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28 results for “yellow body”
Water Body Checklists 2019: Yellow Sea Species List
Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Yellow Sea using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.
Water Body Checklists: Yellow Sea Species List
Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Yellow Sea using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.
- Fore wing with areolet open (a); body and wings colorations variable but usually wings hyaline and body yellow interspersed with black markings (b) …………………………………2 (Epirhyssa) 2. Face smooth to sparsely punctate (A-B), without transverse rugosities ……………………………3 - Face transversely rugulose punctate or transversely striate (a-b) ……………………………………5 in A review of the Afrotropical Rhyssinae (Hymenoptera: Ichneumonidae) with the descriptions of five new species
- Fore wing with areolet open (a); body and wings colorations variable but usually wings hyaline and body yellow interspersed with black markings (b) …………………………………2 (Epirhyssa) 2. Face smooth to sparsely punctate (A-B), without transverse rugosities ……………………………3 - Face transversely rugulose punctate or transversely striate (a-b) ……………………………………5
Figure 1 in Mammals under a colony of great cormorants: population structure and body condition of yellow-necked mice
Figure 1. Location of Zones A–E in the colony of great cormorants near Juodkrantė, West Lithuania, 2011–2013.
Data from: Modulation of yaw stability with an unstable rigid body and a stabilising caudal fin in the yellow boxfish (Ostracion cubicus)
<p>Despite that boxfishes have a rigid carapace that restricts body undulation, they are highly manoeuvrable and manage to swim with remarkably dynamic stability. Recent research has indicated that the rigid body shape of boxfishes shows an inherently unstable response in its rotations caused by course-disturbing flows. Hence, any net stabilising effect should come from the fish's fins. The aim of the current study was to determine the effect of the surface area and orientation of the caudal fin on the yaw torque exerted on the yellow boxfish, <i>Ostracion cubicus</i>, a square cross-sectional shaped species of boxfish. Yaw torques quantified in a flow tank using a physical model with an attachable closed or open caudal fin at different body and tail angles and at different water flow speeds showed that the caudal fin is crucial for controlling yaw. These flow tank results were confirmed by computational fluid dynamics simulations. The caudal fin therefore acts as both a stabiliser and rudder for the naturally unstable rigid body with regard to yaw. Boxfishes seem to use the interaction of the unstable body and active changes in the shape and orientation of the caudal fin to modulate manoeuvrability and stability.</p>
Data from: Modulation of yaw stability with an unstable rigid body and a stabilising caudal fin in the yellow boxfish (Ostracion cubicus)
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FIGURE 13 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 13. Timia (Empyelocera) orientalis Zaitzev, male; a—habitus, lateral view, b—head and thorax, dorsal view; chead, lateral view; d—head, anterior view; e—wing.
FIGURE 14 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 14. Timia (Empyelocera) orientalis Zaitzev, male and female genitalia; a—epandrium, posterior view, b—phallus; c—aculeus, compressed on slide; d—spermatheca.
FIGURE 12 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 12. Timia (Empyelocera) gobica Zaitzev, male and female genitalia; a—epandrium, posterior view, b—phallus; caculeus, compressed on slide; d—spermatheca.
FIGURE 10 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 10. Timia (Empyelocera) flaveola Galinskaya sp. nov., female genitalia; a—aculeus, compressed on slide; b—spermatheca.
FIGURE 9 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 9. Timia (Empyelocera) flaveola Galinskaya sp. nov., female; a—habitus, lateral view, b—head and thorax, dorsal view; c—head, lateral view; d—head, anterior view; e—wing.
FIGURE 8 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 8. Timia (Empyelocera) dimidiata Becker, male and female genitalia; a—epandrium, posterior view, b—phallus; caculeus, compressed on slide; d—spermathecae.
FIGURE 5 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 5. Timia (Empyelocera) canaliculata Becker, male; a—habitus, lateral view, b—head and thorax, dorsal view; chead, lateral view; d—head, anterior view; e—wing.
FIGURE 6 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 6. Timia (Empyelocera) canaliculata Becker, male and female genitalia; a—epandrium, posterior view, b—phallus; c—aculeus, compressed on slide; d—spermathecae.
FIGURE 7 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 7. Timia (Empyelocera) dimidiata Becker, female; a—habitus, lateral view, b—head and thorax, dorsal view; chead, lateral view; d—head, anterior view; e—wing.
FIGURE 4 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 4. Timia zaitzevi Galinskaya sp. nov., male and female genitalia; a—epandrium, posterior view, b—phallus; caculeus, compressed on slide; d—spermatheca.
FIGURE 11 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 11. Timia (Empyelocera) gobica Zaitzev, male; a—habitus, lateral view, b—head and thorax, dorsal view; c—head, lateral view; d—head, anterior view; e—wing.
FIGURE 3 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 3. Timia zaitzevi Galinskaya sp. nov., male; a—habitus, lateral view, b—head and thorax, dorsal view; c—head, lateral view; d—head, anterior view; e—wing.
FIGURE 2 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 2. Timia testacea Portschinsky, male and female genitalia; a—epandrium, posterior view, b—phallus; c—aculeus, compressed on slide; d—spermathecae.
FIGURE 1 in Review of the yellow-bodied species of the genus Timia (Diptera: Ulidiidae) with description of two new species
FIGURE 1. Timia testacea Portschinsky, male; a—habitus, lateral view, b—head and thorax, dorsal view; c—head, lateral view; d—head, anterior view; e—wing.
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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.