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3,205 results for “new tribe”
Figs. 1–18. 1, 3–6 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. 1–18. 1, 3–6 – Pseudhyperantha jucunda Saunders, 1869, male, 17.0 mm, Borneo. 2 – P. bloetei Théry, 1935, female, Sumatra. 7–13 – Cardiaspis pisciformis Théry, 1904, India (7–9, 11, 13 – female, NMPC, 17.0 mm; 10, 12 – male, NMPC). 14–18 – Haplotrinchus philippinensis Obenberger, 1928, syntype, female, 15.5 mm, Philippines, Luzon. 1, 7, 14 – habitus, dorsal view; 2 – ovipositor, dorsal view; 3, 8, 15 – habitus, lateral view; 4, 9, 16 – head, frontal view; 5, 10–11, 17 – prosternal process; 6, 12–13, 18 – anal ventrite.
Figs. 19–33. 19–23 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. 19–33. 19–23 – Haplotrinchus marginefossus (Thomson, 1878), syntype, female, 14.5 mm, Vanuatu. 24–28 – H. pyrochlorus (Fairmaire, 1877), syntype, female, 15 mm, Fiji. 29–33 – H. manni Théry, 1937, paratype, female, 13.0 mm, Fiji. 19, 24, 29 – habitus, dorsal view; 20, 25, 30 – habitus, lateral view; 21, 26, 31 – prosternal process; 22, 27, 32 – head, frontal view; 23, 28, 33 – anal ventrite.
Figs. 82–97. 82–87 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. 82–97. 82–87 – Nesotrinchus caeruleipennis (Fairmaire, 1877), lectotype, female, 11.0 mm, Tonga. 88–89 – N. orientalis Bellamy, 1987 (synonym of N. caeruleipennis Fairmaire), paratype, male (BMNH), 11.0 mm, Tonga. 90–95 – N. caeruleipennis (Thomson, 1878) (= thomsoni Bílý & Kubáň, nom. nov.), lectotype, female, 13.5 mm, Fiji. 96–97 – N. thomsoni Bílý & Kubáň, nom. nov., male, 11.5 mm, Fiji. 82, 90 – habitus, dorsal view; 83, 91 – habitus, lateral view; 84, 92 – thorax, lateral view; 85, 88, 93, 96 – prosternal process; 86, 94 – head, frontal view; 87, 89, 95, 97 – anal ventrite.
Fig. 2 in A new tribe in the Chironominae (Diptera: Chironomidae) validated by first immature stages of Xiaomyia Saether & Wang and a phylogenetic review
Fig. 2. Xiaomyia Saether & Wang, 1993, T IV–VI of pupa. A, Fujian (Nanjing); B, Hubei (Enshi); C, Yunnan (Luosuo R.); D, Chongqing (Wuxi); E, Guangxi (Napo); F, Chongqing (Chengkou). Scale bars = 100 µm (A–F).
Fig. 1. Adult. A in A new tribe in the Chironominae (Diptera: Chironomidae) validated by first immature stages of Xiaomyia Saether & Wang and a phylogenetic review
Fig. 1. Adult. A, habitus of male Xiaomyia Saether & Wang, 1993 (Anhui); B, hypopygium dorsal view Xiaomyia (Anhui); C, hypopygium, ventral view, Xiaomyia; arrow indicates remnant of virga (Fujian); D, female genitalia, ventral, Xiaomyia (Chongqing); E, female genitalia, ventral, Shangomyia (Yunnan). Scale bars = 400 µm (A); 50 µm (B, C); 100 µm (D, E).
Fig. 4 in A new tribe in the Chironominae (Diptera: Chironomidae) validated by first immature stages of Xiaomyia Saether & Wang and a phylogenetic review
Fig. 4. Larval colour photographs, Xiaomyia Saether & Wang (A, B, D, F, G) and Shangomyia Saether & Wang (C, E). A, head capsule, ventral view; B, C, maxilla and premento-hypopharyngeal complex, arrows showing ribbed lobes; D, E, posterior occipital region; F, dorsal sclerite of head; G, larval abdomen, showing pupal abdominal spinulation beneath larval skin. Scale bars = 200 μm (A, G); 100 µm (F); 50 µm (B, C, D, E).
Fig. 3 in A new tribe in the Chironominae (Diptera: Chironomidae) validated by first immature stages of Xiaomyia Saether & Wang and a phylogenetic review
Fig. 3. Xiaomyia Saether & Wang, 1993, larva. A, head capsule, ventral view; B, dorsal surface of head; C, antenna; D, labrum; E, mandible; F, mentum, ventral view; G, ventromentum, detail, indicating variation of lateral teeth; H, ribbed lobe. Scale bars = 50 µm (A, B); 25 µm (C–H).
Fig. 2 in Brachyradia, A New Genus Of The Tribe Exechiini (Diptera: Mycetophilidae) From The Oriental And Australasian Regions
Fig. 2. Morphology of adult Brachyradia, new genus. Photos (A–F) and illustrations (G–H) of cleared and slide-mounted parts. (A) Head of B. asiatica, new species, in dorsal view with antennae removed; (B) ditto with whole antennae and palps; (C) head of B. australis, new species, in lateral view; (D) palp segment III–IV of B. australis, new species, enlarged in dorsal view; (E) palp segment III–V of B. australis, new species, enlarged in lateral view; (F) antennae of B. australis, new species, enlarged in lateral view; (G) internal organs of male terminalia of B. asiatica, new species, lateral view with gonostyles removed; (H) internal organs of male terminalia of B. australis, new species, caudal view with gonostyles removed. Abbreviations: aed gd = aedeagal guide; aed = aedeagal apparatus; cerc = cercus; clyp = clypeus; epi = epiproct; fc = face; flag = flagellum; fr fur = frontal furrow; fr tub = frontal tubercle; gc ap = gonocoxal apodeme; gc II = section II of gonocoxite; gc III = section III of gonocoxite; hyp pr = hypoproct; hyp lb = hypandrial lobe; l oc = lateral ocellus; par = paramere; par ap = parameral apodeme; sens pit = sensory pit; tg IX = tergite IX; vrt = vertex.
Fig. 1 in Brachyradia, A New Genus Of The Tribe Exechiini (Diptera: Mycetophilidae) From The Oriental And Australasian Regions
Fig. 1. Morphology of adult Brachyradia, new genus. Photos of whole (moderately bleached) specimens in alcohol (A, B) and cleared and slide-mounted parts (C–F). (A) Habitus of B. asiatica, new species; (B) habitus of B. australis, new species; (C) thorax with coxae of B. australis, new species, enlarged in lateral view. The shape of anepisternum and propleurites is enhanced. (D) Wing of male B. asiatica, new species; (E) wing of large female B. australis, new species; (F) wing of small male B. australis, new species. Abbreviations: A1 = anterior anal vein; A2 = posterior anal vein; anepist = anepisternum; aprnt = antepronotum; C = costa; CuA1 and CuA2 = anterior branch of cubitus; CuP = posterior branch of cubitus; cx 1 = forecoxa; cx 2 = midcoxa; cx 3 = hindcoxa; dmp = distal median plate; h = humeral; hlt = halter; ltg = laterotergite; M-pet = petiole of media; M1 and M2 = branches of media; mtg = mediotergite; mtepst = metepisternum; proepist = proepisternum; R1 = anterior branch of radius; R4+5 = posterior branch of radius; Rs = radial sector; sc = subcosta; sctl = scutellum; ta = anterior transversal (= crossvein rm); tb = basal transversal.
Fig. 4 in Brachyradia, A New Genus Of The Tribe Exechiini (Diptera: Mycetophilidae) From The Oriental And Australasian Regions
Fig. 4. Terminalia of Brachyradia australis, new species: (A) male terminalia in ventral view; (B) gonostylus in internal view; (C) tergite IX, proctiger and cerci in dorsal view; (D) female terminalia in lateral view. Scale bar = 0.1 mm.
Fig. 3 in Brachyradia, A New Genus Of The Tribe Exechiini (Diptera: Mycetophilidae) From The Oriental And Australasian Regions
Fig. 3. Terminalia of Brachyradia asiatica, new species: (A) male terminalia in ventral view; (B) gonostylus in internal view; (C) tergite IX, proctiger and cerci in dorsal view; (D) female terminalia in lateral view. Scale bar = 0.1 mm. Abbreviations: d br = dorsal branch of gonostylus; di br = dorsointernal branch of gonostylus; hyp lb = hypandrial lobe; i br = internal branch of gonostylus; m br = medial branch of gonostylus; v br = ventral branch of gonostylus.
Fig. 12 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 12. Female genitalia of Pseudoloxops imperatorius (A, B, specimen from Okinawa, Japan) and P. pardellus (C, D), named on images.
Fig. 9 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 9. Habitus images of Pseudoloxops species, dried specimens (except for F & I in live). A, P. hibiscus, holotype male; B, P. hibiscus, female; C, P. lateralis, male (SERS); D, P. lateralis, female (SERS); E, P. leopardalis, holotype male; F, G, P. pardellus, male; H, P. pardellus, female; I, P. imperatorius (Nagasaki, Japan); J, P. imperatorius, holotype female from Sri Lanka (BMNH); K, P. lateralis, holotype female from Taiwan (HNHM). Image (K) courtesy of NMNS.
Fig. 7 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 7. Habitus images of Thai Pseudoloxops species. A, P. hibiscus, holotype male; B, P. hibiscus, female; C, P. lateralis, male; D, P. lateralis, female; E, P. leopardalis, holotype male.
Fig. 3 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 3. Female genitalia of Cyrtorhinus species. A, B, Cyrtorhinus lividipennis; C, D, C. indochinanus. Scale bars = 0.2 mm.
Fig. 5 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 5. Male (A–C) and female (D–F) genitalia of Melanotrichus thaimaritimus. A, Pygophore with parameres, dorsal view; B, Pygophore with parameres, caudal view; C, Pygophore with parameres, ventral view; D, bursa copulatrix, dorsal view; E, posterior wall, anterior view; F, bursae and valvulae in ventral view. Scale bars = 0.2 mm.
Fig. 2 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 2. Male genitalia of Cyrtorhinus species. A–C, Cyrtorhinus lividipennis; D–G, C. indochinanus. A, D, Pygophore, dorsal view; E, Pygophore, ventral view; B, F, right paramere; C, G, left paramere. Scale bars = 0.2 mm.
Fig. 11 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 11. Male genitalia of Pseudoloxops pardellus. A, Pygophore, dorsal view; B, Pygophore, ventral view; C, left paramere; D, right paramere; E, pygophoral process; F, aedeagus.
Fig. 6 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 6. Habitus images of Thai orthotylines, dried specimens (except for E in live). A, Cyrtorhinus indochinanus, holotype male, ventral view; B, Cyrtorhinus indochinanus, female; C, C. lividipennis, male (Nakhon Nayok); D, C. lividipennis, female (SERS); E, F, M. thaimaritimus, male (Samut Prakan); G, M. thaimaritimus, ventral view; H, M. thaimaritimus, female (Samut Prakan).
Fig. 10 in Plant bugs of the tribe Orthotylini (Heteroptera: Miridae: Orthotylinae) in Thailand, with descriptions of five new species
Fig. 10. Male genitalia of Pseudoloxops hibiscus (A–D), P. lateralis (E–F) and P. leopardalis (G–J). A, G, Apex of pygophore, ventral view; F, Apex of pygophore, dorsal view; B, H, pygophore, dorsal view; C, J, right paramere; D, E, I, left paramere. Scale bars = 0.2 mm.
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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.