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3,976 results for “key to genera”
FIGURES 17–28 in Anaphothrips genus-group: key to world genera, with two new species and three new records from Japan (Thysanoptera, Thripidae)
FIGURES 17–28. Oxythrips japonicus sp. n. Female 17–26. (17) Head & pronotum; (18) Antenna; (19) Antennal segments VI–VIII, ventral aspect, setae and sxulpture omitted; (20) Mesonotum & metascutum; (21) Metapre-episternum, left; (22) Fore tarsus to distal part of tibia, right; (23) Tergite II; (24) Tergites VII-X; (25) Sternites II–IV, sculpture omitted; (26) Middle of sternite III. Male 27–28. (27) Tergite IX; (28) Sternite VI, sculpture omitted.
FIGURES 6–16. Caprithrips. C in Anaphothrips genus-group: key to world genera, with two new species and three new records from Japan (Thysanoptera, Thripidae)
FIGURES 6–16. Caprithrips. C. insularis, female, 6–8. (6) Meso- and metanota, granules on mesoepimeron omitted; (7) Basantra; (8) Tergite VI. C. melanophthalmus, female, 9–16. (9) Head & pronotum; (10) Antenna; (11) Meso- & metanota; (12) Basantra to anterior part of mesosternum; (13) Tergite V; (14) Tergites VIII–X; (15) Sternite V; (16) Sternite VII.
FIGURES 1–5 in Anaphothrips genus-group: key to world genera, with two new species and three new records from Japan (Thysanoptera, Thripidae)
FIGURES 1–5. Adult. (1) Anaphothrips swezeyi, female. (2) Caprithrips melanophthalmus, female. Oxythrips japonicus sp. n., 3–4: (3) Female; (4) Male. (5) Rubiothrips galii sp. n., female.
FIGURE 4 in A new genus and species of entocytherid ostracod (Ostracoda: Entocytheridae) from the John Day River Basin of Oregon, U. S. A., with a key to genera of the subfamily Entocytherinae
FIGURE 4. Examples of mating behaviors exemplified in this study. A, posteroventral view of an adult male Uncinocythere occidentalis (NCSM 27036) mating with an A-1 female (NCSM 27037) in the process of molting into its adult stage. Note the sclerotized (yellow) appendages of the adult male versus the nonsclerotized (transparent) appendages of the female. B, adult male Aurumcythere tillmani sp. nov (NCSM 27019) engaged in false mating behavior with another adult male A. tillmani sp. nov. (NCSM 27020), both nonsclerotized. C, adult male A. tillmani sp. nov. (NCSM 27047) attempting to mate with an A-3 juvenile (NCSM 27048), both nonsclerotized. D, adult male A. tillmani sp. nov. (NCSM 27028) with its copulatory appendages embedded in the anterior portion of the carapace of an A-1 female (NCSM 27029), both nonsclerotized.
FIGURE 3 in A new genus and species of entocytherid ostracod (Ostracoda: Entocytheridae) from the John Day River Basin of Oregon, U. S. A., with a key to genera of the subfamily Entocytherinae
FIGURE 3. Illustrations of appendages of Aurumcythere tillmani sp. nov. A, antennule of the holotype (NCSM 27006). B, antenna of paratypic male (NCSM 27028). C, mandible of paratypic male (NCSM 27001). D, rake-shaped organ in different aspect drawn from adult male (NCSM 27074). E, maxillula of adult male (NCSM 27076). F, fifth limb of allotype (NCSM 27000). G, sixth limb of allotype (NCSM 27000). H, seventh limb of allotype (NCSM 27000). I, antenna of paratypic adult female (NCSM 27009).
FIGURE 2 in A new genus and species of entocytherid ostracod (Ostracoda: Entocytheridae) from the John Day River Basin of Oregon, U. S. A., with a key to genera of the subfamily Entocytherinae
FIGURE 2. Illustrations of Aurumcythere tillmani sp. nov. A, outline of the carapace of the holotype (NCSM 27006). B, outline of the carapace of the allotype (NCSM 27000) with the amiculum drawn in situ. C, copulatory complex of holotype.
FIGURE 1 in A new genus and species of entocytherid ostracod (Ostracoda: Entocytheridae) from the John Day River Basin of Oregon, U. S. A., with a key to genera of the subfamily Entocytherinae
FIGURE 1. Map showing sites in eastern Oregon, U.S.A. where Aurumcythere tillmani sp. nov. was recovered.
FIGURE 2 in A new genus and species of bark mantis from Thailand, with an updated key to the bark mantis genera of the Oriental region (Insecta: Mantodea)
FIGURE 2. Paratheopompa siamensis, holotype, morphological details. a, Head in anterior vieW. b, Head and pronotUm in dorsolateral vieW. c, Left foreleg in anterior vieW. Scale bar = 10 mm. Abbreviations: jb = jUxta-ocUlar bUlge, js = jUxta-ocUlar sUlcUs, ps = paramedian sUlcUs.
FIGURE 11 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 11. Drawings of feet of marine heterotardigrades. A Neostygarctus, redrawn from Fujimoto & Miyazaki (2013). B Prostygarctus, original drawing. C Renaudarctus, redrawn from Kristensen & Higgins (1984b). D Actinarctus, Tanarctus, Zioella, redrawn from Renaud-Mornant (1982a). E Dipodarctus leg I, redrawn from Jørgensen et al. (2014). F Dipodarctus leg IV, redrawn from Jørgensen et al. (2014). G Florarctus, Wingstrandarctus, redrawn from Renaud-Mornant (1989a). H Ligiarctus, redrawn from Renaud-Mornant (1982b). I Paratanarctus, redrawn from D'Addabbo Gallo et al. (1992).
FIGURE 10 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 10. Drawings of feet of marine heterotardigrades. A Coronarctus (heteronych claws), redrawn from Renaud-Mornant (1983). B Coronarctus (isonych claws), redrawn from Hansen (2007). C Trogloarctus, original drawing. D Megastygarctides, redrawn from Hansen & Kristensen (2006). E Pseudostygarctus, Mesostygarctus, Faroestygarctus redrawn from Renaud- Mornant (1983). We have indicated the four-claw condition, but there is variation in this group. Faroestygarctus and Pseudostygarctus galloae have only two claws, Pseudostygarctus triungulatus has three, while all the other species in these genera have four claws. Faroestygarctus has dorsal spurs on claws. F Stygarctus, Parastygarctus, redrawn from Renaud- Mornant (1982a). G Neoarctus, redrawn from de Zio Grimaldi et al. (1992). H Echiniscoides, Isoechiniscoides redrawn from Renaud-Mornant (1982a). I Anisonyches, redrawn from Renaud-Mornant (1982a).
FIGURE 8 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 8. Habitus drawings of marine heterotardigrades. A Styraconyx, redrawn from Marcus (1936). B Bathyechiniscus, redrawn from Steiner (1926). C Pleocola, redrawn from Pollock (1976). D Lepoarctus, redrawn from Renaud-Mornant (1975a). E Tholoarctus, redrawn from D'Addabbo Gallo et al. (1992). F Tetrakentron, redrawn from Kristensen (1980). G Raiarctus, redrawn from Jørgensen et al. (2014). H Rhomboarctus, redrawn from Hansen et al. (2003a). I Angursa, redrawn from Renaud-Mornant (1988) and Bussau (1992).
FIGURE 7 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 7. Habitus drawings of marine heterotardigrades. A Dipodarctus, redrawn from Gallo d'Addabbo et al. (2001). B Quisarctus, redrawn from Fujimoto (2015b). C Halechiniscus, redrawn from Renaud-Mornant (1979a). D Chrysoarctus, redrawn from Grimaldi de Zio et al. (1982b). E Paradoxipus, redrawn from Kristensen & Higgins (1989). F Mutaparadoxipus, redrawn from Gross et al. (2014). G Opydorscus, redrawn from Renaud-Mornant (1989b). H Orzeliscus, redrawn from du Bois Reymond Marcus (1952). I Batillipes, redrawn from McKirdy (1975).
FIGURE 6 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 6. Habitus drawings of marine heterotardigrades. A Florarctus, redrawn from Renaud-Mornant (1989a). B Ligiarctus, redrawn from Renaud-Mornant (1982b). C Wingstrandarctus, redrawn from Kristensen (1984). D Actinarctus, redrawn from Renaud-Mornant (1979a). E Tanarctus, redrawn from Renaud-Mornant (1975b). F Zioella, redrawn from Renaud-Mornant (1987a).
FIGURE 3. Foot and claw morphology. A. Generalised leg. B in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 3. Foot and claw morphology. A. Generalised leg. B. Chimaeric foot showing various claw configurations. External claw at left of image has a single point (sometimes called a "simple claw"), the next internal claw has two points, and the final two claws have three points. C. Paratanarctus foot, redrawn from D'Addabbo Gallo et al. (1992). D. Mutaparadoxipus foot, redrawn from Gross et al. (2014). E. Batillipes foot, redrawn from Kristensen & Mackness (2000). F. Megastygarctides foot, redrawn from Hansen & Kristensen (2006). ap = accessory point, bm = basal membrane, cl = claw, co = coxa, cr = calcar, cs = claw sheath, db= disc brace, dc = disc, de = distal stalk enlargement, di = digit, ed = external digit, fe = femur, id = internal digit, pa = adhesive pad, pe = peduncle, pp = primary point, ppa = proximal adhesive pad, pta = pretarsus, sp = secondary point. ta = tarsus, ti = tibia, to = toe.
FIGURE 4 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 4. Habitus drawings of marine heterotardigrades. A Archechiniscus, redrawn from Pollock (1976). B Coronarctus, redrawn from Renaud-Mornant (1987b). C Trogloarctus, redrawn from Villora-Morena (1996). D Clavarctus, redrawn from Renaud-Mornant (1983). E Euclavarctus, redrawn from Renaud-Mornant (1975a). F Exoclavarctus, redrawn from Renaud- Mornant (1983). G Moebjergarctus, redrawn from Bussau (1992). H Parmursa, redrawn from Hansen (2007). I Proclavarctus, redrawn from Renaud-Mornant (1983).
FIGURE 1 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 1. Chimaeric dorsal habitus of marine heterotardigrade. Feet represented from leg I clockwise are Echiniscoides, Stygarctus, Renaudarctus, Neostygarctus, and Prostygarctus. bpI–III = dorsal body plates I–III, ca = caudal ala, cap = caudal plate, cae = caestus, plate, cA – cE = cirrus A to cirrus E, ic = internal cirrus, ipI–IV = intersegmental plates I–IV, la = lateral ala, mc = median cirrus, pc = primary clava, sc = secondary clava, se1–4 = sense organ of leg I–IV.
FIGURE 13 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 13. Drawings of feet of marine heterotardigrades. A Clavarctus, redrawn from Renaud-Mornant (1983). B Parmursa, redrawn from Renaud-Mornant (1984). C Euclavarctus, Exoclavarctus, Moebjergarctus, Proclavarctus, redrawn from Renaud- Mornant (1983). D Halechiniscus, redrawn from Renaud-Mornant (1982a). E Quisarctus, redrawn from Fujimoto (2015b). F Chrysoarctus, redrawn from Renaud-Mornant (1984).
FIGURE 9 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 9. Habitus drawings of marine heterotardigrades. A Paratanarctus, redrawn from D'Addabbo Gallo et al. (1992). B Anisonyches, redrawn from Grimaldi de Zio & D'Addabbo Gallo (1987). C Echiniscoides, Isoechiniscoides redrawn from Kristensen & Hallas (1980). D Neoarctus, redrawn from Grimaldi de Zio et al. (1992).
FIGURE 14 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 14. Drawings of feet of marine heterotardigrades. A Paradoxipus, redrawn from Kristensen & Higgins (1989). B Mutaparadoxipus leg I, redrawn from Gross et al. (2014). C Mutaparadoxipus leg IV, redrawn from Gross et al. (2014). D Opydorscus leg I, redrawn from Renaud-Mornant (1989b). E Opydorscus leg II (legs III and IV identical), redrawn from Renaud-Mornant (1989b). F Orzeliscus, redrawn from Kristensen & Higgins (1989). G Batillipes, redrawn from Kristensen & Mackness (2000).
FIGURE 2 in A dichotomous key to the genera of the Marine Heterotardigrades (Tardigrada)
FIGURE 2. Chimaeric ventral habitus of a female marine heterotardigrade. Feet represented from left leg I clockwise are Ligiarctus, Halechiniscus, Archechiniscus, Actinarctus, Paratanarctus, Paradoxipus, Orzeliscus, and Batillipes. an = anus, bt = buccal tube, ca = caudal ala, cA = cirrus A, cE = cirrus E, ec = external cirrus, fa = frontal ala, go = gonopore, ic = internal cirrus, la = lateral ala, mc = median cirrus, pc = primary clava, pb = pharyngeal bulb, sc = secondary clava, sr = seminal receptacle, st = stylet, tc = tertiary clava, vpI–III = ventral body plates I–III.
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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.