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Figure 11 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 11. Mouthparts and thoracic structures of Exophthalmus quadrivittatus. (A) Right maxilla, ventral view; (B) labial prementum, ventral view; (C) metendosternite, posterior view; (D) right wing.
Figure 10 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 10. Habitus of Exophthalmus quadrivittatus, female; (A) dorsal view; (B) lateral view; (C) ventral view; (D) head, dorsal view; (E) head, lateral view; (F) metatibia, lateral view.
Figure 2 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 2. Terminalia of Compsus argyreus. (A) Aedeagus, ventral and lateral view; (B) speculum gastrale, ventral view; (C) posterior region of female sternum VIII, ventral view; (D) spermatheca. Note: Shaded areas of the median lobe indicate characteristic membranous or lightly sclerotized regions.
Figure 5 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 5. Mouthparts and thoracic structures of Diaprepes abbreviates. (A) Right maxilla, ventral view; (B) labial prementum, ventral view; (C) metendosternite, posterior view; (D) right wing.
Figure 8 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 8. Habitus of Eustylus puber, male. (A) Dorsal view; (B) lateral view; (C) ventral view; (D) head, dorsal view; (E) head, lateral view; (F) metatibia, lateral view.
Figure 9 in Redescriptions of critical type species in the Eustylini Lacordaire (Coleoptera: Curculionidae: Entiminae)
Figure 9. Terminalia of Eustylus puber. (A) Aedeagus, ventral and lateral view; (B) spiculum gastrale, ventral view; (C) posterior region of female sternum VIII, ventral view; (D) spermatheca.
Figure 6 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 6. Scopaegorgia liouvillei comb. nov., holotype (MNHN Oct.0000–0233): (A) body scales; (B) coenenchymal scales.
Figure 5 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 5. Scopaegorgia liouvillei comb. nov., holotype (MNHN Oct.0000–0233): (A) opercular scales; (B) marginal scales.
Figure 4 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 4. Scopaegorgia liouvillei comb. nov., holotype (MNHN Oct.0000–0233). Whorl on abaxial view, stereo pair.
Figure 8 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 8. Fannyella abies, holotype (B970): (A) whorl of polyps, stereo pair; (B) whorl on oral view, stereo pair; (C) polyp on outer-lateral view; (D) polyp on adaxial view.
Figure 11 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 11. Bottlebrush colony shape variability in Fannyella abies: (A) CRO-0049, preserved material; (B) MNA 2463, living material; (C) CRO-0048, living material.
Figure 7 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 7. Fannyella abies, holotype (B970): (A) detail of a brachlet; (B) whole colony. Photo: Åse Wilhelmsen NHM, Oslo.
Figure 1 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 1. Distribution of Primnoid species examined in this paper: circle, Scopaegorgia liouvillei comb. nov.; square, Fannyella abies. Empty symbols represent the respective holotypes.
Figure 2 in Designation of Thouarella abies Broch, 1965 as the type species of the subgenus Fannyella (Scyphogorgia) Cairns and Bayer, 2009, and description of a new genus for Stenella (Dasystenella) liouvillei Gravier, 1913 (Octocorallia: Primnoidae)
Figure 2. Scopaegorgia liouvillei comb. nov., holotype (MNHN Oct.0000–0233): (A) whole colony; (B) detail of a whorl. Photo: Aude Andouche, MNHN, Paris.
Figure 2. Microporella arctica Norman, 1903 in Arctic species of the cheilostome bryozoan Microporella, with a redescription of the type species
Figure 2. Microporella arctica Norman, 1903, Vadsö, Norway, lectotype, NHM 11.10.1.1244, bleached apart from I. (A) Group of zooids with complete and incomplete ovicells; (B) autozooid and avicularium; (C) ovicellate zooids; (D) growing edge; (E) oblique view of growing edge showing pore chamber windows; (F) ascopore; (G) orifice with condyles present in each proximolateral corner; (H) avicularium; (I) avicularian mandible. Scale bars: 200 mm (A); 20 mm (B, G); 100 mm (C, D, E); 10 mm (F, H); 30 mm (I).
Figure 1 in Arctic species of the cheilostome bryozoan Microporella, with a redescription of the type species
Figure 1. Microporella ciliata (Pallas, 1766), Bay of Naples, bleached. (A) Group of zooids, some ovicellate; (B) autozooid and avicularium; (C) ovicellate autozooid; (D) colony margin showing pore chamber windows; (E) ancestrula and early zooids; (F) ancestrula with closure plate; (G) tilted orifice with one oral spine base, condyles and small hinge teeth; (H) avicularium; (I) ascopore. (A, B, C, E, G, H, I), neotype, NHM 2008.02.06.1; (D, F), NHM 2008.02.06.3. Scale bars: 200 mm (A); 30 mm (B); 100 mm (C, D, E, F); 20 mm (G, H); 10 mm (I).
Figure 3 in Arctic species of the cheilostome bryozoan Microporella, with a redescription of the type species
Figure 3. Microporella klugei sp. nov., Isfjorden, West Spitsbergen, bleached apart from J. (A) Group of zooids, some ovicellate; (B) ancestrula and surrounding zooids; (C) ovicellate zooid; (D) growing edge showing pore chamber windows; (E) autozooid; (F) avicularium; (G) orifice; (H) ascopore in early astogeny; (I) ascopore in later astogeny; (J) avicularium with mandible. (A, B, C, D, E, I), holotype, NHM 2008.02.06.12; (F), paratype, NHM 2008.02.06.13; (G, H), paratype, NHM 2008.02.06.14; (J), paratype, NHM 2008.02.06.15. Scale bars: 200 mm (A, B); 100 mm (C, D, E, J); 20 mm (F, G); 10 mm (H, I).
FIGURE 4 in Ctenomys brasiliensis Blainville (Rodentia: Ctenomyidae): clarifying the geographic placement of the type species of the genus Ctenomys
FIGURE 4. Phenogram of Mahalanobis distances using Neighbor-joining with skull shape data from three pooled views of the skull.
FIGURE 2 in Ctenomys brasiliensis Blainville (Rodentia: Ctenomyidae): clarifying the geographic placement of the type species of the genus Ctenomys
FIGURE 2. Type specimen of Ctenomys brasiliensis (MNHN-Paris No1988-271) with skin, skull, and mandible.
FIGURE 3 in Ctenomys brasiliensis Blainville (Rodentia: Ctenomyidae): clarifying the geographic placement of the type species of the genus Ctenomys
FIGURE 3. Morphological landmarks of a Ctenomys skull on dorsal (a), ventral (b), and lateral (c) views of the cranium.
ScienceDex guides
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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.