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FIGURE 5 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 5. Hind leg of Glypta, anterior aspect, lateral view. ― A, G. ichitai sp. nov.; B, G. kamijoi Momoi; C, G. karasawensis sp. nov.; D, G. nipponica sp. nov.; E, G. shigaensis sp. nov.; F, G. s u w a i sp. nov.; G, G. touyaensis sp. nov.; H, G. tumor Momoi; I, G. zenibakoensis sp. nov.
FIGURE 6. T1 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 6. T1 of Glypta, dorsal view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. d a i se t su z a n a sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
FIGURE 3 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 3. Frontal horn (left) and base of antenna (right) of Glypta, dorsal (horn) and lateral (antenna) view. ― A, G. chinensis (Uchida); B, G. cognata sp. nov.; C, G. cymolomiae Uchida; D, G. daisetsuzana sp. nov.; E, G. densepunctata sp. nov.; F, G. extincta Ratzeberg; G. G. flavitarsus sp. nov.; H, G. ichitai sp. nov.; I, G. kamijoi Momoi; J, G. karasawensis sp. nov.; K, G. nipponica sp. nov.; L, G. shigaensis sp. nov.; M, G. suwai sp. nov.; N, G. touyaensis sp. nov.; O, G. tumor Momoi; P, G. zenibakoensis sp. nov.
FIGURE 12 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 12. Distribution of Glypta extincta Ratzeberg, G. flavitarsus sp. nov., G. ichitai sp. nov. and G. kamijoi Momoi.
FIGURE 2 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 2. Head of Glypta, lateral view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
FIGURE 4 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 4. Hind leg of Glypta, anterior aspect, lateral view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.
FIGURE 1 in Taxonomic status of the subgenus Conoblasta Förster 1869 of the genus Glypta Gravenhorst 1829 with revision of Japanese species (Hymenoptera, Ichneumonidae, Banchinae)
FIGURE 1. Head of Glypta, dorsal view. ― A, G. biauriculata Kuslitzky; B, G. chinensis (Uchida); C, G. cognata sp. nov.; D, G. cymolomiae Uchida; E, G. daisetsuzana sp. nov.; F, G. densepunctata sp. nov.; G, G. extincta Ratzeberg; H. G. flavitarsus sp. nov.; I, G. ichitai sp. nov.; J, G. kamijoi Momoi; K, G. karasawensis sp. nov.; L, G. nipponica sp. nov.; M, G. shigaensis sp. nov.; N, G. suwai sp. nov.; O, G. touyaensis sp. nov.; P, G. tumor Momoi; Q, G. zenibakoensis sp. nov.
FIGURE 9 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 9. Lateral (A), dorsal (B), and ventral (D) views of the snout and detailed dorsolateral view of anterior region of skull (C) of Hydrodynastes bicinctus (MNRJ 4767). Frontal = F; nasal = N; prefrontal = PF; vomer = V; septomaxilla = SM; premaxilla = PM; palatine = PAL; maxilla = MX; parietal = P; postorbital = PO; ectopterygoid = ECT. Scale = 2.5 mm.
FIGURE 7 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 7. Cephalic glands of Hydrodynastes bicinctus (MNRJ 4769). Lateral view after removing the skin (A), lateral view after removing the orbit, Duvernoy's gland and adductor externus medius (aem), adductor externus superficialis (aes), and levator anguli oris (lao) muscles (B), and ventral view exposing infralabial and sublingual glands (C). Duvernoy's gland = D.g; supralabial gland = s.g.; nasal gland = n.g; premaxillary gland = p.g; Harderian gland = H.g.; lateral sublingual gland = l.s.g.; medial sublingual gland = m.s.g.; infralabial gland = i.g. Scale = 5 mm.
FIGURE 8 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 8. Dorsal (A), lateral (B), and ventral views (C) of the skull of Hydrodynastes bicinctus (MNRJ 4767). Premaxilla = PM; septomaxilla = SM; nasals = N; frontals = F; parietals = P; supratemporal = ST; exoccipital = EXO; supraoccipital = S; maxilla = MX; prefrontal = PF; postorbital = PO; prootic = PR; quadrate = Q; vomer = V; palatine = PAL; ectopterygoid = ECT; parabasisphenoid = PBS; pterygoid = PT; basioccipital = BO. Scale = 5 mm.
FIGURE 10 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 10. Lateral view of posterior region of the skull (MNRJ 4769 - A), detail of dorsal view of ectopterygoid (MNRJ 4767 – B), dorsal (C) and ventral (D) views of pterygoid and ectopterygoid (MNRJ 4769), medial (E), and lateral (F) views of quadrate (MNRJ 4769), and medial (G) and lateral (H) views of mandible of Hydrodynastes bicinctus (MNRJ 4767). Supratemporal = ST; prootic = PR; anterior foramen of prootic = f.a. PR; posterior foramen of prootic = f.p. PR; fenestra ovalis = fe.o.; Maxilla = MX; ectopterygoid = ECT; pterygoid = PT; quadrate = Q; compound bone = CB; articular = A; splenial = SP; dentary = D. Scale = 2.5 mm.
FIGURE 5 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 5. Dorsal color pattern of a juvenile of Hydrodynastes bicinctus (MZUSP 16976). Scale = 10 mm.
FIGURE 4 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 4. Dorsal (A), ventral (B), and lateral (C) views of body and dorsal (D), ventral (E), and lateral (F) views of head of the neotype of Hydrodynastes bicinctus (MPEG 24628) from municipality of Novo Progresso, state of Pará, Brazil. Scale = 10 mm.
FIGURE 6 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 6. Asulcate (A) and sulcate (B) views of the entirely expanded and completely filled hemipenis of Hydrodynastes bicinctus (MNRJ 4770). Scale = 5 mm.
FIGURE 3 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 3. Color in life of Hydrodynastes bicinctus: juvenile (A) from Juruena National Park, state of Mato Grosso, and adult (B) from municipality of Peixes, state of Tocantins, both in Brazil. Photos by P.S. Bernarde (A) and P.H. Bernardo (B).
FIGURE 2 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 2. Geographic distribution of Hydrodynastes bicinctus. Squares represent data from the literature and circles material examined.
FIGURE 1 in Taxonomic status and morphological variation of Hydrodynastes bicinctus (Hermann, 1804) (Serpentes: Dipsadidae)
FIGURE 1. Color pattern variables observed in Hydrodynastes bicinctus. Lateral view of head, showing shape of the postocular stripe—continuous "C" shaped directed to gular region (A), and as small black postocular dot not connected to "C" shaped stripe directed to gular region (B). Lateral view of the body, showing degree of definition of lateral blotches positioned between dorsal blotches on the paraventral region—conspicuous (C), and inconspicuous (D). Ventral view of body showing color pattern—checkered pattern (E) or with a set of dots reaching the lateral portion of the body (F).
FIGURE 3 in The nomenclatural and taxonomic status of Pomatoleios kraussii var. manilensis Pillai, 1965
FIGURE 3. Spirobranchus manilensis sp. nov. holotype (NHM1965.33.34). A—Complete holotype; B—Peduncle of holotype; C—Top view of opercular endplate of holotype, showing deep concavity. Scale bars—A: 2 mm, B: 1 mm, C: 0.5 mm.
FIGURE 1 in The nomenclatural and taxonomic status of Pomatoleios kraussii var. manilensis Pillai, 1965
FIGURE 1. Tube morphology of Spirobranchus manilensis sp. nov. paratypes. A, B—Top view of tubes of paratypes NHM1965.33.40 (A) and NHM1965.33.39 (B); C, D—Sub-trapezoidal cross-sections of tubes of paratypes NHM1965.33.39 (C) and NHM1965.33.43 (D). Scale bars—A–B: 2 mm, C–D: 1 mm.
FIGURE 2 in The nomenclatural and taxonomic status of Pomatoleios kraussii var. manilensis Pillai, 1965
FIGURE 2. Opercular endplate in paratypes of Spirobranchus manilensis sp. nov.. A, B—Opercular endplate with deeper and broader area of concavity. This structure was observed in majority of S. manilensis sp. nov. specimens, including NHM1965.33.41 (A) and NHM1965.33.42 (B); C—Side view of operculum of anomalous specimen in type series (NHM1965.33.38), showing slight protrusion of endplate (red arrow); D—Top view of opercular endplate of specimen in C, faintly showing concentric ovoid markings. Scale bars—A–C: 1 mm, D: 0.5 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.