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Figure 11 in Review of the systematics of the genus Roboastra Bergh, 1877 (Nudibranchia, Polyceridae, Nembrothinae) with the description of a new species from the Galápagos Islands
Figure 11. Majority rule (50%) consensus tree of the phylogenetic relationships of the genus Roboastra. Numbers above the branches refer to percentage of trees supporting the branch, numbers below to the bootstrap support values.
Figure 5. Roboastra rubropapulosa. A in Review of the systematics of the genus Roboastra Bergh, 1877 (Nudibranchia, Polyceridae, Nembrothinae) with the description of a new species from the Galápagos Islands
Figure 5. Roboastra rubropapulosa. A, original painting of Nembrotha rubropapulosa (Bergh, 1905). B, photograph of the living animal identified as R. rubropapulosa by T.M. Gosliner (Gosliner et al., 1996). C, right half of the radula of Nembrotha sp. (CASIZ 106531), previously identified as R. rubropapulosa. Scale bar = 90 Mm.
Figure 3 in Review of the systematics of the genus Roboastra Bergh, 1877 (Nudibranchia, Polyceridae, Nembrothinae) with the description of a new species from the Galápagos Islands
Figure 3. Drawings of reproductive systems of Roboastra spp. A, R. gracilis. B, R. luteolineata. C, R. tigris. D, R. europaea (adapted from Pola et al., 2003). E, R. caboverdensis. F, R. leonis sp. nov. Scale bar = 1 mm. Abbreviations: am, ampulla; bc, bursa copulatrix; fglm, female gland mass; ga, genital atrium; p, penis; pr, prostate; rs, receptaculum seminis, ud, uterine duct; va, vagina; vd, vas deferens; vgl, vaginal gland.
Figure 6 in Review of the systematics of the genus Roboastra Bergh, 1877 (Nudibranchia, Polyceridae, Nembrothinae) with the description of a new species from the Galápagos Islands
Figure 6. Photographs of living animals: A, Roboastra luteolineata, Papua New Guinea (photo T.M. Gosliner). B, R. tigris, Mar de Cortés (photo H. Debelius). C1, R. europaea, Carroñera, Spain (light form) (photo L. Tocino). C2, R. europaea, Tarifa, Spain (black form) (photo T.M. Gosliner. D, R. caboverdensis, Cape Verde (photo P. Wirtz). E, R. leonis sp. nov., the Galápagos Islands (photo T.M. Gosliner).
Figure 1 in Review of the systematics of the genus Roboastra Bergh, 1877 (Nudibranchia, Polyceridae, Nembrothinae) with the description of a new species from the Galápagos Islands
Figure 1. Roboastra gracilis: living specimens from: A, Fiji (photo K. Tucker); B, Cebu, Philippines (photo M. Miller); C, Sulawesi, Indonesia (photo L. Warren); and D, Hawaii (photo P. Fiene).
Figure 7 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 7. Fossil record and inferred time ranges of subgroups of Mantispidae, superimposed upon a preliminary phylogenetic tree, based mainly on Lambkin (1986a), modified here. CAL, Calomantispinae; DREP, Drepanicinae; MANT, Mantispinae; SYM, Symphrasinae. Dashed lines and '?' indicate uncertainty in relationships and time ranges.
Figure 5 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 5. The forewing pterostigma of the Jurassic mantispids. A, Liassochrysa stigmatica Ansorge & Schlüter 1990, holotype MB.I 5046 (No. LDA301, formerly from the Ansorge collection, Dobbertin, Germany); (photograph converted to standard right dorsal view); photograph by C. Neumann, MB. B, Promantispa similis, holotype PIN 2784/1080 (Karatau, Kazakhstan; Karabastau Formation). R1, first branch of radius; Sc, subcosta. Scale bar = 1 mm for both parts.
Figure 4 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 4. Apical portion of forewing margin of Symphrasites eocenicus showing trichosors (arrows). Scale bar = 100 µm. Laser scanning photograph.
Figure 2 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 2. Symphrasites eocenicus gen. et sp. nov., holotype MeI 8384. A, photograph. B, drawing of the forewing. Scale bar = 1 mm.
Figure 6. Mesomantispa sibirica Makarkin, 1997, specimen PIN 4210 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 6. Mesomantispa sibirica Makarkin, 1997, specimen PIN 4210/5275. A, photograph of the forewing. B, drawing of the forewing. Dashed lines indicate poorly preserved veins. 1A, anal vein 1; CuA, anterior cubitus; CuP, posterior cubitus; MA and MP, anterior and posterior branches of media; R1, first branch of radius; Rs, radial sector; Sc, subcosta. Scale bar = 1 mm.
Figure 6 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 6. Genital field in A, Simplicaris lethaea gen. et sp. nov. (♀). B, Parastenocaris brevipes (♀), Onkimanjarvi Lake, Finland (USNM 259764). Arrow indicates the copulatory pore.
Figure 5. Male P4 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 5. Male P4 exopod in representative members of the family Parastenocarididae. A, Simplicaris lethaea gen. et sp. nov. B, Parastenocaris brevipes, Onkimanjarvi Lake, Finland (USNM 259764). C, Parastenocaris glareola Hertzog, 1936, River Rhône, France.
Figure 4 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 4. Segmental pattern of male antennule in representative members of Parastenocarididae. A, Simplicaris lethaea gen. et sp. nov. (♂). B, Parastenocaris brevipes Kessler, 1913 (♂), Onkimanjarvi Lake, Finland (USNM 259764). C, Forficatocaris claudii (♂) (after Ahnert, 1994; redrawn).
Figure 2 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 2. Simplicaris lethaea gen. et sp. nov. (A-C, G: ♂ paratype; D-F, H: ♂ holotype). A, mandible. B, maxillule. C, maxilla. D, maxilliped. E, P1. F, P2. G, P3. H, P4.
Figure 3 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 3. Simplicaris lethaea gen. et sp. nov. (♀ paratype). A, urosome. B, genital field. C, antennule. D, P2. E, P3. F, P4.
Figure 1 in Towards a revision of the genus Parastenocaris Kessler, 1913: establishment of Simplicaris gen. nov. from groundwaters in central Italy and review of the P. brevipes-group (Copepoda, Harpacticoida, Parastenocarididae)
Figure 1. Simplicaris lethaea gen. et sp. nov. (A, C: ♂ paratype; B, D: ♂ holotype). A, habitus. B, urosome. C, antennule. D, antenna.
Figure 13 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 13. Cladogram depicting the relationships of 22 species of the genus Hexabathynella. Unique characters are indicated by closed circles, homoplasies by open circles. The numbers in parentheses are the Bremer support values.
Figure 11 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 11. Antennal organ of Hexabathynella. A, H. pauliani. B, H. halophila. C, H. aotearoae. D, H. decora. E, H. otayana. F, H. hessleri. G, H. szidati. Without a scale bar.
Figure 10 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 10. Hexabathynella virginiae sp. nov. A, right thoracopod II ♀ (frontal). B, left thoracopod III ♀ (frontal). C, right thoracopod IV ♀ (frontal). D, right thoracopod V ♀ (frontal). E, pleotelson, furcal rami, and uropod ♀ (outer lateral). F, pleotelson, furcal rami, and uropod ♀ (dorsal). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 6 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 6. Hexabathynella africana sp. nov. A, left thoracopod IV (frontal). B, left thoracopod V (frontal). C, left thoracopod VI (frontal). D, thoracopod VIII ♀ (lateral). E, thoracopod VIII ♂ (ventral). F, pleopod I (ventral). G, pleotelson, furcal rami, and uropod ♀ (dorsal). H, distal part of exopod of uropod (ventral). I, pleotelson, furcal rami, and uropod ♀ (outer lateral). J, furcal rami ♀ (inner lateral). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
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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.