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3,976 results for “key to genera”
Fig. 18 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 18. Temnothorax leyeensis Zhou et al., 2010, holotype worker (GXNU0407356). A. Head in fullface view. B. Body in lateral view. C. Body in dorsal view. Photos by Zhi-Lin Chen.
Fig. 22 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 22. Temnothorax jingzhe sp. nov., holotype worker (SWFU A12-1144). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 34 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 34. Temnothorax shuangjiang sp. nov., holotype worker (SWFU A13-198). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 1 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 1. Temnothorax mongolicus (Pisarski, 1969), paratype worker (MIZW). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view. Images cited from www.antweb.org, CASENT 0916693, photos by Flavia Esteves.
Fig. 8 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 8. Temnothorax chushu sp. nov., holotype worker (SWFU A99-29). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 6 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 6. Temnothorax chunfen sp. nov., holotype worker (SWFU A04-713). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 2 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 2. Leptothorax opaciabdomin Chang & He, 2001, holotype worker (NXU 99-161). A. Head in fullface view. B. Body in lateral view. C. Body in dorsal view.
Fig. 14 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 14. Temnothorax eburneipes (Wheeler, 1927), syntype worker (MCZC). A. Head in full-face view. B. Body in lateral view. Illustrations cited from Radchenko (2004).
Fig. 21 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 21. Temnothorax hanlu sp. nov., holotype worker (SWFU A19-7128). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 27 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 27. Temnothorax liqiu sp. nov., holotype worker (SWFU C18-795). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 3 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 3. Temnothorax bailu sp. nov., holotype worker (SWFU A10-3265). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 20 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 20. Temnothorax desioi (Menozzi, 1939), syntype worker (MSNM). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view. Images cited from www.antweb.org, CASENT 0904558, photos by Will Ericson.
Fig. 25 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 25. Temnothorax lidong sp. nov., holotype worker (SWFU C18-230). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 28 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 28. Temnothorax lixia sp. nov., holotype worker (SWFU A05-869). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 17 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 17. Temnothorax dongzhi sp. nov., holotype worker (SWFU C18-962). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 32 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 32. Temnothorax qiu sp. nov., holotype worker (SWFU C18-561). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Figure 9 in Illustrated keys to families and genera of the superfamily Paguroidea (Crustacea: Decapoda: Anomura), with diagnoses of genera of Paguridae
Figure 9. Lithodid abdominal tergites: a, Acantholithodes tergites 1 and 2, tergites 3–6 and telson; b, Hapalogaster tergites 1–3; c, Placetron tergites 1 and 2, tergites 3–6 and telson, showing female asymmetry in tergites 3–5; d, Oedignathus tergites 1–3; e, Neolithodes tergites 1 and 2, tergites 3–6 and telson; f, Phyllolithodes tergites 1 and 2, tergites 3–6 and telson; g, Lopholithodes tergite 1+2, tergites 3–6 and telson; h, Paralithodes tergites 1 and 2, tergites 3–6 and telson; i, Lithodes tergites 1 and 2, tergites 3–6 and telson; j, Paralomis tergite 1+2, tergites 3–6 and telson; k, Cryptolithodes tergite 1+2. tergites 3–6 and telson. Abbreviations: am = accessory marginal plates; ap = accessory plate; la = lateral plate, m = marginal plate; M = median plate; t = telson; tergites are numbered 1–6. [a–i, k from McLaughlin and Lemaitre, 2001a.; j adapted from Macpherson, 1988; not to scale].
Figure 5 in Illustrated keys to families and genera of the superfamily Paguroidea (Crustacea: Decapoda: Anomura), with diagnoses of genera of Paguridae
Figure 5. Representative telsons: a, b, Pylochelidae; c–j, Paguridae; k, Parapaguridae. Sixth abdominal tergite, protopods of uropods and telson: j, Munidopagurus. Dactyl and propodus of pereopod 4: l, o, simple; m, q, subchelate; n, r, semichelate with multiple rows of corneous scales in propodal rasp and no preungual process; p, u, t, semichelate with single row of corneous scales in propodal rasp and preungual process at base of claw; s, semichelate with multiple rows of corneous scales in propodal rasp and preungual process at base of claw; t, chelate; v, semichelate with "type A" (cf. McLaughlin, 1974) sensory structure on lateral face of dactyl. Dactyl and propodus of pereopod 5: w, x subchelate; y, semichelate; z, chelate. [a, b, n, from Forest and McLaughlin, 2000; c, from Lewinsohn, 1982; d, e, from McLaughlin, 1982; f–i from McLaughlin, 1997; j, adapted from Provenzano, 1971; k, from Lemaitre, 1996; l, o–q, s, u, y, from McLaughlin, 1997; m, from McLaughlin and Lemaitre, 1997; q, w, from McLaughlin and Lemaitre, 2001c, v, from McLaughlin, 1974; x, after Lemaitre, 1998; not to scale].
Figure 8 in Illustrated keys to families and genera of the superfamily Paguroidea (Crustacea: Decapoda: Anomura), with diagnoses of genera of Paguridae
Figure 8. Additional morphological characters: a, c, shield with Y-shaped posterior groove; b, shield without Y-shaped posterior groove; d, last thoracic somite and abdomen of Xylopagurus (dorsal view); e, multifid ocular acicles; f, Lithodes rostral spine complex; g, dorsal and ventral rostral spines of Glyptolithodes; h, Cryptolithodes (ventral view) with carapace covering body and appendages; i, rostrum with epirostral spine (lateral view); j, symmetrical uropods and posterior portion of abdominal tergite 6, plus telson (dorsal view) k, right antennal peduncle with hooked spine (indicated by arrow) on lateral margin of segment 1; l, shield of Typhlopagurus showing spinose ocular and antennal acicles and lack of ocular peduncles; m, parapagurid epistome and labrum. Abbreviations: apr = anterior rostral process; ds = dorsal spine(s); es = epistomial spine; ls = labral spine; vs = ventral spine; 6 indicates abdominal tergite 6. [a, from McLaughlin and Hoover, 1996; b, from Forest and de Saint Laurent, 1968; c, from Forest and McLaughlin, 2000; d, from Lemaitre, 1995; e, McLaughlin and Murray, 1990; f, from Vinogradov, 1950; g, after Haig, 1974; h, from Makarov, 1938; i, from McLaughlin, 1997; j, from McLaughlin and Lemaitre, 1993; k, from McLaughlin, 1981; l, from de Saint Laurent, 1972; m, after Lemaitre, 1989; not to scale].
Figure 6 in Illustrated keys to families and genera of the superfamily Paguroidea (Crustacea: Decapoda: Anomura), with diagnoses of genera of Paguridae
Figure 6. Chelipeds: a, left chela of Ciliopagurus (mesial view) showing stridulating mechanism (indicated by arrows); b, left chela of Allodardanus (mesial view) lacking stridulating mechanism; c, left chela and carpus of Ciliopagurus (lateral view); d, chelae of Cancellus togeth- er forming operculum; e, left carpus and chela of Aniculus; f, left chela and carpus of Isocheles (dorsal view), with dactyl opening horizontally (as indicated by arrow), g, left chela and carpus of Loxopagurus (dorsolateral view) with dactyl opening vertically (as indicated by arrow); h, right chela and carpus of Paragiopagurus (dorsal view) with dactyl opening obliquely (as indicated by arrow); i, right chela of Pylojacquesia; j, right chela of Xylopagurus; k, right chela of Bathypaguropsis; l, right chela of Lophopagurus (Australeremus); m, right chela of Rhodochirus; n, left chela of Lophopagurus (Lophopagurus); o, right carpus and chela of Goreopagurus (lateral view); p, right carpus and chela of Oedignathus (mesial view); q, right carpus and chela of Dermaturus (mesial view). [a, c, from Forest, 1952; b, after Haig and Provenzano, 1965; d, after Mayo, 1973; e, from McLaughlin and Hoover, 1995; f, g, from Forest and de Saint Laurent, 1968; h, from Lemaitre, 1996; i, from McLaughlin and Lemaitre, 2001c; j, from Lemaitre, 1995; k, from McLaughlin, 1994; l, n, from McLaughlin and Gunn, 1992; m, from Williams, 1984; o, from McLaughlin and Haig, 1995; k, l, after Vinogradov, 1950; not to scale].
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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.