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Figs. 57–62. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 57–62. Synaphris saphrynis, n.sp. Male paratype, left palp, details. 57. Detail of apex, showing embolus, terminal and subterminal apophyses, and paracymbium, in retrolateral view (detail of fig. 53); 58. Same, closer view of terminal and subterminal apophyses; 59. Detail of apex in apical view (detail of fig. 51); 60. Detail of retrolateral paracymbium; 61. Detail of apophyses, apical view; 62. Embolus tip. Abbreviations are spelled out in appendix 1.
Fig. 30. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Fig. 30. Synaphris saphrynis, n.sp. Male paratype, schematic drawing showing tracheal system, dorsal view.
Figs. 40–45. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 40–45. Synaphris saphrynis, n.sp. Male paratype, spinnerets. 40. Spinning field; 41. Same, ventral view; 42. Right anterior lateral spinneret; 43. Posterior median spinnerets; 44. Right posterior lateral spinneret; 45. Left posterior lateral spinneret. Abbreviations are spelled out in appendix 1.
Figs. 46–48. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 46–48. Synaphris saphrynis, n.sp. Male paratype, left palp. 46. Prolateral view; 47. Retrolateral view; 48. same, cleared. Abbreviations are spelled out in appendix 1.
Figs. 27–29. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 27–29. Synaphris saphrynis, n.sp. Male paratype, right leg IV. 27. Tarsus and metatarsus, dorsal view; 28. Tarsal claws, frontal-retrolateral view; 29. Same, retrolateral view, arrow to dorsal denticle on inferior claw.
Figs. 2–6. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 2–6. Synaphris saphrynis, n.sp. Male paratype. 2. Ventral view; 3. Frontal view; 4. Cephalothorax, lateral view; 5. Detail of mouthparts, frontal view, arrow to clavate maxillary setae; 6. Detail of cheliceral prolateral short hairs.
Figs. 7–10. Synaphris saphrynis, n in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Figs. 7–10. Synaphris saphrynis, n.sp. Male paratype. 7. Sternum, ventral view; 8. Mouthparts, ventral view; 9. Mouthparts, posterior view; 10. Detail of mouthparts, showing labrum and labium, ventral view.
Fig. 1 in Spinneret Spigot Morphology in Synaphrid Spiders (Araneae, Synaphridae), with Comments on the Systematics of the Family and Description of a New Species of Synaphris Simon 1894 from Spain
Fig. 1. Map showing the geographic distribution of the described species of Cepheia and Synaphris around the Mediterranean region in Europe. For the geographic distribution of the recent species from Madagascar, see Miller (in press). For Synaphris, each location represents one described species. For Cepheia, all locations represent the geographical distribution of Cepheia longiseta.
Figs. 41–49 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 41–49. Detail of forewing venation; apex of wing to right. 41, Proplatygaster sp. (Platygastridae). 42, Nixonia watshami Johnson and Masner (Scelionidae: Nixoniini). 43, Sceliomorpha sp. (Scelionidae: Sparasionini). 44, Neuroscelio doddi Galloway, Masner, and Austin (Scelionidae: putatively Gryonini). 45, Heptascelio sp. (Scelionidae: Scelionini). 46, Oxyscelio sp. (Scelionidae: Baryconini). 47, Chromoteleia sp. (Scelionidae: Baryconini). 48, Phasgonophora sp. (Chalcidoidea: Chalcididae). 49, Liopteron sp. (Cynipoidea: Liopteridae). m, marginal vein; pm, postmarginal vein; sm, submarginal vein; st, stigmal vein. Scale bars in millimeters.
Figs. 31–34 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 31–34. Plaumannion yepezi García, n.sp., holotype female (OSUC 146571). 31, Mesosoma and metasoma, lateral view. The angulate profile of mesoscutum is an artifact. 32, Mesosoma and metasoma, dorsal view. 33, Head, frontal view. 34, Head, lateral view. Scale bars in millimeters.
Figs. 13–18 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 13–18. Cobaloscelio cuspidatus Johnson and Masner, n.sp. 13, Holotype male, lateral habitus (OSUC 83643). 14, Holotype male, frontolateral view. 15, Holotype male, metasoma, lateral view. 16, Paratype female, lateral view (OSUC 83621). 17, Female, ventral view (OSUC 83621). 18, Female, dorsal view of scutellum, forewing (OSUC 83621). Scale bars in millimeters.
Figs. 1–6. Archaeoscelio rugosus Brues. 1 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 1–6. Archaeoscelio rugosus Brues. 1, Holotype male, lateral habitus. 2, Holotype male, ventral view. 3, Lateral habitus, female (OSUC 67887). 4, Head and mesosoma, female, dorsolateral view (OSUC 67073). 5, Head, male, frontal view (OSUC 90315). 6, Scutellum and forewing, dorsal view (OSUC 83620). Scale bars in millimeters.
Figs. 25–30 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 25–30. Plaumannion fritzi Masner and Johnson, n.sp. 25, Holotype female, lateral habitus (OSUC 146569). 26, Holotype female, dorsal habitus. 27, Holotype female, head, frontal view. 28, Forewing. 29, Metasoma, paratype female, frontal view (OSUC 146570). 30, Metasoma, paratype female, dorsal view. Scale bars in millimeters.
Figs. 35–40 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 35–40. Huddlestonium exu Polaszek and Johnson, n.sp. 35, Holotype female, lateral habitus (OSUC 148692). 36, Paratype female, dorsal habitus (OSUC 148693). 37, Holotype female, head, frontal view. 38, Antenna, lateral view. 39, Wings. 40, Ovipositor, lateral (top) and ventral view (bottom). gp, gonoplacs. Scale bars in millimeters.
Figs. 7–12. Archaeoscelio filicornis Brues. 7 in Redescription of Archaeoscelio Brues and Description of Three New Genera of Scelionidae (Hymenoptera): A Challenge to the Definition of the Family
Figs. 7–12. Archaeoscelio filicornis Brues. 7, Holotype male, dorsolateral view. 8, Holotype male, ventrolateral view. 9, Lateral habitus, male (OSUC 67821). 10, Lateral habitus, female (OSUC 67397). 11, Forewing, female, dorsal view (OSUC 67821). 12, Ventrolateral view, female (OSUC 64198). Scale bars in millimeters.
FIG. 8 in Description of a new lithistid sponge from northeastern New Zealand, and consideration of the phylogenetic affinities of families Corallistidae and Neopeltidae
FIG. 8. — Amphiaster morphology in Homophymia stipitata n. sp. (NIWA P-1156). Amphiasters with recurved spines. Scale bar: 6 µm.
FIG. 7 in Description of a new lithistid sponge from northeastern New Zealand, and consideration of the phylogenetic affinities of families Corallistidae and Neopeltidae
FIG. 7. — Desma and pseudotriaene morphology and architecture in Homophymia stipitata n. sp. (NIWA P-1156); A, monocrepid megarhizoclone desmas in situ, note rhabds (r) of pseudotriaenes protruding through sponge surface; B, heavy zygome development around exhalant canals; C, pseudotriaenes with sinuous dichotomous and trichotomous arms with bifurcate tips; D, pseudotriaenes in situ in ectosome, note intricately meshed partially zygosed cladomes. Scale bars: A, 167 µm; B, 323 µm; C, 250 µm, D, 217 µm.
FIG. 3 in Description of a new lithistid sponge from northeastern New Zealand, and consideration of the phylogenetic affinities of families Corallistidae and Neopeltidae
FIG. 3. — Lithistid triaene and modified ectosomal desma morphologies; A, discotriaene with short rhabd and cup-shaped discate cladome, undescribed species of tetracladinid Discodermia sp., Jamaica; B, discotriaenes on ectosome of sponge, in situ, tetracladinid Discodermia sp., Jamaica; C, dichotriaene with bifurcate clads, cladome simple and non-ornamented, rhabd short relative to cladome width, tetracladinid Reidispongia coerulea Lévi & Lévi, Norfolk Ridge; D, dichophyllotriaene, undescribed species of tetracladinid Theonella, Republic of Palau; E, digitate discophyllotriaene, undescribed new genus and species of family Theonellidae, Republic of Palau; F, spathulate phyllotriaene, undescribed species of tetracladinid lithistid, Caribbean; G, indented discophyllotriaene, undescribed tetracladinid lithistid; H, irregular laterally ornamented phyllopseudotriaene, dicranocladinid Daedalopelta nodosa. Scale bars: A, 60 µm; B, E-G, 200 µm; C, D, 100 µm; H, 150 µm.
FIG. 2 in Description of a new lithistid sponge from northeastern New Zealand, and consideration of the phylogenetic affinities of families Corallistidae and Neopeltidae
FIG. 2. — Lithistid desma and triaene morphologies; A, smooth tetracrepid pseudodendroclone with branched terminii, in situ, Racodiscula sp, Caribbean; B, mammilate acrepid megaclones, note simple zygomes (z), in situ, undescribed species of Pleroma, New Zealand; C, sphaeroclones with several arms arising from one end of a globular spiky, hollow (hc) centrum (c), in situ, sphaerocladinid Vetulina stalactites Schmidt, Caribbean; D, dichotriaene with bifurcate clads, cladome simple and non-ornamented, rhabd long relative to cladome width, dicranocladinid Corallistes typus Schmidt, Caribbean; E, dichotriaenes with regular cladome but with surface ornamentation, rhabd long relative to cladome width, dicranocladinid Corallistes nolitangere Schmidt, Caribbean. Scale bars: A, 167 µm; B, 208 µm; C, 56 µm; D, 200 µm; E, 111 µm.
Figure 6 in A new species of Prosansanosmilus: implications for the systematic relationships of the family Barbourofelidae new rank (Carnivora, Mammalia)
Figure 6. Auditory region of Nimravidae, Barbourofelidae and Felidae. A, auditory region in juvenile Dinictis (UNSM 4051–81) from Nebraska (Hunt, 1987: fig. 5A). B, auditory bulla of Barbourofelis lovei (UF 55859) from Love bone bed, Florida (Hunt, 1987: fig. 9B). C, auditory bulla of Lynx rufus (UNSM 33–67) from Nebraska (Hunt, 1987: fig. 10B). D, auditory region of Sansanosmilus palmidens (MNHN Sa 3384) from Sansan, France. Abbreviations after Hunt (1987). E, ossified caudal entotympanic - Ea, anterior lamina, Ep, posterior lamina, Ev, vertical lamina; P, petrosal; PS, nimravid proseptum; Rs, septate lateral margin of rostral entotympanic; SB, septum bullae; SQ, squamosal; T, ectotympanic.
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.