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16,415 results for “Key to species”
Figures 21-25 in The variegated mud-loving beetles (Coleoptera: Heteroceridae) of Mississippi and Alabama, with discussion and keys to the species occurring in the southeastern United States
Figures 21-25. Habiti of Heterocerus species of intermediate size with post-mesocoxal lines. 21) H. schwarzi. 22) H. tenuis. 23) H. undatus. 24) H. texanus. 25) H. collaris. Scale line = 1mm.
Figures 18-20 in The variegated mud-loving beetles (Coleoptera: Heteroceridae) of Mississippi and Alabama, with discussion and keys to the species occurring in the southeastern United States
Figures 18-20. Habiti of large Heterocerus species with post-mesocoxal lines. 18) H. insolens. 19) H. sinuosus. 20) H. mollinus. Specimens 20a and 20c are hypermandibulate. Scale line = 1mm.
Figures 30-31 in The variegated mud-loving beetles (Coleoptera: Heteroceridae) of Mississippi and Alabama, with discussion and keys to the species occurring in the southeastern United States
Figures 30-31. Habiti of two widespread species reported to occur in the southeastern USA. 30) Augyles auromicans. 31) Heterocerus fenestratus. Scale line = 1mm.
Figures 11-17 in The variegated mud-loving beetles (Coleoptera: Heteroceridae) of Mississippi and Alabama, with discussion and keys to the species occurring in the southeastern United States
Figures 11-17. Habiti of large Heterocerus species lacking post-mesocoxal lines. 11) H. pallidus (male is hypermandibulate). 12) H. intermuralis (male is hypermandibulate). 13) H. fatuus. 14) H. gnatho. 15) H. longilobulus. 16) H. sandersoni. 17) H. angustatus.Scale line = 1mm.
FIG. 4 in A new edible yam (Dioscorea L.) species endemic to Mayotte, new data on D. comorensis R.Knuth and a key to the yams of the Comoro Archipelago
FIG. 4. — Dioscorea mayottensis Wilkin and its tuber: A, habit; B, immature capsules; C, tubers and lower stem; D, close-up of tubers and crown, showing the tuber of the previous rainy season from which the plant is growing, and the new rainy season's tuber in early development. On the latter, the insertion of the crown (upper part) on the tuber (lower part) can be seen, with the thick roots emanating from the crown. Photos Fabien Barthelat.
FIG. 3 in A new edible yam (Dioscorea L.) species endemic to Mayotte, new data on D. comorensis R.Knuth and a key to the yams of the Comoro Archipelago
FIG. 3. — Female flowering and fruiting morphology in Dioscorea mayottensis Wilkin: A, leaf and female inflorescence, showing the lateral nodal spines; B, flower showing its insertion onto the inflorescence axis, the floral bract and bracteole, ovary and the floral stipe at its apex; C, flower with three tepals removed to show four of the staminodia, the styles and stigmas; D, half-flower showing the torus shape; E, infructescence with immature capsules, showing the persistent floral stipe forming an apical apiculus; F, a ba- sally winged seed. Drawn from Hladik et al. 6469 (A-D), Barthelat et al. 796 (E) and Hladik 6494 (F) by Lucy Smith. Scale bar: A, 3 cm; B, 4 mm; C, D, 0.9 mm; E, 3 cm; F, 1 cm.
FIG. 1. — Dioscorea comorensis R in A new edible yam (Dioscorea L.) species endemic to Mayotte, new data on D. comorensis R.Knuth and a key to the yams of the Comoro Archipelago
FIG. 1. — Dioscorea comorensis R.Knuth: A, female inflorescences with basal ovaries reflexed and enlarging; B, female inflorescence with more ovaries reflexed and enlarging; C, immature infructescence; D, part of male inflorescence showing the flowers in cymules; E, male inflorescences; F, male flowers. Photos Nicole Crestey (A, B, D, E) and Jean-Noël Labat (C, F).
FIG. 1 in neglectum (Dichapetalaceae), a second new species from Gabon with 4-5-locular ovaries, with an adapted key to the Central African species
FIG. 1. — Dichapetalum neglectum Breteler: A, flowering branch; B, detail of leaf base beneath; C, compound inflorescence of sessile, 1-3 flowered cymes; D, flower with bracteole at base of pedicel; E, base of calyx with impressed scar of pedicel; F, flower, one sepal, two petals and one stamen removed, showing staminodes (disc glands) and developing fruit with style; G, immature fruit. A-F, A.M. Louis et al. 370; G, Issembe 763. Drawing by H. de Vries. Scale bars: A, B, 1 cm; C-G, 3 mm.
Fig. 2. — Trichosanthes tricuspidata Lour. subsp. rotundata W.J in Keys to and checklist of species of the genus Trichosanthes L. (Cucurbitaceae) in Indochina
Fig. 2. — Trichosanthes tricuspidata Lour. subsp. rotundata W.J.de Wilde & Duyfjes: A, portion of branch with male inflorescences; B, portion of leafy twig with fruit; C, adult shallowly lobed leaf of fruiting specimen; D, seed; A, Phonsena & Patthum 5502 (L); B, Parnell et al. 95-270 (L); C, D, Maxwell 87-1224 (L). Scale bars: A-C, 2 cm; D, 2 mm.
Fig. 1. — Trichosanthes fissibracteata C.Y.Cheng & C.H in Keys to and checklist of species of the genus Trichosanthes L. (Cucurbitaceae) in Indochina
Fig. 1. — Trichosanthes fissibracteata C.Y.Cheng & C.H.Yueh: A, portion of shoot with male inflorescences; B, upper leaf surface with rough cystoliths; C, ditto from a different specimen; D, fruit; E, seed; A, B, Yu, Che & Wu, Quan-An 974 (KUN); C, Poilane 11304 (P); D, E, Cuong & Cuong 2076 (HN). Scale bars: A, D, 2 cm; B, C, 1 mm, E, 3 mm.
Figures 10–15 in A checklist and key to species of the genus Sophonia (Insecta: Auchenorrhyncha: Cicadellidae: Nirvaninae) in China with descriptions of two new species
Figures 10–15. Sophonia yunnanensis sp. nov. (10) Dorsal view of adult male. (11) Lateral view of male pygofer. (12) Subgenital plate. (13) Ventral view of aedeagus. (14) Connective. (15) Style.
Figures 1–9 in A checklist and key to species of the genus Sophonia (Insecta: Auchenorrhyncha: Cicadellidae: Nirvaninae) in China with descriptions of two new species
Figures 1–9. Sophonia transvittata sp. nov. (1) Dorsal view of adult male. (2) Forewing of male. (3) Forewing of female. (4) Lateral view of male pygofer. (5) Subgenital plate. (6) ventral view of aedeagus. (7) Lateral view of aedeagus. (8) Connective. (9) Style.
Figure 9 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 9. (A) Mesocyclops meridionalis, female (MNHN Cp 718), antennular segments; (B) fifth pediger, genital somite, ventral; (C) M. brasilianus, female (MNHN Cp 821) antennular segments; (D) M. evadomingoi, female (ECOCH-Z-01157), maxillulae; (E) M. meridianus, female (ECOCH-Z-01205), maxillulae; (F) M. pseudomeridianus, female (MNHN Cp 708), caudal rami, ventral; (G) M. meridianus, female (ECOCH-Z-01204).
Figure 4 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 4. (A) Mesocyclops thermocyclopoides, male (ECOCH-Z-01215), first leg, caudal, exopod omitted; (B) M. brasilianus, female (MNHN Cp 821), first leg, frontal, exopod omitted; (C) M. pescei, female (ECOCH-Z-01246), fifth pediger, genital somite upper portion, ventral; (D) M. pescei, male (ECOCH-Z-01244), fourth leg, intercoxal sclerite; (E) M. thermocyclopoides, female (ECOCH-Z-01214), fifth pediger, genital somite upper portion, ventral; (F) M. aspericornis, female (ECOCH-Z-01234); (G) M. pehpehiensis, female (ECOCH-Z-01667), fifth pediger, genital somite upper portion, ventral; (H) M. pehpehiensis, female fourth leg, intercoxal sclerite.
Figure 6 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 6. (A) Mesocyclops reidae, male (ECOCH-Z-01255), antennal basis, frontal; (B) M. longisetus s.str. female (ECOCH-Z-01236), antennal basis, frontal; (C) M. edax, female, abdomen (modified from Dahms and Fernando 1995, copyright waiver); (D) M. reidae, male (ECOCH-Z-01255), abdomen, ventral; (E) M. reidae, female, fifth pediger and genital somite (modified from Reid 1993, copyright waiver); (F) M. chaci, female, fifth pediger and genital somite (modified from Fiers et al. 1996, copyright waiver); (G) M. chaci, female, fifth leg (modified from Fiers et al. 1996, copyright waiver); (H) M. yutsil, female, fifth leg (modified from Fiers et al. 1996, copyright waiver).
Figure 2 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 2. (A) Abdomen ventral (female from Taxisco, Guatemala, MNHN Cp 697, labelled as Mesocyclops varius); (B) Mesocyclops brasilianus, female from Itacoatiara, Brazil (INPA-1396), abdomen, ventral; (C) abdomen, ventral (female from Mare à Camaguan and Caracas, Venezuela, MNHN-Cp1882, labelled as Mesocyclops venezolanus); (D) caudal rami, ventral (MNHN Cp 697); (E) M. brasilianus (INPA-1396), anal somite, and caudal rami, ventral; (F) anal somite and caudal rami, view (MNHN-Cp1880).
Figure 1 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 1. (A) First leg, coxa, basis, and first endopodal segment, frontal (female from Taxisco, Guatemala, MNHN Cp 697, labelled as Mesocyclops varius); (B) Mesocyclops brasilianus, female from Itacoatiara, Brazil (INPA- 1396), first leg, coxa, basis, and first endopodal segment, caudal; (C) first leg, coxa, basis, and first endopodal segment, caudal (female from Mare à Camaguan and Caracas, Venezuela, MNHN-Cp1882, labelled as Mesocyclops venezolanus); (D) fourth leg, coxa, and basis, frontal (MNHN Cp 697); (E) M. brasilianus (INPA- 1396), fourth leg, coxa, and basis, caudal; (F) fourth leg, coxa, and basis, caudal (MNHN-Cp1882); (G) fifth pediger and genital somite, ventral (MNHN Cp 697); (H) M. brasilianus (INPA-1396), fifth pediger and genital somite, ventral; (I) fifth pediger and genital somite, ventral (MNHN-Cp1882).
Figure 3 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 3. Frequencies of the length ratio of dorsal/lateral caudal setae in the populations of Mesocyclops brasilianus populations examined. Lines refer to the ratio range of each population.
Figure 5 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 5. (A) Mesocyclops ogunnus, female, maxillular palp (from van de Velde 1984); (B) M. thermocyclopoides, female (ECOCH-Z-01214), maxillular palp; (C) caudal rami, ventral; (D) antennal basis, caudal; (E) M. thermocyclopoides, male (ECOCH-Z-01215), antennal basis, caudal; (F) M. aspericornis, female (ECOCH-Z- 01234), caudal rami, ventral; (G) antennal basis, caudal; (H) M. reidae, male (ECOCH-Z-01255), fourth leg, intercoxal sclerite, coxa, and basis, caudal; (I) M. brasilianus, female (ECOCH-Z-01195), fourth leg, intercoxal sclerite, coxa, and basis, caudal.
Figure 8 in The neotropical species of Mesocyclops (Copepoda, Cyclopoida): an upgraded identification key and comments on selected taxa
Figure 8. (A) Mesocyclops ellipticus, female (ECOCH-Z-01252), fifth pediger, genital somite, ventral; (B) anal somite, dorsal; (C) M. intermedius, female (ZMA Co 102-731), fifth pediger, genital somite, ventral; (D) anal somite, dorsal; (E) anal somite, caudal rami, ventral; (F) M. paranaensis, female (MNHN Cp 1883), anal somite, caudal rami, ventral; (G) M. brasilianus, female (ECOCH-Z-01196), fifth pediger, genital somite, ventral; (H) M. meridianus, female (ECOCH-Z-01202).
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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.