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Fig. 4 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 4. Habitus (A–G) and habitat (H, I) images of Thai ortotylines. A, B, Melanotrichus thaimaritimus, adult male; C, D, M. thaimaritimus, adult female; E, M. thaimaritimus, male final-instar nymph; F, M. thaimaritimus, female final-instar nymph; G, 3rd instar nymph; H, colony of a halophyte, Sueada maritima (Bang Pu, Samut Prakan), habitat of M. thaimaritimus (Bang Pu, Samut Prakan); I, Hibiscus tiliaceus tree (Ban Phe, Rayong), on which Pseudoloxops hibiscus was found.
Fig. 1 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 1. Habitus images of Thai orthotylines. A, Cyrtorhinus indochinanus, male (Nakhon Nayok); B, Cyrtorhinus indochinanus, female; C, Cyrtorhinus indochinanus, female (lower) with C. lividipennis, female (SERS); D, C. lividipennis, male (SERS); E, Orthotylus taksini, male (SERS); F, Orthotylus taksini, female (SERS).
Figs. 109–120. 109, 111–115 in A study on the tribe Poecilonotini, with a revision of the subtribe Nesotrinchina subtrib. nov. and the description of a new genus and species from Papua New Guinea (Coleoptera: Buprestidae: Chrysochroinae)
Figs. 109–120. 109, 111–115 – Ulaikoilia jelineki Bílý & Kubáň, gen. nov., sp. nov., holotype, male (109 – head, frontal view; 111 – prosternal process; 112 – anal ventrite; 113 – aedeagus; 114 – right antenna; 115 – subhumeral portion of elytral margin). 110, 116–117 – Nesotrinchus coeruleipennis (Fairmaire, 1877) (110 – head, frontal view; 116 – subhumeral portion of elytral margin; 117 – aedeagus, dorsal view). 118 – N. thomsoni Bílý & Kubáň, nom. nov., aedeagus, dorsal view. 119 – N. australicus (Kerremans, 1903), aedeagus, dorsal view. 120 – Pseudhyperantha jucunda Saunders, 1869, male, Malaysia, right antennomere 7, ventral view, apical fossa and lateral field (Photo: M. G. Volkovitsh).
Figs. 98–108. 98–102 in A study on the tribe Poecilonotini, with a revision of the subtribe Nesotrinchina subtrib. nov. and the description of a new genus and species from Papua New Guinea (Coleoptera: Buprestidae: Chrysochroinae)
Figs. 98–108. 98–102 – Lamprodila (Ovalisia) auricollis (Deyrolle, 1864), female, 11.0 mm, Halmahera Island. 103–108 – Ulaikoilia jelineki Bílý & Kubáň, gen. nov., sp. nov., holotype, male, 9.8 mm, Papua New Guinea. 98, 103 – habitus, dorsal view; 99, 104 – habitus, lateral view; 105 – right antenna; 100, 106 – head, frontal view; 101, 107 – prosternal process; 102, 108 – anal ventrite.
Figs. 121–130. 121, 127 in A study on the tribe Poecilonotini, with a revision of the subtribe Nesotrinchina subtrib. nov. and the description of a new genus and species from Papua New Guinea (Coleoptera: Buprestidae: Chrysochroinae)
Figs. 121–130. 121, 127 – Nesotrinchus australicus (Kerremans, 1903): paralectotype of a synonym N. simondsi Obenberger, 1924, female, Fiji, NMPC. 122, 129 – Ulaikoilia jelineki Bílý & Kubáň, gen. nov., sp. nov., holotype, Papua New Guinea. 123 – Melobasina apicalis Kerremans, 1900, female, Guadalcanal Island. 124 – Lamprodila (Ovalisia) auricollis (Deyrolle, 1864), female, Halmahera Island. 125 – Cardiaspis pisciformis Théry, 1904, female (NMPC), India. 126 – Haplotrinchus pyrochlorus (Fairmaire, 1877), syntype, female (NMPC), Fiji. 128 – Melobasina ignita (Théry, 1937) (synonym of M. apicalis), holotype, female, Bougainville Island. 130 – Haplotrinchus philippinensis Obenberger, 1928, syntype, female, Philippines, Luzon. 121–126 – right wing, dorsal view; 127–130 – abdomen, dorsal view; T7 = visible tergite 7; T8 = visible tergite 8.
FIG. 8 in A New Genus and New Tribe for Enicognathus melanauchen Jan, 1863, a Neglected South American Snake (Colubridae: Xenodontinae), with Taxonomic Notes on Some Dipsadinae
FIG. 8. Examples of field-everted hemipenes showing diminution (A) or loss (B–C) of distal forks after expansion of capitulum. Pliable tissue separating the sulcus branches before eversion is stretched flat in B and C. (Scale line = 1 mm.) A. Leptodeira annulata cussiliris (AMNH R-107291, right organ); fork slightly widened (cf., fig. 7B), with very short branch terminations concealed in calyces. B. Leptodeira annulata annulata (AMNH R-133340, right organ); a pronounced fork on field-everted organ expanded into this shape after softening in KOH and injection with petroleum jelly (shape is triangular, the heart-shaped appearance imparted by overhanging calyces at top). C. Leptodeira maculata (AMNH R-82150, right organ), showing extreme flattening and loss of terminal fork.
FIG. 2. Enicognathus melanauchen Jan 1863 in A New Genus and New Tribe for Enicognathus melanauchen Jan, 1863, a Neglected South American Snake (Colubridae: Xenodontinae), with Taxonomic Notes on Some Dipsadinae
FIG. 2. Enicognathus melanauchen Jan 1863. Lateral view of anterior body of holotype between ventral plates 17 and 27, ×7.9. Feeble keels are present on some dorsal scales in all rows, but are not discernible on many scales in rows 1–2.
FIG. 5 in A New Genus and New Tribe for Enicognathus melanauchen Jan, 1863, a Neglected South American Snake (Colubridae: Xenodontinae), with Taxonomic Notes on Some Dipsadinae
FIG. 5. Hemipenis of Amnesteophis melanauchen (Jan 1863). Manually everted left organ of holotype of Enicognathus melanauchen, in sulcate (left), apical (top), and asulcate (right) views. (Basal half of organ is split and spread flat; the inflated distal half is fully everted but probably not maximally expanded.) The basally spinulate hemipenis is mostly spinose (spines emphasized by stippling); the spines are replaced on the small lobes by larger, soft flat- tened papillae; the unforked sulcus spermaticus extends centripetally to apex of the left lobe (sinistral sulcus) without entering a nude area in the lobular crotch; calyces are lacking (scale line = 1 mm).
FIG. 6 in A New Genus and New Tribe for Enicognathus melanauchen Jan, 1863, a Neglected South American Snake (Colubridae: Xenodontinae), with Taxonomic Notes on Some Dipsadinae
FIG. 6. Portion of plate 1, livraison 16, in the Iconographie générale des ophidiens (Jan and Sordelli, 1866 [1860–1881]), shown 0.77× original folio size. 1. Syntype of Enicognathus occipitalis Jan 1863, now = Taeniophallus occipitalis. 2. Holotype of Enicognathus melanauchen Jan 1863, type species of Amnesteophis as proposed herein (see also figs. 1–3 and text for comments on faded color pattern).
FIG. 4 in A New Genus and New Tribe for Enicognathus melanauchen Jan, 1863, a Neglected South American Snake (Colubridae: Xenodontinae), with Taxonomic Notes on Some Dipsadinae
FIG. 4. Maxillary dentition of Amnesteophis melanauchen (Jan 1863). Right maxilla of holotype of Enicognathus melanauchen in lateral and ventral views (scale line = 1 mm).
FIG. 2 in Phylogenetic relationships and generic taxonomy of the tribe Paini (Amphibia, Anura, Ranidae, Dicroglossinae), with diagnoses of two new genera
FIG. 2. — Result of neighbour-joining analysis of phylogenetic analysis of 19 species of the tribe Paini based on partial sequences of mitochondrial 12S and 16S rRNA genes (Jiang et al. 2005). Black bars indicate presence of large sized horny spines: 1, presence of such spines; 2, two separated patches of spines on breast; 3, a single patch of spines covering breast and parts of belly. Grey bars indicate loss of horny spines on breast and belly of adult males.
FIG. 1 in Phylogenetic relationships and generic taxonomy of the tribe Paini (Amphibia, Anura, Ranidae, Dicroglossinae), with diagnoses of two new genera
FIG. 1. — Strict consensus of 16 trees (107 steps, CI 0.364, RI 0.653) based on 30 species of the tribe Paini and 31 morphological characters obtained by simple stepwise addition, followed by branch swapping using the TBR (trees bisection-reconnection) routine implemented in PAUP 4. Numbers of the stems below the horizontal lines on this tree are those used in Table 2 which presents the results of the heuristic analysis, whereas letters above some horizontal lines (A, B, B1, B2, C, C1, C2, C3) are those of the groups discussed in our taxonomic analysis and which are the basis for our recognition of taxa. Bremer indices were 1 for almost all numbered
Figs. 35–39. Sparasion Latreille. 35 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 35–39. Sparasion Latreille. 35, Lateral habitus, female (OSUC 171667). 36, Head and mesosoma, lateral view (OSUC 171667). 37, Head, frontal view, female (OSUC 171667). 38, Head and mesosoma, dorsal view, female (OSUC 171667). 39, Detail of forewing (OSUC 171666). 40, Prosparasion coeruleum Kieffer (5 Sparasion lividus Johnson, Musetti and Masner, n. n.), head and mesosoma, lateral view, holotype female. b, bulla; dep, mesopleural depression; f, mesoscutal flange; no, notaulus; R, radius (submarginal vein); R1, first abscissa of radius (postmarginal vein); r, radicle; r-rs, radial-radial sector crossvein (stigmal vein); tc, transverse carina; tpc, transverse pronotal carina. Scale bars in millimeters.
Figs. 29–31. Sceliomorpha longicornis Ashmead, holotype male. 29, Lateral habitus. 30 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 29–31. Sceliomorpha longicornis Ashmead, holotype male. 29, Lateral habitus. 30, Head and mesosoma, dorsal view. 31, Head, frontal view. Figs. 32–34. Aliofreniger rugosiceps Szabó, holotype female. 32, Head, frontal view. 33, Lateral habitus. 34, Head and mesosoma, dorsal view. Scale bars in millimeters.
Figs. 19–22 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 19–22. Habitus of Sparasionini. 19, Sparasion, dorsal habitus. 20, Sceliomorpha, dorsal habitus. 21, Sceliomorpha, lateral habitus. 22, Sparasion, lateral habitus. Scale bars 5 1 mm.
Figs. 7–12 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 7–12. Listron Musetti and Johnson, n. gen. 7, L. politum Musetti and Johnson, n. sp., lateral habitus, holotype male (OSUC 162182). 8, L. politum, n. sp., head, frontal view, holotype male. 9, L. politum, n. sp., head and mesosoma, dorsal view, holotype male. 10, L. bilaminatum Masner, n. sp., head and mesosoma, dorsal view, holotype male (OSUC 174168). 11, L. bilaminatum, n. sp., head and mesosoma, lateral view, holotype male. 12, L. bilaminatum, n. sp., head, frontal view, holotype male. dep, mesopleural depression; no, notaulus; pl3, metapleuron; s, foretibial spur; U, fused antennal radicle. Scale bars in millimeters.
Figs. 25–28 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 25–28. Sceliomorpha deplanata Kieffer (OSUC 10143). 25, Lateral habitus. 26, Head, frontal view. 27, Head and mesosoma, lateral view. 28, Head and mesosoma, dorsal view. dep, mesopleural depression; tpc, transverse pronotal carina; U, fused antennal radicle. Scale bars in millimeters.
Figs. 1–6. Electroteleia stigmatica Brues. 1 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 1–6. Electroteleia stigmatica Brues. 1, Lateral habitus, holotype female (MCZC 8149). 2, Head and anterior mesosoma, ventrolateral view, holotype female. 3, Head and mesosoma, lateral view, holotype female. 4, Forewing and metasoma, lateral view, holotype female. 5, Head, anteroventral view (OSUC 167190). 6, Head and mesosoma, ventral view (OSUC 167190). ac, acetabular carina; b, bulla; dep, mesopleural depression; ms, malar sulcus; n, netrion; R, radius (submarginal vein); R1, first abscissca of radius (postmarginal vein); r-rs, radial-radial sector crossvein (stigmal vein); tpc, transverse pronotal carina. Scale bars in millimeters.
Figs. 13–18 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 13–18. Mexon Masner and Johnson, n. gen. 13, M. adelphos Masner and Johnson, n. sp., head and mesosoma, lateral view, holotype male (OSUC 174166). 14, M. adelphos, n. sp., head, frontal view, holotype male. 15, M. adelphos, n. sp., head and mesosoma, dorsal view, holotype male. 16, M. consors Masner and Johnson, n. sp., head and mesosoma, dorsal view, holotype male (OSUC 174167). 17, M. consors, n. sp., lateral habitus, holotype male. 18, M. consors, n. sp., head, lateral view, holotype male. dep, mesopleural depression; mpc, mesopleural carina; r, radicle. Scale bars in millimeters.
Figs. 23–24 in Review of Genera of the Tribe Sparasionini (Hymenoptera: Platygastroidea, Scelionidae), and Description of Two New Genera from the New World
Figs. 23–24. Distribution of Sparasionini. 23, Sceliomorpha. 24, Sparasion. Maps drawn with units of latitude and longitude of equal size.
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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.