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Рис. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — внешний виΑ бабочки; C, D — генитаΛии самца (D — винкуΛум, юкста и эΑеагус) Fig. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — general appearance of moth; C, D — male genitals (D — vinculum, juxta and aedeagus) in New species of gelechiid moths of the genera Photodotis Meyrick 1911 and Battaristis Meyrick 1914 (Lepidoptera, Gelechiidae) from Panama
Рис. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — внешний виΑ бабочки; C, D — генитаΛии самца (D — винкуΛум, юкста и эΑеагус) Fig. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — general appearance of moth; C, D — male genitals (D — vinculum, juxta and aedeagus)
Рис. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A–C — самец: A — общий виΑ, B — эΑеагус, C — стернит и тергит 8-го сегмента брюшка с пучками анΑрокониаΛьных чешуек; D, E — самка) Fig. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., genitalia, (A–C — male: A — general side view, B — aedeagus, C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; D, E — female) in Two new species of gelechiid moths from the genus Namlika M. Omelko et N. Omelko (Lepidoptera: Gelechiidae, Gelechiinae) from Borneo
Рис. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A–C — самец: A — общий виΑ, B — эΑеагус, C — стернит и тергит 8-го сегмента брюшка с пучками анΑрокониаΛьных чешуек; D, E — самка) Fig. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., genitalia, (A–C — male: A — general side view, B — aedeagus, C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; D, E — female)
Fig. 8. Morphological differences between M. n. nemestrina, M. n. perakensis and M in Fig. 3 in Dactylochelifer latreillii
Fig. 8. Morphological differences between M. n. nemestrina, M. n. perakensis and M. leonina (Pictures of M. leonina adapted from Malaivijitnond et al. 2012).
Fig. 3 in A new species of Macrostemum Kolenati, 1859 from Brazilian Amazon and the immature stages of M. brasiliense (Fischer, 1970) (Trichoptera: Hydropsychidae)
Fig. 3. Macrostemum araca sp. nov., male genitalia. A. Lateral view. B. Dorsal view. C. Ventral view. D–E. Phallus, lateral view. F–G. Phallus, dorsal view. H–I. Phallus, ventral view. Scale bars: A–D = 0.2 mm; E–I = 0.1 mm.
Text-fig. 3. Schematic geological section of the Kristina Mine near Hrádek/N. (state in 1963–1964) – height/length ratio 3:1. Explanations: vertical hatching – lignite seam, seamlet; dotted – coarse-grained sand, pea-gravel; short lines – sandy clay; white – clay; black lines – clay ironstone concretions; black dots – individual fossiliferous horizons designated as (A) plastic clay from the upper part of the main xylitic seam (about 5 m under t of the seam, (B) clay and "Blätterkohle" from the uppermost part of the first seamlet (split off the Main Coal Seam), (C) slightly sandy brown clay under the uppermost part of the Main Coal Seam, (D) base of the sandy clay with large concretions of the clay ironstone above the Main Coal Seam, (E) sandy clay (incl. clay ironstone) supplying most of leaf material with cuticles (F) 1–2 cm thin silty lenticles or thin beds of the sandy clay with xylites and Eomastixia within peagravels and coarse-grained sands, (G) coarse-grained sands with clayish silts with Fagus, Ocotea, Pterocarya, Tectocarya, (H) brown sandy clay underlying the uppermost seamlet, (I) lignite clay, base of the uppermost seamlet (J) Glyptostrobus – "Blätterkohle", base of the uppermost seamlet (according to Holý 1975, modified). in A Review Of The Early Miocene Mastixioid Flora Of The Kristina Mine At Hrádek Nad Nisou In North Bohemia (The Czech Republic)
Text-fig. 3. Schematic geological section of the Kristina Mine near Hrádek/N. (state in 1963–1964) – height/length ratio 3:1. Explanations: vertical hatching – lignite seam, seamlet; dotted – coarse-grained sand, pea-gravel; short lines – sandy clay; white – clay; black lines – clay ironstone concretions; black dots – individual fossiliferous horizons designated as (A) plastic clay from the upper part of the main xylitic seam (about 5 m under t of the seam, (B) clay and "Blätterkohle" from the uppermost part of the first seamlet (split off the Main Coal Seam), (C) slightly sandy brown clay under the uppermost part of the Main Coal Seam, (D) base of the sandy clay with large concretions of the clay ironstone above the Main Coal Seam, (E) sandy clay (incl. clay ironstone) supplying most of leaf material with cuticles (F) 1–2 cm thin silty lenticles or thin beds of the sandy clay with xylites and Eomastixia within peagravels and coarse-grained sands, (G) coarse-grained sands with clayish silts with Fagus, Ocotea, Pterocarya, Tectocarya, (H) brown sandy clay underlying the uppermost seamlet, (I) lignite clay, base of the uppermost seamlet (J) Glyptostrobus – "Blätterkohle", base of the uppermost seamlet (according to Holý 1975, modified).
Fig. 3 in Differences in infection patterns of vector-borne blood-stage parasites of sympatric Malagasy primate species (Microcebus murinus, M. ravelobensis)
Fig. 3. Number of samples (blood smears) per month. Microfilaria positive samples are shown in dark blue for M. murinus and dark brown for M. ravelobensis, microfilaria negative samples in light blue for M. murinus and light brown for M. ravelobensis. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Text-fig. 4. Platanaceae 1–3. Macginitiea gracilis (LESQUEREUX) J. WOLFE et WEHR leaves and associated reproductive structures 1. Holotype of Aralia gracilis LESQUEREUX from Bridger Pass, Wyoming, USNM 330. 2. Specimen showing the typical configuration of five lobes, Killpecker Creek flora, Wyoming. UF 18126-13242. 3. Silicified M. gracilis leaf from Almont, North Dakota; arrow indicates adjacent Macginicarpa infructescence, UF 15722-29202a. 4. Macginicarpa infructescence from Almont, UF15722-35493. 5. Platananthus sp., Almont, UF 15722-62019. 6. Macginicarpa glabra MANCHESTER infructescence, enlarged from fig. 3, UF 15722-29202b. Specimens in figs 3-6 collected and donated by John Curtis. Scales = 1 cm. Images 3–6 light-dark inverted. in Revisions To Roland Brown'S North American Paleocene Flora
Text-fig. 4. Platanaceae 1–3. Macginitiea gracilis (LESQUEREUX) J. WOLFE et WEHR leaves and associated reproductive structures 1. Holotype of Aralia gracilis LESQUEREUX from Bridger Pass, Wyoming, USNM 330. 2. Specimen showing the typical configuration of five lobes, Killpecker Creek flora, Wyoming. UF 18126-13242. 3. Silicified M. gracilis leaf from Almont, North Dakota; arrow indicates adjacent Macginicarpa infructescence, UF 15722-29202a. 4. Macginicarpa infructescence from Almont, UF15722-35493. 5. Platananthus sp., Almont, UF 15722-62019. 6. Macginicarpa glabra MANCHESTER infructescence, enlarged from fig. 3, UF 15722-29202b. Specimens in figs 3-6 collected and donated by John Curtis. Scales = 1 cm. Images 3–6 light-dark inverted.
Text-fig. 3 Pollen diagram from the locality of Bohutín. 0-0.01 m – sandy soil mixed with humus, slightly clayey, sample B11; 0.05 m – grey-blue strongly sandy clay, sample B10; 0.10-0.25 m – brown-grey sandy clay with plant remains and mixed with a small amount of peat, sample B9, sample B8 (0.15 m), sample B7 (0.20 m), sample B6 (0.25 m); 0.30-0.35 m – dark sandy clay mixed with peat and plant remains, sample B5, sample B4 (0.35 m); 0.40 m – grey strongly sandy clay mixed with peat, sample B3; 0.45-0.50 m – grey-blue strongly sandy clay, sample B2, sample B1 (0.50 m). in Reconstruction Of Vegetation Development On The Floodplain Of The Litavka River In The Holocene (Central Bohemia, Brdy Mts.)
Text-fig. 3 Pollen diagram from the locality of Bohutín. 0-0.01 m – sandy soil mixed with humus, slightly clayey, sample B11; 0.05 m – grey-blue strongly sandy clay, sample B10; 0.10-0.25 m – brown-grey sandy clay with plant remains and mixed with a small amount of peat, sample B9, sample B8 (0.15 m), sample B7 (0.20 m), sample B6 (0.25 m); 0.30-0.35 m – dark sandy clay mixed with peat and plant remains, sample B5, sample B4 (0.35 m); 0.40 m – grey strongly sandy clay mixed with peat, sample B3; 0.45-0.50 m – grey-blue strongly sandy clay, sample B2, sample B1 (0.50 m).
Figura 3. a-x. a-m in Nuevas especies y registros del género Cyrea Gordon y Canepari, 2013 (Coleoptera: Coccinellidae: Brachiacanthini), para América del Sur
Figura 3. a-x. a-m: Cyrea torresi n. sp.; a-e: habitus macho (dorsal, frontal, ventral, lateral, posterior,); f: habitus hembra (detalle cabeza y pronoto); g: abdomen; h-i: penis y detalle; j-k: tegmen (ventral y lateral); l: prosterno (detalle); m: espermateca; Cyrea dieguezi n. sp.; n-r: habitus (dorsal, lateral, frontal, posterior y ventral); s: habitus hembra (frontal) t: abdomen; u-v: penis y detalle; w-x: tegmen (lateral y ventral); y: espermateca. Escalas en mm. / a-x. a-m: Cyrea torresi n. sp.; a-e: male habitus (dorsal, frontal, ventral, lateral, posterior); f: female habitus (head and pronotum detail); g: abdomen; h-i: penis and detail; j-k: tegmen (ventral and lateral); l: prosternum (detail); m: spermatheca; Cyrea dieguezi n. sp.; n-r: habitus (dorsal, lateral, frontal, posterior and ventral); s: female habitus (frontal) t: abdomen; u-v: penis and detail; w-x: tegmen (lateral and ventral); y: spermatheca. Scales in mm.
Figure. The Central Black Sea Region of Turkey and sampling sites. Sampling sites: 1. Amasya: Centrum, Firingiler, 40°41′15.9″N, 35°54′45.9″E, 378 m; 2. Amasya: Göynücek, Kışlabeyi Village, 40°23′25.2″N, 35°33′43.1″E, 542 m; 3. Amasya: Gümüşhacıköy, Keçi Village, 40°49′07.5″N, 35°15′35.4″E, 777 m; 4. Amasya: Merzifon, Yakacık Village, 40°53′48.6″N, 35°25′43.9″E, 877 m; 5. Amasya: Suluova, Centrum, 40°49′24.3″N, 35°37′18.0″E, 473 m; 6. Amasya: Suluova, Çayüstü Village, 40°48′43.4″N, 35°38′24.4″E, 495 m; 7. Amasya: Taşova, 40°44′55.5″N, 36°17′49.6″E, 242 m; 8. Amasya: Taşova, Güngörmüş Village, 40°43′41.8″N, 36°17′06.3″E, 279 m; 9. Çorum: Centrum, Güney Village, 40°37′47.6″N, 35°05′58.5″E, 1170 m; 10. Çorum: Laçin, Gökgözler Village, 40°48′48.6″N, 34°50′38.6″E, 434 m; 11. Çorum: Mecitözü, Centrum, 40°31′41.1″N, 35°18′22.3″E, 767 m; 12. Çorum: Mecitözü, Hıdırlı Village, 40°29′19.6″N, 35°15′10.9″E, 918 m; 13. Çorum: Ortaköy, Senemoğlu Village, 40°19′24.0″N, 35°21′37.2″E, 533 m; 14. Çorum: Uğurludağ, Eskiçeltek Village, 40°33′46.6″N, 34°27′00.0″E, 519 m; 15. Ordu: Akkuş, Gökçebayır, 40°43′06.0″ N, 37°01′33.5″E, 920 m; 16. Ordu: Fatsa, Ayazlı, 41°00′32.9″N, 37°27′06.9″E, 130 m; 17. Ordu: Gölköy, 40°40′18.9″N, 37°36′43.4″E, 850 m; 18. Ordu: İkizce, 41°06′07.9″N, 37°07′45.3″E, 50 m; 19. Ordu: Korgan, Terzili Village, 40°42′06.6″N, 37°17′39.2″E, 1246 m; 20. Ordu: Korgan, Yenipınar Village, 40°47′58.0″N, 37°21′31.6″E, 584 m; 21. Ordu: Mesudiye, Centrum, 40°27′42.7″N, 37°46′23.0″E, 1100 m; 22. Ordu: Perşembe, Yumrutaş Village, 41°06′07.7″ N, 37°45′38.3″E, 231 m; 23. Ordu: Ünye, Cevizdere Village, 41°06′26.4″ N, 37°20′10.2″E, sea level; 24. Samsun, Terme, Centrum, 41°12′22.4″N, 36°56′14.8″E, sea level; 25. Samsun:Ayvacık, Yenice Village, 41°03′05.5″N, 36°39′17.4″E, 70 m; 26. Samsun: Bafra, Karaköy, 41°31′26.1″N, 36°00′52.5″E, 21 m; 27. Samsun: Centrum, Ataköy, 41°15′22.9″N, 36°17′26.8″E, 150 m; 28. Samsun: Centrum, entrance of Yeşiltepe (Çorak Village), 41°14′29.6″N, 36°16′52.8″E, 32 m; 29. Samsun: Havza, entrance of Mürsel Village, 40°59′26.5″N, 35°43′20.9″E, 642 m; 30. Samsun: Kavak, İdrisli Village, 41°05′45.5″N, 35°59′36.0″E, 706 m; 31. Samsun: Ladik, Tatlıcak Village, 40°55′29.6″N, 35°58′13.1″E, 870 m; 32. Samsun: Ladik, the vicinity of Lake Ladik, 40°54′06.0″N, 35°59′49.9″E, 870 m; 33. Samsun: Ondokuz Mayıs, Yörükler, 41°31′14.8″N, 36°07′23.6″E, sea level; 34. Samsun: Tekkeköy, Kerpiçli Village, 41°09′26.9″N, 36°32′04.4″E, 152 m; 35. Samsun: Vezirköprü, Pazarcı Village, 41°04′18.5″ N, 35°30′23.2″E, 690 m; 36. Tokat: Almus, Centrum, 40°22′35.5″N, 36°54′42.5″E, 803 m; 37. Tokat: Artova, Centrum, 40°06′42.1″N, 36°18′14.3″E, 1170 m; 38. Tokat: Centrum, vicinity of Tokat Airport, 40°18′23.5″N, 36°20′12.0″E, 556 m; 39. Tokat: Erbaa, Dereçiftliği, 40°33′22.3″ N, 36°37′22.4″E, 384 m; 40. Tokat: Niksar, Şahinli Village, 40°35′09.2″N, 36°53′59.5″E, 270 m; 41. Tokat: Reşadiye, Centrum, 40°23′02.9″N, 37°20′06.3″E, 511 m; 42. Tokat: Turhal, 40°20′21.1″N, 36°08′41.2″E, 507 m; 43. Tokat: Turhal, Arzupınar Village, 40°19′43.7″N, 36°10′52.3″E, 608 m. in The Ceratopogonidae (Insecta: Diptera) fauna of the Central Black Sea Region in Turkey
Figure. The Central Black Sea Region of Turkey and sampling sites. Sampling sites: 1. Amasya: Centrum, Firingiler, 40°41′15.9″N, 35°54′45.9″E, 378 m; 2. Amasya: Göynücek, Kışlabeyi Village, 40°23′25.2″N, 35°33′43.1″E, 542 m; 3. Amasya: Gümüşhacıköy, Keçi Village, 40°49′07.5″N, 35°15′35.4″E, 777 m; 4. Amasya: Merzifon, Yakacık Village, 40°53′48.6″N, 35°25′43.9″E, 877 m; 5. Amasya: Suluova, Centrum, 40°49′24.3″N, 35°37′18.0″E, 473 m; 6. Amasya: Suluova, Çayüstü Village, 40°48′43.4″N, 35°38′24.4″E, 495 m; 7. Amasya: Taşova, 40°44′55.5″N, 36°17′49.6″E, 242 m; 8. Amasya: Taşova, Güngörmüş Village, 40°43′41.8″N, 36°17′06.3″E, 279 m; 9. Çorum: Centrum, Güney Village, 40°37′47.6″N, 35°05′58.5″E, 1170 m; 10. Çorum: Laçin, Gökgözler Village, 40°48′48.6″N, 34°50′38.6″E, 434 m; 11. Çorum: Mecitözü, Centrum, 40°31′41.1″N, 35°18′22.3″E, 767 m; 12. Çorum: Mecitözü, Hıdırlı Village, 40°29′19.6″N, 35°15′10.9″E, 918 m; 13. Çorum: Ortaköy, Senemoğlu Village, 40°19′24.0″N, 35°21′37.2″E, 533 m; 14. Çorum: Uğurludağ, Eskiçeltek Village, 40°33′46.6″N, 34°27′00.0″E, 519 m; 15. Ordu: Akkuş, Gökçebayır, 40°43′06.0″ N, 37°01′33.5″E, 920 m; 16. Ordu: Fatsa, Ayazlı, 41°00′32.9″N, 37°27′06.9″E, 130 m; 17. Ordu: Gölköy, 40°40′18.9″N, 37°36′43.4″E, 850 m; 18. Ordu: İkizce, 41°06′07.9″N, 37°07′45.3″E, 50 m; 19. Ordu: Korgan, Terzili Village, 40°42′06.6″N, 37°17′39.2″E, 1246 m; 20. Ordu: Korgan, Yenipınar Village, 40°47′58.0″N, 37°21′31.6″E, 584 m; 21. Ordu: Mesudiye, Centrum, 40°27′42.7″N, 37°46′23.0″E, 1100 m; 22. Ordu: Perşembe, Yumrutaş Village, 41°06′07.7″ N, 37°45′38.3″E, 231 m; 23. Ordu: Ünye, Cevizdere Village, 41°06′26.4″ N, 37°20′10.2″E, sea level; 24. Samsun, Terme, Centrum, 41°12′22.4″N, 36°56′14.8″E, sea level; 25. Samsun:Ayvacık, Yenice Village, 41°03′05.5″N, 36°39′17.4″E, 70 m; 26. Samsun: Bafra, Karaköy, 41°31′26.1″N, 36°00′52.5″E, 21 m; 27. Samsun: Centrum, Ataköy, 41°15′22.9″N, 36°17′26.8″E, 150 m; 28. Samsun: Centrum, entrance of Yeşiltepe (Çorak Village), 41°14′29.6″N, 36°16′52.8″E, 32 m; 29. Samsun: Havza, entrance of Mürsel Village, 40°59′26.5″N, 35°43′20.9″E, 642 m; 30. Samsun: Kavak, İdrisli Village, 41°05′45.5″N, 35°59′36.0″E, 706 m; 31. Samsun: Ladik, Tatlıcak Village, 40°55′29.6″N, 35°58′13.1″E, 870 m; 32. Samsun: Ladik, the vicinity of Lake Ladik, 40°54′06.0″N, 35°59′49.9″E, 870 m; 33. Samsun: Ondokuz Mayıs, Yörükler, 41°31′14.8″N, 36°07′23.6″E, sea level; 34. Samsun: Tekkeköy, Kerpiçli Village, 41°09′26.9″N, 36°32′04.4″E, 152 m; 35. Samsun: Vezirköprü, Pazarcı Village, 41°04′18.5″ N, 35°30′23.2″E, 690 m; 36. Tokat: Almus, Centrum, 40°22′35.5″N, 36°54′42.5″E, 803 m; 37. Tokat: Artova, Centrum, 40°06′42.1″N, 36°18′14.3″E, 1170 m; 38. Tokat: Centrum, vicinity of Tokat Airport, 40°18′23.5″N, 36°20′12.0″E, 556 m; 39. Tokat: Erbaa, Dereçiftliği, 40°33′22.3″ N, 36°37′22.4″E, 384 m; 40. Tokat: Niksar, Şahinli Village, 40°35′09.2″N, 36°53′59.5″E, 270 m; 41. Tokat: Reşadiye, Centrum, 40°23′02.9″N, 37°20′06.3″E, 511 m; 42. Tokat: Turhal, 40°20′21.1″N, 36°08′41.2″E, 507 m; 43. Tokat: Turhal, Arzupınar Village, 40°19′43.7″N, 36°10′52.3″E, 608 m.
Figures 1-6. Lyela myops, males. 1, 3, 5, upperside. 2, 4, 6, underside. 1, 2, L. m in Distribution and geographical differentiation of the Central Asian endemic species Lyela myops (Staudinger, 1881) (Lepidoptera, Nymphalidae, Satyrinae)
Figures 1-6. Lyela myops, males. 1, 3, 5, upperside. 2, 4, 6, underside. 1, 2, L. m. tashkumirica, holotype, Kyrgyzstan, Jalal-Abad Region, near Tashkumir, 41.40°N, 72.24°E, 600 m, 3 May 1996, V.Lukhtanov leg., in ZISP. 3,4, L. m. myops, Kazakhstan, East Kazakhstan Region, Kurchum Range (SW extreme part), Arka-Aul Mts, 48.4311°N, 83.9792°E, 490m, 30 April 2019, V.A.Lukhtanov, in ZISP. 5,6, L. myops babatagi, Turkmenistan, Kugitang Mts, Svinzovy Rudnik, 1400 m, 28 April 1989, V.Lukhtanov leg., in ZISP.
Рис. 1–11. Mimela spp., имаго и ΔетаΛи строения. 1–6 – M. cupidinea sp. n., гоΛотип, самец; 7–8 – M. anopunctata, самец («Tenasserim»); 9 – M. nigrosellata, гоΛотип, самец (о. Ява, «Java coll. Nonfried»); 10–11 – M. gressitti comb. n., паратип, самка. 1, 10 – общий виΔ; 2, 11 – простернаΛьный отросток; 3 – переΔняя Λапка; 4, 7, 9 – эΔеагус, виΔ сбоку; 5, 8 – парамеры, виΔ сверху, 6 – парамеры и базаΛьная пΛастинка, виΔ снизу. Масштабные Λинейки: 1, 4–10 – 2 мм (Λинейка общая ΔΛя 4–9), 2 – 0.2 мм, 3 – 1 мм, 11 – 0.5 мм. Figs 1–11. Mimela spp., imagoes and details of structure. 1–6 – M. cupidinea sp. n., holotype, male; 7–8 – M. anopunctata, male ("Tenasserim"); 9 – M. nigrosellata, holotype, male ("Java coll. Nonfried"); 10–11 –M. gressitti comb. n., paratype, female.1, 10 – habitus; 2, 11 – prosternal process; 3 – fore protarsus; 4, 7, 9 – aedeagus, lateral view; 5, 8 – parameres, dorsal view; 6 – parameres and basal plate, ventral view. Scale bars: 1, 4–10 – 2 mm (common for 4–9), 2 – 0.2 mm, 3 – 1 mm, 11 – 0.5 mm. in A new species of Mimela Kirby, 1825 from Laos with comments on M. gressitti (Frey, 1970), comb. n. (Coleoptera: Scarabaeidae: Rutelinae)
Рис. 1–11. Mimela spp., имаго и ΔетаΛи строения. 1–6 – M. cupidinea sp. n., гоΛотип, самец; 7–8 – M. anopunctata, самец («Tenasserim»); 9 – M. nigrosellata, гоΛотип, самец (о. Ява, «Java coll. Nonfried»); 10–11 – M. gressitti comb. n., паратип, самка. 1, 10 – общий виΔ; 2, 11 – простернаΛьный отросток; 3 – переΔняя Λапка; 4, 7, 9 – эΔеагус, виΔ сбоку; 5, 8 – парамеры, виΔ сверху, 6 – парамеры и базаΛьная пΛастинка, виΔ снизу. Масштабные Λинейки: 1, 4–10 – 2 мм (Λинейка общая ΔΛя 4–9), 2 – 0.2 мм, 3 – 1 мм, 11 – 0.5 мм. Figs 1–11. Mimela spp., imagoes and details of structure. 1–6 – M. cupidinea sp. n., holotype, male; 7–8 – M. anopunctata, male ("Tenasserim"); 9 – M. nigrosellata, holotype, male ("Java coll. Nonfried"); 10–11 –M. gressitti comb. n., paratype, female.1, 10 – habitus; 2, 11 – prosternal process; 3 – fore protarsus; 4, 7, 9 – aedeagus, lateral view; 5, 8 – parameres, dorsal view; 6 – parameres and basal plate, ventral view. Scale bars: 1, 4–10 – 2 mm (common for 4–9), 2 – 0.2 mm, 3 – 1 mm, 11 – 0.5 mm.
Fig. 3 in The stick insect genus Medauroidea Zompro, 2000: Taxonomic note and extension to Laos and Cambodia with one new species, M. romantica sp. nov. (Phasmida: Phasmatidae: Clitumninae)
Fig. 3. Medauroidea brongniarti (Brunner von Wattenwyl, 1907) and M. romantica sp. nov., distribution map.
Fig. 3. Free range M. robinsoni with interscapular wounds. A in Urban biodiversity: Cuterebriasis in free-ranging Robinson's mouse opossum (Marmosa robinsoni) in the suburbs of Barranquilla, Colombia
Fig. 3. Free range M. robinsoni with interscapular wounds. A. External appearance of bot fly larva wound. B. Extraction of Cuterebra sp. larvae.
Fig.. 3. Simocyon batalleri, MNCN B−3458, Batallones−1, Madrid Province, Spain, cranium in left lateral view. A. Photograph. B. Schematic drawing showing the main anatomical features of this view (artwork by M. Antón). in Ailurid carnivoran mammal Simocyon from the late Miocene of Spain and the systematics of the genus
Fig.. 3. Simocyon batalleri, MNCN B−3458, Batallones−1, Madrid Province, Spain, cranium in left lateral view. A. Photograph. B. Schematic drawing showing the main anatomical features of this view (artwork by M. Antón).
Database from Large-Eddy Simulations of a Supersonic Jet Flow (Re= 1.6x10E6 , M=1.4) - Database 3 of 6
<p>Numerical Database from Large-Eddy Simulations of a Supersonic Jet Flow (Re= 1.6x10E6 , M=1.4) - Database 3 / 6 (Continuation of https://doi.org/10.5281/zenodo.13902381 database)<br>Authors: Diego F. Abreu, João Luiz F. Azevedo, Carlos Junqueira-Junior</p> <p>The operational parameters for the jet flow include a Mach number of 1.4 and a Reynolds number of 1.58E6 referenced to the nozzle exit diameter, corresponding to a perfectly expanded supersonic condition. The pressure and temperature of the jet flow match those of the surrounding ambient conditions.</p> <p>The dataset originates from six numerical simulations employing various mesh resolutions and polynomial orders, along with different boundary conditions. These calculations were performed to investigate the impact of mesh resolution, polynomial order, and boundary conditions on LES of the supersonic jet flow in the absence of nozzle effects. The database encompasses a collection of probes and planes extracted from the 3-D domain as outlined in the attached README.md file.</p> <p>For further details regarding these probes and planes, as well as information on the numerical simulations, please refer to the supplemental-material-database.pdf file.<br>The database is divided into six parts. The present set of data is number one.</p> <p>This database is associated with the manuscript entitled "Assessment of Jet Inflow Condition on the Development of Supersonic Jet Flows". The numerical data presented herein were previously published in the work entitled "Accuracy Assessment of Discontinuous Galerkin Spectral Element Method in Simulating Supersonic Free Jets" (https://doi.org/10.1007/s40430-024-04788-z) and the Ph.D. Thesis "Study of Turbulent Supersonic Jet Flows and the Influence of Nozzle-Exit Boundary Conditions on the Jet Initial Development".</p>
Deliverable 1.1.1.1 BEL-Float project | Dataset containing the results of numerical simulations (motions, forces) of the operational performance analysis - Part 3: Operational scenario with 3.0 m significant wave height
<p>This dataset contains the results of OpenFAST simulations performed on the DeepCwind OC4 semi-submersible combined with the 5MW NREL turbine for various wind and wave conditions. The basis of the OpenFAST input files are taken from <a href="https://github.com/OpenFAST/r-test/tree/main/glue-codes/openfast/5MW_OC4Semi_WSt_WavesWN">OpenFAST r-test GitHub repository (5MW_OC4Semi_WSt_WavesWN)</a> and adapted to simulate various wind and wave conditions. The turbulent wind field as the input to the InflowWind module is generated using <a href="https://www.nrel.gov/wind/nwtc/turbsim.html">TurbSim</a>. The simulations are performed on a modified version of OpenFAST v3.5.3 to which adaptation to the code is made to extract additional Morison drag output up to 16 cylindrical members. This adapted code is <a href="https://github.com/abkpribadi/openfast/tree/Morison_additional_output">uploaded on GitHub as a branch from a forked OpenFAST repository</a>. In total there are 1152 simulation results consists of 768 irregular waves and 384 regular waves cases. The complete dataset is divided into 9 sub-datasets to which this is part number 3. A report describing this dataset is available on the BEL-Float project website: https://www.owi-lab.be/bel-float.</p>
Figs. 2–13. 2, 3. Live M in A Taxonomic Review of the Trapdoor Spider Genus Myrmekiaphila (Araneae, Mygalomorphae, Cyrtaucheniidae)
Figs. 2–13. 2, 3. Live M. neilyoungi from Santa Rosa Co., Florida. 2. Male specimen. 3. Female specimen. 4–13. Color images of male pedipalps, ventral view (top of frame) and retrolateral view (bottom); 6, 12, 13 show ventral view only. 4. M. foliata, Knox Co. Tennessee (rl5retrolateral ledge). 5. M. comstocki, Travis Co., Texas. 6. M. coreyi, Thomas Co., Georgia. 7. M. fluviatilis, Marshall Co., Alabama (ap5accessory prong, e5embolus). 8. M. jenkinsi, Van Buren Co., Tennessee. 9. M. torreya, Liberty Co., Florida. 10. M. neilyoungi, Tuscaloosa Co., Alabama. 11. M. millerae, Grenada Co., Mississippi. 12. M. howelli, Newton Co., Mississippi (le5ledge). 13. M. minuta, Alachua Co., Florida.
Figure 3 in Review of the ant genus Meranoplus Smith, 1853 (Hymenoptera: Formicidae) in the Arabian Peninsula with description of a new species M. mosalahi sp. n. from Oman
Figure 3 Meranoplus mosalahi sp. n., paratype worker, (A) body in profile; (B) body in dorsal view; (C) head in full-face view, (CASENT0922861, http://www.AntWeb.org, Michele Esposito). Full-size DOI: 10.7717/peerj.6287/fig-3
FIGURES 1–8. Generic features. 1–2, Melanocryptus delos. 3, M in Revision of Melanocryptus Cameron (Ichneumonidae, Cryptinae), with description of seven new species
FIGURES 1–8. Generic features. 1–2, Melanocryptus delos. 3, M. aurantius, apex of antenna. 4–5, M. niger, antennae, ventral, showing the felt stripe. 6, M. aurantius, mandibles and clypeus. 7, M. delos, clypeus, dorsolateral. 8, Unidentified cryptine: note that clypeal tooth is structurally different from that of Melanocryptus.
ScienceDex guides
Understand access before you commit
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.