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Figure 34 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 34. Anterior view of the computed tomography reconstructions of the left cranial ribs of extant lungfishes, anterior to the left: A, Lepidosiren paradoxa, CAS 61327; B, Protopterus annectens, TMM M 1129; C, Protopterus dolloi, AMNH 246385; D, Protopterus aethiopicus, UF 137272; E, Protopterus amphibius, CAS 47408; F, Neoceratodus forsteri, AMS I-40438-001. Scale bar: 5 mm.
Figure 10 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 10. Left supraorbital of Protopterus annectens, AMNH 22455: A, dorsal view; B, ventral view; C, lateral view. Anterior is to the left. Scale bar: 5 mm. Sdp, descending process of the supraorbital; Slp, lateral process of the supraorbital.
Figure 8 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 8. Dermal ethmoid of Protopterus annectens, TMM M 2494: A, dorsal view; B, lateral. Anterior is to the left. Scale bar: 5 mm.
Figure 7 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 7. Computed tomography reconstruction of the skull of Neoceratodus forsteri, AMS I-40438-001: A, lateral view; B, dorsal view. Scale bar: 10 mm. DE, dermal ethmoid; DS, dermosphenotic; EO, exoccipital; FP, frontoparietal; PS, parasphenoid; PT, pterygoid; PTTa, anterior ridge of pterygoid tooth plate; PTTb, middle ridge of pterygoid tooth plate; PTTc, posterior ridge of pterygoid tooth plate; S, supraorbital; SP, splenialpostsplenial; SQ, squamosal; V, vomerine tooth.
Figure 6 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 6. Computed tomography reconstruction of the skull of Lepidosiren paradoxa, CAS 61327: A, lateral view; B, dorsal view. Scale bar: 10 mm. DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; PS, parasphenoid; PT, pterygoid; PTTa, anterior ridge of pterygoid tooth plate; PTTb, middle ridge of pterygoid tooth plate; PTTc, posterior ridge of pterygoid tooth plate; S, supraorbital; SQ, squamosal; V, vomerine tooth.
Figure 5 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 5. Computed tomography reconstruction of the skull of Protopterus dolloi, AMNH 246385: A, lateral view; B, dorsal view. Scale bar: 10 mm. DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; PS, parasphenoid; PT, pterygoid; PTTa, anterior ridge of pterygoid tooth plate; PTTb, middle ridge of pterygoid tooth plate; PTTc, posterior ridge of pterygoid tooth plate; S, supraorbital; SQ, squamosal; V, vomerine tooth.
Figure 2 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 2. Computed tomography reconstruction of the skull of Protopterus annectens, TMM M 1129: A, lateral view; B, dorsal view. Scale bar: 10 mm. A, angular; AC, anocleithrum; C, cartilage; CH, ceratohyal; CL, cleithrum; CLA, clavicle; CR, cranial rib; DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; OP, operculum; PR, prearticular; PS, parasphenoid; PT, pterygoid; S, supraorbital; SO, suboperculum; SQ, squamosal; V, vomerine tooth; VE, vertebra.
Figure 4 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 4. Computed tomography reconstruction of the skull of Protopterus amphibius, CAS 47408: A, lateral view; B, dorsal view. Scale bar: 10 mm. DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; PS, parasphenoid; PT, pterygoid; PTTa, anterior ridge of pterygoid tooth plate; PTTb, middle ridge of pterygoid tooth plate; PTTc, posterior ridge of pterygoid tooth plate; S, supraorbital; SQ, squamosal; V, vomerine tooth.
Figure 1 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 1. The articulated skull of Protopterus annectens, AMNH 55226: A, lateral view; B, dorsal view; C, ventral view. Anterior is to the left. Scale bar: 1 cm. DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; PS, parasphenoid; PT, pterygoid; PTTa, anterior ridge of pterygoid tooth plate; PTTb, middle ridge of pterygoid tooth plate; PTTc, posterior ridge of pterygoid tooth plate; S, supraorbital; SQ, squamosal; V, vomerine tooth.
Figure 3 in The comparative osteology and phylogenetic relationships of African and South American lungfishes (Sarcopterygii: Dipnoi)
Figure 3. Computed tomography reconstruction of the skull of Protopterus aethiopicus, UF 137272: A, lateral view; B, dorsal view. Scale bar: 10 mm. A, angular; AC, anocleithrum; C, cartilage; CH, ceratohyal; CL, cleithrum; CLA, clavicle; CR, cranial rib; DE, dermal ethmoid; EO, exoccipital; FP, frontoparietal; OP, operculum; PR, prearticular; PS, parasphenoid; PT, pterygoid; S, supraorbital; SO, suboperculum; SQ, squamosal; V, vomerine tooth; VE, vertebra.
Figs. 9–12 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Figs. 9–12. Bunites distigma (first-instar larva). 9–10) Labium, dorsal and ventral aspects, respectively; 11) Anterior margin of prementum, dorsal aspect; 12) Apex of second labial palpomere, ventral aspect. LA ¼ labium. Numbers and lowercase letters refer to primary setae and pores, respectively. Solid squares refer to additional setae. Scale bar ¼ 0.20 mm for Figs. 9–10.
Fig. 19 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Fig. 19. Strict consensus cladogram obtained from four most parsimonious topologies of 10 terminal taxa of first-instar larvae of Colymbetini, with character changes mapped for each clade. Jackknife values indicated inside the boxes. * ¼ homoplastic character state transformation, ― ¼ reversal to the plesiomorphic condition.
Figs. 16–18 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Figs. 16–18. Bunites distigma (first-instar larva). 16–17) Eighth abdominal segment, dorsal and ventral aspects, respectively; 18) Urogomphus, dorsal aspect. AB ¼ eighth abdominal segment, UR ¼ urogomphus. Numbers and lowercase letters refer to primary setae and pores, respectively. Additional setae and pores not labeled. Scale bars ¼ 0.20 mm.
Figs. 1–3 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Figs. 1–3. Bunites distigma (first-instar larva). 1) Habitus, dorsal aspect; 2–3) Cephalic capsule, dorsal and ventral aspects, respectively. FR ¼ frontoclypeus, PA ¼ parietal. Numbers and lowercase letters refer to primary setae and pores, respectively. Additional setae not labeled. Scale bar ¼ 1.00 mm for Fig. 1 and 0.30 mm for Figs. 2–3.
Figs. 13–15 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Figs. 13–15. Bunites distigma (first-instar larva). 13–14) Metathoracic leg, anterior and posterior aspects, respectively; 15) Distal portion of metatarsus, anterior aspect. CO ¼ coxa, FE ¼ femur, PT ¼ pretarsus, TA ¼ tarsus, TI ¼ tibia, TR ¼ trochanter. Numbers and lowercase letters refer to primary setae and pores, respectively. Solid squares refer to additional setae. Scale bar ¼ 0.20 mm for Figs. 13–14.
Figs. 4–8 in Larval Morphology and Phylogenetic Relationships of Bunites distigma (Brullé) (Coleoptera: Dytiscidae: Colymbetinae: Colymbetini)
Figs. 4–8. Bunites distigma (first-instar larva). 4–5) Antenna, dorsal and ventral aspects, respectively; 6) Mandible, dorsal aspect; 7–8) Maxilla, dorsal and ventral aspects, respectively. AN ¼ antenna, MN ¼ mandible, MX ¼ maxilla. Numbers and lowercase letters refer to primary setae and pores, respectively. Solid squares and solid triangles refer to additional setae and pores, respectively. Scale bars ¼ 0.20 mm.
Figures 25–30 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 25–30. Crematogaster workers, showing lateral view of body (A), full-face view of head (B) and dorsal view of body (C). 25, C. opuntiae (CASENT0922738); 26, C. marioni (CASENT0922734); 27, C. coarctata (CASENT0005667); 28, C. hespera holotype (USNMENT00529501); 29, C. browni (CASENT0922722); 30, C. emeryana (CASENT0922729). Images courtesy of AntWeb (www.antweb.org); photographers Wade Lee (25, 26, 29, 30), April Nobile (27), Michele Esposito (28).
Figures 31–36 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 31–36. Crematogaster workers, showing lateral view of body (A), full-face view of head (B) and dorsal view of body (C). 31, C. cerasi lectotype (USNMENT00529078); 32, C. vermiculata (CASENT0914534); 33, C. rifelna holotype (LACMENT164556); 34, C. ashmeadi (CASENT0922720); 35, C. pinicola (CASENT0172943); 36, C. pilosa (CASENT0914530). Images courtesy of AntWeb (www.antweb.org); photographers Michele Esposito (31, 33), Zach (Ziv) Lieberman (32, 36), Wade Lee (34), April Nobile (35).
Figures 3–12. Crematogaster worker features useful for identification. 3 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 3–12. Crematogaster worker features useful for identification. 3, petiole shape, dorsal view, C. lineolata (CASENT0863235) (3A) and C. torosa (CASENT0795540) (3B); 4, sculpture on declivitous face of propodeum, C. dentinodis (CASENT0863070) (4A) and C. depilis (CASENT0863478) (4B); 5, mesosomal pilosity, C. punctulata (CASENT0863277) (5A) and C. emeryana (CASENT0863099) (5B); 6, position and shape of propodeal spines, dorsal view, C. isolata (CASENT0863072) (6A) and C. pinicola (CASENT0882129) (6B); 7, petiole shape, dorsal view, C. mutans (CASENT0862488); 8, subpetiolar tooth, lateral view, C. mutans (CASENT0862488); 9, promesonotal sculpture, C. californica (CASENT0221085) (9A) and C. coarctata (CASENT0221962) (9B); 10, postpetiolar seta, C. browni (CASENT0863144) (10A) and C. cerasi (CASENT0795541) (10B); 11, cephalic pilosity, C. torosa (CASENT0795540) (11A) and C. missouriensis (CASENT0221041) (11B); 12, mesosomal profile, C. crinosa (CASENT0795543) (12A) and C. torosa (CASENT0863226) (12B).
Figures 40–47 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 40–47. Bivariate plots of selected worker measurements in the Crematogaster scutellaris group. 40, PP-SL (postpetiole seta length) by HW (head width) in C. browni (N = 16) and C. cerasi (N = 17); 41, ED (eye diameter) by MtFL (metafemur length) in C. californica (N = 22) and C. coarctata (N = 21); 42, MtFL (metafemur length) by HW (head width) in C. californica (N = 22), C. colei (N = 12) and C. opuntiae (N = 10); 43, MtFL (metafemur length) by HW (head width) in C. depilis (N = 15), C. detecta (N = 11) and C. larreae (N = 5); 44, MtTL (metatibia length) by HW (head width) in C. depilis (N = 15), C. detecta (N = 11) and C. larreae (N = 5); 45, SPL (propodeal spine length) by HW (head width) in workers of C. hespera (N = 18), C. laeviuscula (N = 25) and C. parapilosa (N = 15); 46, SL (scape length) by HW (head width) in C. emeryana (N = 12) and C. marioni (N = 18); 47, SPTD (propodeal spine tip distance) by HW (head width) in C. lineolata (N = 26) and C. punctulata (N = 15).
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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.