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Fig. 1 in New genera and problematic species in African Lithosiinae (Lepidoptera, Arctiidae, Lymantriidae)
Fig. 1. Parafrasura pectinella (Strand, 1922). A. Holotype ♂, Angola, in BMNH. B. ♂, Democratic Republic of the Congo, in BMNH. C. ♂, Cameroun, in BMNH. D. Enlarged Fig. B, showing the basal bands of the forewing. E. ♂, head of Fig. C enlarged, showing the bipectinate antennae. F. ♂ genitalia, g.sl. BM ARCT 5741, Chad. G. Aedeagus, g.sl. BM ARCT 5741, Chad.
Fig. 6 in New genera and problematic species in African Lithosiinae (Lepidoptera, Arctiidae, Lymantriidae)
Fig. 6. Eugoa aequalis (Walker, 1857). A. Holotype ♀, Borneo, in BMNH. B. ♂ genitalia, g.sl. BM ARCT 5057, Borneo. C. Aedeagus, g.sl. BM ARCT 5057, Borneo.
Fig. 24. A-C, E, F in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 24. A-C, E, F. Bennelongia kimberleyensis sp. nov. (♂, OC.3323, Parry's Lagoon, Kimberley); D. B. strellyensis sp. nov. (♂, WAM.C49421, Strelley Station, Pilbara). A. Right prehensile palp. B. Left prehensile palp. C. Hemipenis outline. E. T2. F. A1, without chaetotaxy, showing strongly sclerified dorsal margins of segments. D. Right prehensile palp. Scales: C, E, F = 232 µm; A, B, D = 92 µm.
Fig. 23 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 23. Bennelongia kimberleyensis sp. nov. (all from Taylors Lagoon, Kimberley, type locality). A. LVi (allotype ♀, WAM.C49433). B. RVi (♀, Idem). C. LVi (♂, WAM.C49437). D. RVi (♂, Idem). E. Cp dorsal (♀, WAM.C49435A). F. Cp ventral (♀, WAM.C49435C). G. Cp ventral (♂, WAM. C49436A). H. Cp dorsal (♂, WAM.C49436B). I. RVi (detail anteriorly, allotype ♀, WAM.C49433). J. RVi (detail anteriorly, ♀, Idem). K. CpRe (♀, WAM.C49435B). L. CpRe (♂, WAM.C49436C). Scales: A-H, K-L = 500 µm; I-J = 200 µm.
Fig. 21 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 21. Bennelongia strelleyensis sp. nov. (all from Strelley station, Pilbara, type locality). A. LVi (allotype ♀, WAM.C49420). B. RVi (♀, Idem). C. LVi (♂, WAM.C49421). D. RVi (♂, Idem). E. Cp dorsal (♀, WAM.C49423A). F. Cp ventral (♀, WAM.C49423B). G. Cp ventral (♂, WAM. C49424B). H. Cp dorsal (♂, WAM.C49424A). I. RVi (detail anteriorly, allotype ♀, WAM.C49420). J. RVi (detail anteriorly, ♀, Idem). K. CpRL (♀, WAM.C49423C). L. CpRL (♂, WAM.C49424A). Scales: A-H, K = 1000 µm; L = 500 µm; I-J = 200 µm.
Fig. 22 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 22. Bennelongia strellyensis sp. nov. (all from Strelley Station, Pilbara, type locality; ♂; A-C = holotype ♂, WAM.C49419; D=OC.3321). A. Hemipenis outline. B. Right prehensile palp. C. Left prehensile palp. D. Left prehensile palp. Scales: A = 232 µm; B-D = 92 µm.
Fig. 20 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 20. Bennelongia bidgelangensis sp. nov. (A-C = holotype ♂, WAM.C49412; D-E = WAM.C49414). A. Right prehensile palp. B. Outline of hemipenes. C. Left prehensile palp. D. Left prehensile palp. E. Right prehensile palp. Scales: B = 232 µm; A, C-E = 92 µm.
Fig. 19 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 19. Bennelongia bidgelangensis sp. nov. (all from Bidgelang Pool, type locality). A. LVi (allotype ♀, WAM.C49413). B. RVi (♀, Idem). C. LVi (holotype ♂, WAM.C49412). D. RVi (♂, Idem). E. Cp dorsal (♀, WAM.C49415B). F. Cp ventral (♀, WAM.C49415C). G. Cp ventral (♂, WAM.C49415A). H. Cp dorsal (♂, Idem). I. RVi (detail anteriorly, holotype ♂, WAM.C49412). J. RVi (detail anteriorly, tilted, ♂, Idem). K. Cp RL (♀, WAM.C49415D). Scales: A-H, K = 500 µm; I, J = 200 µm.
Fig. 18 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 18. Bennelongia cuensis sp. nov. (all from pan near Cue, type locality). A. LVi (♂, WAM.C49408). B. RVi (♂, Idem). C. Cp dorsal (♀, specimen lost). D. Cp ventral (♀, same specimen lost). E. Cp ventral (♂, WAM.C49410A). F. Cp dorsal (♂, Idem). G. CpRL (allotype ♀, WAM.C49407). H. CpRL (♂, WAM.C49410B). I. RVi (detail anteriorly, ♂, WAM.C49408). J. RVi, detail anteriorly (tilted ♂, Idem). K. RVi (detail anteriorly, tilted ♂, Idem). Scales: A-H = 1000 µm; I-K = 200 µm.
Fig. 17. A-C in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 17. A-C. Bennelongia lata sp. nov. (holotype ♂, WAM.C49399); D-H. Bennelongia cuensis sp. nov. (D-G = holotype ♂, WAM.C49406; H = OC.3319). A. Left prehensile palp and detail of apical sensory organs on first segment. B. outline of hemipenes (note that distal shield is folded in left hemipenis). C. Right prehensile palp. D. Right prehensile palp. E. Outline of hemipenis. F. Outline of second hemipenis, same individual. G. Left prehensile palp. H. Left prehensile palp. Scales: B, E, F = 232 µm,; A, C, D, G, H = 92 µm; A' = 37 µm.
Fig. 16 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 16. Bennelongia lata sp. nov. (all from Yandoo Billabong, type locality). A. LVi (allotype ♀, WAM. C49400). B. RVi (♀, Idem). C. LVi (♂, WAM.C49401). D. RVi (♂, Idem). E. Cp dorsal (♀, specimen lost). F. Cp ventral (♀, WAM.C49402A). G. Cp ventral (♂, WAM.C49402B). H. Cp dorsal (♂, WAM. C49402C). I. RVi (detail anteriorly, allotype ♀, WAM.C49400). J. RVi (detail anteriorly, tilted, allotype ♀, WAM.C49400). K. Cp RL view (♀, specimen lost). Scales: A-H, K = 1000 µm; I, J = 200 µm.
Fig. 15 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 15. Bennelongia gwelupsensis sp. nov. (all ♀, from Lake Gwelup, Perth – type locality). A. LVi (holotype ♀, WAM.C49394). B. RVi (Idem). C. Cp RL (WAM.C49395A). D. CpV (detail anteriorly, WAM.C49395B). E. CpD (WAM.C49395C). F. Cp anteriorly (animal inverted) (WAM. C49395D). G. CpV (WAM.C49395B), H. CpRL (detail anteriorly, WAM.C49395A). I. RVi (detail anteriorly, holotype ♀, WAM.C49394). J. RVi (detail anteriorly, tilted, Idem). Scales: A-C, E,G = 1000 µm; F = 500 µm; D,H-J = 200 µm.
Fig. 3 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 3. Parsimonious network, based on COI sequences of Bennelongia. Squares represent ancestral sequences (or haplotypes), small circles missing haplotypes. The size of squares and large circles is proportional to the number of individuals with the same sequence in the analyses population. The network was constructed at the 95% probability limit, which usually includes up to 8 steps for connecting different sequences (or haplotypes). Thus, the two sequences of B. lata being 10 mutational steps apart needed to be connected manually by lowering the connection probability. The specimens belonging to the B. australis group form four groups, consisting of the species B. gwelupensis sp. nov., B. coondinerensis sp. nov., B. lata sp. nov. and B. cuensis sp. nov., while the specimens belonging to the B. pinpi group forms two distinctive lineages, with B. kimberleyensis sp. nov. and B. strelleyensis sp. nov. from the Kimberly and the Pilbara, respectively.
Fig. 11 in On the genus Halirages (Crustacea, Amphipoda), with the description of two new species from Scandinavia and Arctic Europe
Fig. 11. Halirages stappersi sp. nov., holotype ♂, 20 mm, Kara Sea, RV Belgica stn 132. D, E, F, H. original. A, B, C, G. after Stappers (1911). A. left Gn1. B. left Gn2. C. left P3. D. right P5. E. ischium and tip of basis of right P5. F. ischium and tip of basis of right P6. G. left P7. H. ischium and tip of basis of right P7.
Fig. 8 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 8. Bennelongia cygnus sp. nov. (all from holotype ♂, WAM.C49370). A. Hemipenis, showing internal anatomy of labyrinth. B. Outline of other hemipenis. C. Left prehensile palp. D. Right T1, showing partial chaetotaxy and right prehensile palp. E. Right T1, showing distal chaetotaxy of endopodite. Scales: A-D = 92 µm; E = 37 µm.
Fig. 2 in On the genus Halirages (Crustacea, Amphipoda), with the description of two new species from Scandinavia and Arctic Europe
Fig. 2. Halirages cainae sp. nov., holotype ♂, 40 mm, Norwegian Sea, MAREANO 2009-111, R-station 487, sample 157, habitus, left side; pereiopods illustrated in leveled position; gnathopods (except coxae) illustrated after right legs.
Fig. 1 in On the genus Halirages (Crustacea, Amphipoda), with the description of two new species from Scandinavia and Arctic Europe
Fig. 1. Halirages cainae sp. nov., paratype, sex unknown, about 40 mm, MAREANO 2009-111, R-station 488, sample 379, habitus.
Fig. 11 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 11. Bennelongia frumenta sp. nov. (all allotype ♂, WAM.C49381, Kodjinup Melaleuca, type locality). A. Outline of hemipenis. B. Right prehensile palp. C. Left prehensile palp, detail of distal part. D. Left prehensile palp. E. T2 (walking leg). Scales: E = 232 µm; A-C= 92 µm; D = 37 µm.
Fig. 4 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily
Fig. 4. General morphology of Bennelongia valves. A. B. cygnus sp. nov., ♀, CpV (WAM.C49378). B. B. cuensis sp. nov., ♀, LV dorso-anterior view, tilted, showing elevated inner list (WAM.C49408). C. B. cygnus sp. nov., ♀, RV, antero-ventral view, tilted, showing tear-like lapel and row of tubercles (OC.3311). D. B. lata sp. nov., ♀, RV, antero-ventral view, tilted, showing broad lapel and row of tubercles (specimen lost). E. B. kimberleyensis sp. nov., ♀, RV, antero-ventral view, tilted, showing absence of lapel and expansion of valve (WAM.C49433 allotype). F. B. frumenta sp. nov. ♀, CpRL view (WAM.C49383). G. B. gwelupensis sp. nov. ♀, CpRL view, detail of antero-ventral part (WAM. C49395A). Not to scale.
Fig. 8. Halirages qvadridentatus G.O. Sars, 1877 in On the genus Halirages (Crustacea, Amphipoda), with the description of two new species from Scandinavia and Arctic Europe
Fig. 8. Halirages qvadridentatus G.O. Sars, 1877 (syntypes of Halirages elegans Norman, 1882), Faeroe Islands, RV Knight Errant, stn 8. A-B. largest syntype, ♂ (30 mm); C-F. microscopical preparations by Norman. A. habitus. B. ventral part of pereion with coxal plates and proximal part of posterior pereiopods. C. right Gn1 (coxa broken in two parts on slide and reassembled on drawing). D. ventral margin of right coxa 1. E. right Gn2 (anteroventral corner of coxa indistinct, hidden by varnish on border of microscopical preparation). F. posterior border of Ep3.
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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.