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Fig. 16. Camponotus simoni Emery, 1893 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 16. Camponotus simoni Emery, 1893, major worker (PUAC T123). A. Head in full face view. B. Body in profile view. C. Body in dorsal view.
Fig. 29 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 29. Head in full face view. A. Camponotus angusticollis (Jerdon, 1851).B. Camponotus angusticollis sanguinolentus Forel, 1895. Scale bars = 1 mm.
Fig. 24 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 24. Clypeus in full face view. A. Camponotus rufoglaucus (Jerdon, 1851). B. Camponotus mendax Forel, 1895. Scale bars: A = 1 mm; B = 0.5 mm.
Fig. 41 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 41. Mesosoma in dorsal view. A. Camponotus carin Forel, 1889. B. Camponotus thraso Forel, 1893. Scale bars = 1 mm.
Fig. 4 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 4. Camponotus sholensis sp. nov., paratype, minor worker (PUAC T33). A. Head in full face view. B. Body in profile view. C. Body in dorsal view.
Fig. 3 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 3. Camponotus sholensis sp. nov., holotype, major worker (PUAC T27). A. Head in full face view. B. Body in profile view. C. Body in dorsal view.
Fig. 2 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 2. Illustrations of measurements for species of Camponotus Mayr, 1861. A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view. Abbreviations: see Material and methods.
Fig. 5 in Two new species of the genus Camponotus Mayr, 1861 (Hymenoptera: Formicidae) with five new records from India
Fig. 5. Camponotus sholensis sp. nov., paratype, gyne (PUAC T 45). A. Head in full face view. B. Body in profile view. C. Body in dorsal view.
Figure 4. Sinobathynella decamera n. g. n in First record of Bathynellacea (Crustacea, Syncarida, Parabathynellidae) in China: a new genus
Figure 4. Sinobathynella decamera n. g. n. sp. (A) Th 8 male (holotype) (lateral external view); (B) Th 8 male (holotype) (caudal view); (C) Th 8 female (paratype) (frontal view); (D) pleotelson and furca (dorsal view); (E) uropod (lateral external view). Scale bar in mm.
Figure 2. Sinobathynella decamera n. g. n in First record of Bathynellacea (Crustacea, Syncarida, Parabathynellidae) in China: a new genus
Figure 2. Sinobathynella decamera n. g. n. sp., male holotype. (A) A.I (female); (B) A.II; (C) labrum; (D) mandible (ventral view); (E) maxillule (dorsal view); (F) maxilla (dorsal view). Scale bar in mm.
Figure 3. Sinobathynella decamera n. g. n in First record of Bathynellacea (Crustacea, Syncarida, Parabathynellidae) in China: a new genus
Figure 3. Sinobathynella decamera n. g. n. sp., male holotype. (A) Th 1; (B) Th 2; (C) Th 3; (D) Th 4; (E) Th 5; (F) Th 6; (G) Th 7; (H) exopod of Th 3. Scale bar in mm.
Figure 2 in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 2. Light and scanning electron micrographs of first and second antennae and labrum of Lightiella magdalenina sp. nov. A, 6-segmented first antenna. Scale bar = 70 µm. B, second antenna with 2-segmented protopod (Pr), 2-segmented endopod (En) and 19-segmented exopod (Ex). Scale bar = 80 µm. C, ventral view of labrum (Lb), which appears rounded anteriorly and acutely triangular posteriorly; second antenna (A2). Scale bar = 45 µm. D, detail of the postero-ventral surface of labrum (Lb) covered by thin setae randomly distributed (arrows). Scale bar = 3 µm. E, posterior view of cephalon separated by the remaining part of the body at the level of the second maxilla. First antenna (A1), second antenna (A2), labrum (Lb), unsegmented mandible (Md), first maxilla (M1). Scale bar = 10 µm.
Figure 1 in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 1. Scanning electron micrographs of Lightiella magdalenina sp. nov. A, ventral view of an adult showing the horseshoe shaped cephalon (Ce), 9-segmented thorax (Th) with thoracopods 1–7 (T1-7) and reduced thoracopod 9 (T9), 11- segmented abdomen (Ab), including telson (TL). Scale bar = 300 µm. B, high magnification of segments 7–9 showing: segment 7 with pleura (PL) and limb (T7); segment 8 reduced and lacking pleura and limb (arrow); segment 9 with tergum reduced to a spine (Sp) and limb highly modified (T9). Scale bar = 14 µm. C, ventral view of the last portion of the abdomen showing the ventral comb on the telson (arrow) and caudal rami (Cr). Scale bar = 90 µm. D, dorsal view of telson characterized by two spinose processes with rounded edges (arrows); ventral comb (Vc). Scale bar = 10 µm.
Figure 3 in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 3. Light and scanning electron micrographs of mandible and first maxilla of Lightiella magdalenina sp. nov. A, B, mandible with incisor process (Ip) bearing two teeth with one small seta in between (arrow) and molar process (Mp) with numerous small teeth. Scale bars: A, 35 µm; B, 2 µm. C, first maxilla with unsegmented protopodal gnathobase (Gb), 3-segmented endopod (En) and unsegmented exopod (Ex). Exopod bears 8 long plumose setae, one of which is broken (arrow). Scale bar = 10 µm. D, detail of the endopod showing the small seta on the inner corner of each segment and the two longer plumose setae of the last segment (arrow). Scale bar = 5 µm. E, F, detail of gnathobase bearing three indented spines and two plumose seta. Scale bars: E, 10 µm; F, 2 µm.
Figure 4. A, B in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 4. A, B, light micrographs of second maxilla (A) and thoracopod 5 (B) of Lightiella magdalenina sp. nov. showing the same morphological organization. Protopod (Pr) characterized by 6 enditic processes (Pe) and 1-segmented epipod (Ep) with 4 long plumose setae. 5-segmented endopod (En) and 2-segmented exopod (Ex) with a spine (S) that distinguishes the distal group of 4 long setae (arrow). Scale bars: A, 56 µm; B, 60 µm. C, high magnification of protopodal endites (Pe) armed with spines and setae. Scale bar = 25 µm. D, detail of the last two segments of endopod. Segment 4 characterized by the small seta on the inner corner (arrow) and 3 long setae on the outer corner. The last segment bears 4 claws, three of which are large and indented; the last one is small, smooth and located on the medial side of the base of the outermost claw (arrowhead). Scale bar = 15 µm.
Figures 23–34 in Chinese species of the genus Tricondyla Latreille, 1822 (Coleoptera: Cicindelidae) and a new record for the country
Figures 23–34. Aedeagus, scale = 1 mm. 23–24) Tricondyla wiesneri Naviaux, 2002. 23) Left lateral view. 24) Ventral view. 25–26) Tricondyla mellyi Chaudoir, 1850. 25) Left lateral view. 26) Ventral view. 27–28) Tricondyla pulchripes White, 1844. 27) Left lateral view. 28) Ventral view. 29–30) Tricondyla stricticeps Chaudoir, 1864. 29) Left lateral view. 30) Ventral view. 31–32) Tricondyla gestroi scabra Fleutiaux, 1920. 31) Left lateral view. 32) Ventral view. 33–34) Tricondyla macrodera abruptesculpta Horn, 1925. 33) Left lateral view. 34) Ventral view.
Figures 19–22. Tricondyla macrodera abruptesculpta Horn, 1925 in Chinese species of the genus Tricondyla Latreille, 1822 (Coleoptera: Cicindelidae) and a new record for the country
Figures 19–22. Tricondyla macrodera abruptesculpta Horn, 1925, scale = 5 mm. 19) Dorsal view, male. 20) Left lateral view, male. 21) Dorsal view, female. 22) Left lateral view, female.
Figures 15–18. Tricondyla gestroi scabra Fleutiaux, 1920 in Chinese species of the genus Tricondyla Latreille, 1822 (Coleoptera: Cicindelidae) and a new record for the country
Figures 15–18. Tricondyla gestroi scabra Fleutiaux, 1920, scale = 5 mm. 15) Dorsal view, male. 16) Left lateral view, male. 17) Dorsal view, female. 18) Left lateral view, female.
Figures 13–14. Tricondyla stricticeps Chaudoir, 1864 in Chinese species of the genus Tricondyla Latreille, 1822 (Coleoptera: Cicindelidae) and a new record for the country
Figures 13–14. Tricondyla stricticeps Chaudoir, 1864, scale = 5 mm. 13) Dorsal view, male. 14) Left lateral view, male.
Figures 9–12. Tricondyla pulchripes White, 1844 in Chinese species of the genus Tricondyla Latreille, 1822 (Coleoptera: Cicindelidae) and a new record for the country
Figures 9–12. Tricondyla pulchripes White, 1844, scale = 5 mm. 9) Dorsal view, male. 10) Left lateral view, male. 11) Dorsal view, female. 12) Left lateral view, female.
ScienceDex guides
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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.