of the tribes Palpomyiini and Sphaeromiini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
Fig. 3. Bezzia (Sivabezzia) spp. A–D. Bezzia pachypyga, ♂ (from Remm 1974). A. Genitalia, ♂. B. Parameres. C. Aedeagus. D. Seminal capsules, ♀. – E–I. Bezzia melanoflava (from Clastrier 1958). E. Genitalia, ♂. F. Parameres. G. Aedeagus, ventral view. H. Aedeagus, lateral view. I. Seminal capsules, ♀.
Figs 29–33 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 29–33. Notopentorchis musealis sp. nov. 29. Scolex. 30. Hooks: A, C. Anterior hooks, B. Posterior hook. 31. Mature proglottis. 32. Postmature proglottis. 33. Pregravid proglottis. Scale bars: 29, 31–33 = 100 µm; 30 = 20 µm.
Fig. 1 in Predatory midges of the tribes Palpomyiini and Sphaeromiini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
Fig. 1. Bezzia libanensis Alwin & Szadziewski sp. nov., ♂. A. Wing. B. Thorax. C. Antennal scape and flagellum. D. Fore leg. E. Mid leg. F. Hind leg. G. Male genitalia. H. Male genitalia, ventral view. I. Parameres. J. Aedeagus.
Fig. 2 in Predatory midges of the tribes Palpomyiini and Sphaeromiini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
Fig. 2. Bezzia sharjahi Szadziewski & Alwin sp. nov. A. Wing, ♀. B. Antennal flagellum, ♂. C. Antennal flagellum, ♀. D. Genitalia, ♂. E. Parameres. F. Aedeagus. G. Seminal capsules, ♀.
Fig. 3 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 3. Parsimonius network, based on COI sequences of the Bennelongia barangaroo lineage. Squares represent ancestral sequences (or haplotypes), small circles missing haplotypes. The size of squares and large ovals is proportional to the number of individuals with the same sequence in the analysed population. The network was constructed at the 95% probability limit, which includes up to 8 mutation steps for connecting different sequences or haplotypes. Different phylogenetic clades are indicated by different colours, which match those used in Fig. 2 (page 6).
Fig. 4 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 4. Bennelongia timmsi sp. nov., all represent paratypes from Wave Rock (BVT/10/05 – type locality). A. ♀, LVi (OC.3313). B. ♀, RVi (idem). C. ♀, CpRL (WAMC52235). D. ♂ holotype, LVi (WAMC52228). E. ♂ holotype, RVi (idem). F. ♂, CpRL (WAMC52236). G. ♀, CpD (WAMC52234). H. ♀, CpV (OC.3315). I. ♂, CpV (OC.3316). J. ♂, CpD (WAMC52237). K. ♂ holotype, RVi, detail anterior (WAMC52228). L. ♂ holotype, RVi, detail anterior, tilted (WAMC52228). M. ♀, LVi, detail anterior, tilted (OC.3313). Scales: A-J = 1 mm; K-M = 200 µm.
Fig. 13 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 13. Bennelongia gnamma sp. nov. (A-E, type specimens from type locality, Cairn Rock, OSTR012A) and Bennelongia hirsuta sp. nov. (F-I type specimens from type locality, Styles Rock, OSTR012D). Males. — A-E. B. gnamma sp. nov.: A. Hemipenis (both hemipenes symmetrical in this specimen, WAMC52264). B. Apical part of hemipenis (WAMC52265). C. Right prehensile palp (WAMC52264). D. Left prehensile palp (WAMC52264). E. Idem, detail of ventro-apical part of first segment (different specimen, WAMC52265). — F-I. B. hirsuta sp. nov. (WAMC52271): F. Hemipenis. G. Right prehensile palp. H. Left prehensile palp. H'. Idem, detail of ventro-apical part of first segment. I. Hemipenis. Scale: A-D, F-I = 92 µm; E, H' = 37 µm.
Fig. 9 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 9. Bennelongia timmsi sp. nov., paratypes from type locality (Wave Rock, BVT/10/05). — A-C. Paratype ♂ (WAMC52231): A. Hemipenis (both hemipenes symmetrical in this specimen). B. Right prehensile palp. C. Left prehensile palp. — D-F. Paratype ♂ (WAMC52230): D. Left prehensile palp. E. Right prehensile palp. F. Hemipenis (both hemipenes symmetrical in this specimen). Scale: A-F= 92 µm.
Fig. 2 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species
Fig. 2. Phylogenetic tree constructed with Bayesian Inference (BI) and Maximum Likelihood (ML) methods from COI sequences of 99 ostracods from the Bennelongia barangaroo lineage and with B. nimala as outgroup. Numbers above nodes illustrate statistical support for this particular node. Numbers before the hash (/) are % bootstrap values of ML analyses with 1000 replicates, numbers after the hash (/) are Bayesian posterior probabilities (ranging from 0 to 1). Both methods, BI and ML, resulted in the same tree topology. Different phylogenetic clades are indicated by different colours (as in Fig. 3, page 15). The asterisks indicate two nodes (α1 and α2) that are weakly supported (see Discussion, p. 55).
Figs 12–16 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 12–16. Monopylidium australiense sp. nov. 12. Scolex. 13. Hooks. 14. Mature proglottis. 15. Terminal genitalia. 16. Eggs. Scale bars: 12, 14 = 100 µm; 13, 16 = 20 µm; 15 = 50 µm.
Figs 17–22 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 17–22. Dictymetra gerganae sp. nov. 17. Scolex. 18. Hooks. 19. Mature proglottis. 20. Terminal genitalia. 21. Terminal genitalia tuft. 22. Egg. Scale bars: 17 = 100 µm; 18, 20, 21 = 50 µm; 19 = 500 µm; 22 = 20 µm.
Fig. 9 in Xibalbanus cozumelensis, a new species of Remipedia (Crustacea) from Cozumel, Mexico, and a molecular phylogeny of Xibalbanus on the Yucatán Peninsula
Fig. 9. Xibalbanus cozumelensis sp. nov., holotype (ZMUC-CRU-4791), trunk limbs, left side from anterior, light microscopy. A–J. Selected trunk segments (number specified on figure). All to the same scale.
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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.