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4,368 results for “male description”
Fig. 2. Male left antenna, dorsal. A in Taxonomic Review of the Genus Caenoscelis C. G. Thomson (Coleoptera: Cryptophagidae: Cryptophaginae) in Korea with Description of a New Species
Fig. 2. Male left antenna, dorsal. A) Caenoscelis koreanus, new species, B) C. ferruginea, C) C. sibirica. Arrow, antennomere X. Scale bars = 0.5 mm.
FIGURES 15–22 in Contributing to the understanding of Angiopolybia Araujo, 1946 (Hymenoptera, Vespidae, Polistinae): a new species, and descriptions of the nest of A. obidensis and male of A. zischkai
FIGURES 15–22. Angiopolybia zischkai Richards, ♂. 15. Habitus, lateral view. 16. Habitus, dorsal view. 17. Head, frontal view. 18. Paramere. 19. Aedeagus, lateral view. 20. Aedeagus, ventral view. 21. Digitus. 22. Cuspis. Scale bar: 1 mm for 15–17 and 0.5 mm for 18–22.
FIGURE 4. Takedromia longispina McLay, 1993. Male, 17.2 x 15.8 in On a collection of Dromiidae and Dynomenidae from the Philippines, with description of a new species of Hirsutodynomene McLay, 1999 (Crustacea: Decapoda: Brachyura)
FIGURE 4. Takedromia longispina McLay, 1993. Male, 17.2 x 15.8 mm, ZRC 2002.634, Philippines. A, overall view; B, frontal view; C, outer face of right chela.
FIGURES 652–656 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 652–656. Phytomyza senecionis Kaltenbach; 652: cephalopharyngeal skeleton; 653: frontal view of head; 654: head viewed from the side; 655: oviscape, ventral receptacle and spermathecae proportionally; 656 a–b: spermatheca and ventral receptacle proportionally; a: spermathecae; b: ventral receptacle.
FIGURES 572–576 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 572–576. Phytomyza hellebori Kaltenback; 572: cephalopharyngeal skeleton; 573: frontal view of head; 574: head viewed from the side; 575: oviscape, ventral receptacle and spermathecae proportionally; 576 a–b: the largest spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
FIGURES 599–605 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 599–605. Phytomyza nowakowskiana Beiger; 599: cephalopharyngeal skeleton; 600: frontal view of head; 601: head viewed from the side; 602: wing; 603: hypophallus; 604: oviscape, ventral receptacle and spermatheca proportionally; 605 a–b: spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
FIGURES 555–560 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 555–560. Phytomyza artemisivora Spencer; 555: cephalopharyngeal skeleton; 556: frontal view of head; 557: head viewed from the side; 558: oviscape, ventral receptacle and spermathecae proportionally; 559: spermatheca; 560: ventral receptacle.
FIGURES 412–420. Figures 412–415 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 412–420. Figures 412–415: Cerodontha (Dizygomyza) iraeos (Robineau-Desvoidy); 412: cephalopharyngeal skeleton; 413: frontal view of head; 414: head viewed from the side; 415: spermathecae. Figures 416–420: C. (Poemyza) incisa (Meigen); 416: cephalopharyngeal skeleton; 417: frontal view of head; 418: head viewed from the side; 419: oviscape and spermatheca proportionally; 420: spermatheca.
FIGURES 261–269. Figures 261–264 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 261–269. Figures 261–264: Phytomyza ranunculi (Schrank); 261: mines in Ranunculus repens leaf; 262–263: posterior segments of puparium; 262: lateral view; 263: posterior view; 264: posterior spiracles (posterior view). Figures 265–269: P. sedicola Hering; 265: mines in Hylotelephium telephium leaf; 266: "pupal blister" with puparium; 267–268: posterior segments of puparium; 267: lateral view; 268: posterior view; 269: posterior spiracles (posterior view).
FIGURES 104–111. Figures 104–106 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 104–111. Figures 104–106: Cerodontha (Poemyza) muscina (Meigen); 104: mine in Lolium giganteum leaf; 105– 106: posterior segments of puparium; 105: lateral view; 106: posterior view. Figures 107–108: C. (Poemyza) phragmitidis Nowakowski, posterior segments of puparium; 107: lateral view; 108: posterior view. Figures 109–111: C. (Poemyza) pygmaea (Meigen); 109: mine in Lolium giganteum leaf; 110–111: posterior segments of puparium; 110: lateral view; 111: posterior view.
FIGURES 19–28. Figures 19–22 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 19–28. Figures 19–22: Melanagromyza achilleacaulis spec. nov.; 19: puparium (indicated by arrow) in Achillea millefolium stem; 20–21: posterior segments of puparium; 20: lateral view; 21: posterior view; 22: posterior spiracles (posterior view). Figures 23–25: M. aenea (Meigen); 23–24: posterior segments of puparium; 23: lateral view; 24: posterior view. 25: posterior spiracles (posterior view). Figures 26–28: M. angeliciphaga Spencer; 26–27: posterior segments of puparium; 26: lateral view; 27: posterior view. 28: posterior spiracles (posterior view).
FIGURES 150–158. Figures 150–154 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 150–158. Figures 150–154: L. pusilla (Meigen); 150–151: mines; 150: "f. eupatorii" in Centaurea jacea leaf; 151: "f. pusilla" in Galeopsis bifida leaf. 152–153: posterior segments of puparium; 152: lateral view; 153: posterior view. 154: posterior spiracles (posterior view). Figures 155–158: Liriomyza heringi Nowakowski; 155: mine in Euphorbia esula leaf; 156–157: posterior segments of puparium; 156: lateral view; 157: posterior view. 158: posterior spiracles (posterior view).
Figure 8 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 8. Scanning electron micrographs of valves of Parapolycope uncata sp. nov., male paratype (SUM-CO-2080) (A, B); male paratype (SUM-CO-2081) (C, D); male paratype (SUM- CO-2082) (E); female paratype (SUM-CO-2088) (F, G); female paratype (SUM-CO-2089) (H, I); female paratype (SUM-CO-2090) (J). (A) External lateral view of right valve; (B) external lateral view of left valve; (C) internal lateral view of left valve; (D) internal lateral view of right valve; (E) dorsal view of carapace; (F) external lateral view of right valve; (G) external lateral view of left valve; (H) internal lateral view of left valve; (I) internal lateral view of right valve; (J) dorsal view of carapace.
FIGURES 47−50. Male genitalia. 47 in Descriptions of two new genera and six new species of ghost-moths (Lepidoptera Hepialoidea: Hepialidae) from south-eastern and southern Brazil
FIGURES 47−50. Male genitalia. 47, Agripialus itatiaia sp. n., HT: ventral (47a), dorsal (internal; 47b); arrows pointing to the posterior sclerotisation of the tergal lobe and pseudotegumen and the notch in the posterior margin of the saccus. 48, A. caparao sp. n., HT: ventral (48a), dorsal (internal; 48b); arrow pointing to the notch in the posterior margin of the saccus. 49, Mutipialus dilatus sp. n., PT (CGCM 27.435): lateral (49a), ventral (49b), dorsal (internal; 49c); arrow pointing to the entrance of the pocket-like saccus. 50, M. monticolus sp. n., PT (CGCM 29.697): lateral (50a), ventral (50b), dorsal (internal; 50c); arrow pointing to the entrance of the pocket-like caecum.
FIGURES 1–5. Male habitus photographs. 1 in Chrysosoma from Vietnam, with description of a new species and a key to Vietnamese species (Diptera: Dolichopodidae)
FIGURES 1–5. Male habitus photographs. 1, Chrysosoma cupido (Walker); 2, C. hainanum Yang; 3, C. hangzhouense Yang; 4, C. shixingense Zhu and Yang; 5, C. vietnamense sp. nov. Scale bars = 1 mm.
FIGURES 1024–1031. 1024–1027. Mallinella melanognatha comb. nov., male. 1028–1031. M. melanognatha comb. nov., female. 1024. Male palp, ventral. 1025 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 1024–1031. 1024–1027. Mallinella melanognatha comb. nov., male. 1028–1031. M. melanognatha comb. nov., female. 1024. Male palp, ventral. 1025. TA, prolateral. 1026. Ditto, ventral. 1027. Ditto, retrolateral. 1028. Internal genitalia, dorsal. 1029. Left spermatheca, anterior. 1030. Ditto, lateral. 1031. Ditto, posterior.
FIGURES 513–520. 513–517. Mallinella sciophana comb. nov., male. 518–520. M. sciophana, female. 513. Male palp, ventral. 514. Ditto, retrolateral. 515 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 513–520. 513–517. Mallinella sciophana comb. nov., male. 518–520. M. sciophana, female. 513. Male palp, ventral. 514. Ditto, retrolateral. 515. TA, ventral. 516. Ditto, prolateral. 517. Ditto, retrolateral. 518–519. Left spermatheca, anterior. 520. Ditto, lateral.
FIGURES 75–78. 75–77. Mallinella annulipes nom. nov., male. 78. M in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 75–78. 75–77. Mallinella annulipes nom. nov., male. 78. M. cryptocera sp. nov. 75. Femur of leg I. 76. Proximal knob showing stridulating ridges. 77. Ordinary aculeate setae. 78. Ventral part of tibia IV showing group of chisel-shaped hairs.
FIGURES 124–129. Male specimens, lateral view. 124, M. jalapa. 125, M. copiosus. 126, M. ellipsicavus. 127, M. propodeator. 128, M. euryoikos. 129, M in <strong>Phylogeny and revision of <em>Messatoporus</em> Cushman (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of sixty five new species</strong>
FIGURES 124–129. Male specimens, lateral view. 124, M. jalapa. 125, M. copiosus. 126, M. ellipsicavus. 127, M. propodeator. 128, M. euryoikos. 129, M. semiaurantigaster.
FIGURES 119–123. Male specimens, lateral view. 119, M. igneus. 120, M. dialeipsis. 121, M in <strong>Phylogeny and revision of <em>Messatoporus</em> Cushman (Hymenoptera, Ichneumonidae, Cryptinae), with descriptions of sixty five new species</strong>
FIGURES 119–123. Male specimens, lateral view. 119, M. igneus. 120, M. dialeipsis. 121, M. concavivenus*. 122, M. subalaris*. 123, M. antennator.
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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.