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13,397 results for “sp. nov.”
FIGURES 4–11 in Apatrobus osuzuyamanus sp. nov., a new patrobine species from Japan, with a comparative study of the male genital morphology of the tribe Patrobini (Coleoptera: Carabidae)
FIGURES 4–11. Pronotum (4–5) and male genitalia (6–11) of Apatrobus spp. 4. A. ohtsukai, holotype male; 5. A. osuzuyamanus sp. nov., holotype male; 6–7. A. ohtsukai, holotype male (6. aedeagal apex, dorsal view; 7. aedeagal apex, ventral view); 8–10. A. osuzuyamanus sp. nov, holotype male (8. aedeagus, left lateral view; 9. aedeagal apex, dorsal view; 10. aedeagal apex, ventral view); 11. A. hikosanus (aedeagal apex, ventral view). el. elytron; gp. gonoporal piece; st. sternum. Arrows with one or two asterisks indicate the differences among species (see specific section). Scales: 0.5 mm.
FIGURES 1–3 in Apatrobus osuzuyamanus sp. nov., a new patrobine species from Japan, with a comparative study of the male genital morphology of the tribe Patrobini (Coleoptera: Carabidae)
FIGURES 1–3. Habitus of Apatrobus ohtsukai (1, holotype male) and A. osuzuyamanus sp. nov. (2, holotype male; 3, paratype female). Scales: 3.0 mm.
FIGURE 2 in Breaking molds: Oswaldella laertesi, sp. nov., a unique Antarctic species of Oswaldella Stechow, 1919 (Cnidaria: Hydrozoa: Kirchenpaueriidae)
FIGURE 2. Oswaldella laertesi, sp. nov. (A) Hydrocladial branching; (B) gonotheca; (C) hydrotheca in lateral view; (D) hydrotheca in frontal view; (E) mesial inferior nematotheca (see arrow); (F) mesial superior nematophore (see arrow); (G) cauline apophyses showing "mamelons" (see arrows); (H) cauline apophysis showing axillary nematophores (see arrows) (A–F from Holoype; G–H from Paratype). Scale bars: 200 µm (A–B), 100 µm (C–H).
FIGURE 5. A bifurcating schematic separating species that show a in Description of Luciola aquatilis sp. nov., a new aquatic firefly (Coleoptera: Lampyridae: Luciolinae) from Thailand
FIGURE 5. A bifurcating schematic separating species that show a resemblance to L. aquatilis based on the related 11 species that possess linear elytral punctation.
FIGURE 3 in Description of Luciola aquatilis sp. nov., a new aquatic firefly (Coleoptera: Lampyridae: Luciolinae) from Thailand
FIGURE 3. Aedeagal sheath of L. aquatilis, distal tip oriented down, (a) dorsal, (b) ventral, (c) lateral.
FIGURE 1 in Breaking molds: Oswaldella laertesi, sp. nov., a unique Antarctic species of Oswaldella Stechow, 1919 (Cnidaria: Hydrozoa: Kirchenpaueriidae)
FIGURE 1. Oswaldella laertesi, sp. nov. (A) Hydrocladial branching and arrangement of hydrothecae and gonothecae; (B) cauline apophysis with "mamelons" and first forked hydrocladial internode; (C) forked hydrocladial internode showing branching, mesial inferior nematophore and superior nematophores; (D–H) unforked hydrocladial internodes with hydrotheca, mesial superior nematophore and mesial inferior nematotheca (all drawings from the Holotype). Scale bar: 1 mm (A), 250 µm (B–H).
FIGURE 8 in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 8. Distribution maps of T. aurantium, T. citrina, and T. norvegica compiled from various sources (Sarà, 1987; Sara & Gaino, 1987; Sarà et al., 1989; Sara, 1990; Sarà & Manara, 1991; Bavestrello et al., 1992; Sarà et al., 1992; Bavestrello & Sarà, 1994; Corriero et al., 1996; Sarà, 1998; Pansini & Longo, 2003). The occurrance of T. norvegica on the British Isles will have to be proven carefully (see text for details).
FIGURE 5 in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 5. SEM images of T. hibernica spicule morphology. A. Typical megasters. B. Acanthostrongylasters, which represent the major group of micrasters (>95%). C. Acanthotylasters (rarest group of micrasters). D. Oxyasters, which are slightly more frequent than tylasters.
FIGURE 1 in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 1. Geographic location of Rathlin Island (star in right map) within the British Isles between Northern Irleand and Mull of Kintyre (Scotland). The insert map (left) displays Rathlin Island with coordinates and the collection point of the type specimens of T. hibernica (filled circle).
FIGURE 3. A in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 3. A. Schematic overview on the skeletal arrangement in the cortex (light grey) and the choanoderm (dark grey) in a contracted specimen of T. hibernica. B. Micrograph of tissue slice preparations. Main megascleres form bundles, which fan near the surface. Auxiliary megascleres are present in-between bundles in the choanoderm. Megasters are mainly present throughout the whole cortex. Micrasters are present throughout the sponge, with a prominent layer supporting the outer and inner pinacoderm layers. The lacuna system of the ectoderm is not dominant due to the contracted state of the specimens investigated. For details on the spicules refer to Figures 4 and 5.
FIGURE 4 in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 4. Megascleres (strongyloxeas) of T. hibernica. A. SEM image collage of a main megasclere, presenting typical geometry and diameters of both ends and a middle section. B. Size distribution of auxiliary megascleres (filled triangles; n = 70) and main megascleres (filled circles, n = 40), which form distinct groups of normal distributions (Kolmogorov-Smirnov test), significantly separated by spicule length (p <0.001; independent t-test).
FIGURE 2 in Description and molecular phylogeny of Tethya hibernica sp. nov. (Porifera, Demospongiae) from Northern Ireland with remarks on the European species of the genus Te t h y a *
FIGURE 2. In vivo images of T. hibernica types from the type location at Rathlin Island. Both specimens have been used for morphological description and DNA sequencing. A. Expanded holotype (Mc3037) with open oscules (arrow heads). B. Contracted holotype (Mc3037) with closed oscules, after contraction stimulation by extensive artificial water current. C. Paratype (Mc2748), with external buds (arrow heads). Mind the colour variation from brownish to yellowish between the two specimens.
FIGURE 3 in Diphascon (Diphascon) faialense sp. nov. a new species of Tardigrada (Eutardigrada, Hypsibiidae) from the Azores and a key to the species of the D. pingue group
FIGURE 3. Bucco-pharyngeal apparatus and claws of the second or third pair of legs of: A–B, Diphascon pinguiforme; C–D, Diphascon australianum. Scale bars = 10 µm.
FIGURE 2 in Diphascon (Diphascon) faialense sp. nov. a new species of Tardigrada (Eutardigrada, Hypsibiidae) from the Azores and a key to the species of the D. pingue group
FIGURE 2. Bucco-pharyngeal apparatus and claws of the second or third pair of legs of: A–B, Diphascon pingue; C–D, Diphascon polare; E–G, Diphascon mitrense. Scale bars = 10 µm.
FIGURE 4 in Diphascon (Diphascon) faialense sp. nov. a new species of Tardigrada (Eutardigrada, Hypsibiidae) from the Azores and a key to the species of the D. pingue group
FIGURE 4. Bucco-pharyngeal apparatus and claws of the first or second or third pair of legs of: A–B, Diphascon victoriae; C–D, Diphascon dastychi; E–F, Diphascon claxtonae. Scale bars = 10 µm.
FIGURE 1 in Diphascon (Diphascon) faialense sp. nov. a new species of Tardigrada (Eutardigrada, Hypsibiidae) from the Azores and a key to the species of the D. pingue group
FIGURE 1. Diphascon faialense sp. nov., A, habitus of the holotype (scale bar = 30 µm); B. bucco-pharyngeal apparatus of the holotype (scale bar = 10 µm); C, claws of the third pair of legs of a paratype (scale bar = 10 µm).
FIGURE 2 in Mansonia (Mansonia) iguassuensis sp. nov. (Diptera: Culicidae) from Brasil
FIGURE 2. Mansonia iguassuensis sp. nov. (A) Larval head (dorsal and ventral views), (B) Larval thorax and abdomen (dorsal and ventral views), (C) Larval mental plate (dorsal view), (D) Female tergum VII, (E) Female tergum VIII, (F) Larval terga VII, VIII, X and siphon (lateral view). Scale bars in mm.
FIGURE 1 in Mansonia (Mansonia) iguassuensis sp. nov. (Diptera: Culicidae) from Brasil
FIGURE 1. Mansonia iguassuensis sp. nov. (A) Pupal metanotum and abdomen (dorsal and ventral views), (B) Pupal cephalothorax, (C) Pupal respiratory trumpet, (D) Male genitalia (dorsal and ventral views), (E) Male tergum VIII (ventral view), (F) Male gonostyle (lateral view), (G) Paramere and gonocoxal apodeme (dorsal view), (H) Male aedeagus (dorsal view). Scale bars in mm.
FIGURE 4 in Convolutriloba macropyga sp. nov., an uncommonly fecund acoel (Acoelomorpha) discovered in tropical aquaria
FIGURE 4. Convolutriloba macropyga sp. nov.; whole mount stained with Alexa-488-labeled phalloidin and viewed with confocal microscopy. A. Optical section of ventral body-wall musculature. Anterior toward upper left corner. White arrows point to longitudinal muscles, white arrowheads to radial muscles, black arrowheads to U-shaped muscles. B. Projection of ventral and lateral body-wall musculature adjacent to the mouth (in upper left corner).
FIGURE 8 in Convolutriloba macropyga sp. nov., an uncommonly fecund acoel (Acoelomorpha) discovered in tropical aquaria
FIGURE 8. Light experiments in Convolutriloba macropyga sp. nov. and the Convolutriloba genus. A. Progeny release rates of Convolutriloba macropyga sp. nov. in response to light intensity. The experiment involved 24 adult specimens each in one of three light treatments: dark, low light, and high light. Trials ran for 15 days. Results are presented as average number of asexual progeny released per individual per day. Error bars are 95% confidence intervals. B. Comparison of dark-survival of species within the genus. Twenty-four adult animals of each species (C. retrogemma, C. longifissura, C. hastifera, and C. macropyga) were subjected to total darkness to determine and compare the extent of the obligate nature of algal symbiosis between the different host species. Artemia sp. prey was provided daily in superabundance to minimize the variable of holozoic starvation. Results are presented as percent survival over time.
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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)
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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.