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Figuras 7-12 in Reevaluación del género Andonectes Guéorguiev, 1971 y establecimiento de nuevas combinaciones para el género Platynectes (Agametrus) Régimbart, 1879 (Coleoptera: Dytiscidae: Agabinae) en Venezuela
Figuras 7-12. Habitus de las especies de Platynectes (Agametrus). 7. P. (A.) milla. 8. P. (A.) pineiroi. 9. P. (A.) septentrionalis. 10. P. (A.) similaris. 11. P. (A.) trujillo. 12. P. (A.) venezuelanus. / Habitus of Platynectes (Agametrus) species. 7. P. (A.) milla. 8. P. (A.) pineiroi. 9. P. (A.) septentrionalis. 10. P. (A.) similaris. 11. P. (A.) trujillo. 12. P. (A.) venezuelanus.
Figura 13 in Reevaluación del género Andonectes Guéorguiev, 1971 y establecimiento de nuevas combinaciones para el género Platynectes (Agametrus) Régimbart, 1879 (Coleoptera: Dytiscidae: Agabinae) en Venezuela
Figura 13. Comparación de los escleritos corporales de Andonectes y Agametrus. A. Margen lateral del pronoto y apófisis prosternal de Andonectes maximus Trémouilles, 2001. B. Pronoto y apófisis prosternal de Platynectes (Agametrus) septentrionalis (García, 2002). C. Metaventrito de P. (A.) septentrionalis: ap =apófisis prosternal, pnto = pronoto, rsbm = reborde submarginal. D. Lóbulo medio y parámero de Andonectes maximus. / A. Lateral margin of pronotum and prosternal process of Andonectes maximus Trémouilles, 2001. B. Pronotum and prosternal process of Platynectes (Agametrus) septentrionalis (García, 2002). C. Metaventritus of P. (A.) septentrionalis: ap = prosternal process, pnto = pronotum, rsbm = submarginal ridge. D. Middle lobe and paramer of Andonectes maximus.
Figura 26 in Reevaluación del género Andonectes Guéorguiev, 1971 y establecimiento de nuevas combinaciones para el género Platynectes (Agametrus) Régimbart, 1879 (Coleoptera: Dytiscidae: Agabinae) en Venezuela
Figura 26. Platynectes (Agametrus) humilis Sharp. A. Habitus, B. Escleritos genitales: lbm = lóbulo medio lateral derecho y pde = parámero derecho. / A. Habitus, B. Genital sclerites: lbm = right medial lateral lobe and pde = right paramere.
Figuras 1-6 in Reevaluación del género Andonectes Guéorguiev, 1971 y establecimiento de nuevas combinaciones para el género Platynectes (Agametrus) Régimbart, 1879 (Coleoptera: Dytiscidae: Agabinae) en Venezuela
Figuras 1-6. Habitus de las especies de Platynectes (Agametrus). 1. P. (A.) apure. 2. P. (A.) bordoni. 3. P. (A.) gregarius. 4. P. (A.) intermedius. 5. P. (A.) meridensis. 6. P. (A.) mildredae. / Habitus of Platynectes (Agametrus) species. 1. P. (A.) apure. 2. P. (A.) bordoni. 3. P. (A.) gregarius. 4. P. (A.) intermedius. 5. P. (A.) meridensis. 6. P. (A.) mildredae.
Figura 14-15 in Nueva especie de Hemicoelinum Español, 1971 (Coleoptera: Ptinidae) de Chile
Figura 14-15. Hemicoelinum ornatus sp. n. 14. Distribución geográfica. 15. Hábitat y métodos de recolecta: hábitat, Reserva Nacional Los Queules, Provincia de Cauquenes (a), trampa de emergencia, en bosque siempreverde del Parque Nacional Puyehue, Provincia de Osorno (b), y trampa de intercepción de vuelo en bosque de lenga, Antillanca, Provincia de Osorno (c). / 14. Geographical distribution. 15. Habitat and collection methods: habitat, Reserva Nacional Los Queules, Provincia de Cauquenes (a), emergence trap in evergreen forest, Parque Nacional Puyehue, Provincia de Osorno (b), and flight interception trap in lenga forest, Antillanca, Provincia de Osorno (c).
Figuras 1-12 in Nueva especie de Hemicoelinum Español, 1971 (Coleoptera: Ptinidae) de Chile
Figuras 1-12. Hemicoelinum ornatus sp. n. 1. Hábito, hembra en vistas dorsal (a), lateral (b) y ventral (c). 2. Cabeza del macho. 3. Cabeza de la hembra. 4. Antena del macho. 5. Antena de la hembra. 6. Prosterno en vista frontal. 7. Meso y metaventrito. 8. Pata posterior. 9. Abdomen del macho. 10. Abdomen de la hembra. 11. Edeago en vistas dorsal (a) y ventral (b). 12. Ovipositor. Figura 13. Hemicoelinum raventosi (Español). / 1. Habitus, female in dorsal (a), lateral (b) and ventral views (c). 2. Head of the male. 3. Head of the female. 4. Antenna of the male. 5. Antenna of the female. 6. Prosternum in frontal view. 7. Meso and metaventrite. 8. Hind leg. 9. Male abdomen. 10. Female abdomen. 11. Aedeagus in dorsal (a) and ventral views (b). 12. Ovipositor. Figure 13. Hemicoelinum raventosi (Español).
Fig. 6 in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Fig. 6. Rigidohymena quadrinucleata, the basic scheme of two excystation modes. The standard mode: The beginning of excystation process is connected with formation of a transparent space between cyst wall and excysting cell. A little later, appears the excystation vacuole. The regenerating specimen breaks the cyst wall and escapes within the single, transparent membrane. The transparent membrane is broken by the excystant and resorbed in the enviroment. The rare mode: The beginning of excystation is associated, similarly, as in the standard mode, with formation of a transparent space and excystation vacuole. The regenerating specimen breaks the transparent membrane first, instead of breaking the whole cyst wall. Finally, the rest of the cyst wall is ruptured by the moving cell and the pressure of the excystation vacuole. The cell leaves the resting cyst. The transparent membrane remains in the empty cyst as a residual body.
Figs 4A–I in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Figs 4A–I. Rigidohymena quadrinucleata, resting cysts and excystants in the light microscope, the standard mode of excystation. A–F – the beginning of excystation with formation of excystation vacuole and the cyst wall ruptures under the pressure of excystant and excystation vacuole (circular area marks the individual protuberances that were separated from the cyst wall); G–I – during the standard mode, the excystant breaks the cyst wall within the thin, transparent membrane. CW – cyst wall, EV – excystation vacuole, EX – excystant, TM – transparent membrane. Scale bars: 30 μm.
Figs 3A–H in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Figs 3A–H. Rigidohymena quadrinucleata, resting cysts in the TEM. A–C – cross sections showing the cyst wall, the spine-like protuberances and the content of the resting cyst (arrowheads mark the poorly visible group of mitochondria, asterisks mark the surface protuberances); D – detail of the autophagic vacuoles; E, F – detail of the spine-like protuberances in the young and in mature resting cyst (asterisks mark the protuberances); G, H – the cortex of encysted cells with many regularly waved convex ridges. AV – autophagic vacuole, CS – "curious structure", EC – ectocyst, EN – endocyst, M – mitochondria, MC – mesocyst, MT – metacyst. Scale bars: 1 μm (B, C, E, F); 1,5 μm (G, H); 2 μm (A, D).
Figs 2A–I in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Figs 2A–I. Rigidohymena quadrinucleata, resting cysts in the light microscope and in the SEM. A, B – young resting cysts without surface ornamentation; C, D – mature resting cysts with fully developed cyst wall (arrowhead marks endocyst); E, F – the cyst contents is squeezed out, macronuclear mass is visible; G – full view of cyst; H, I – surface view of the cyst wall showing the spine-like protuberances (asterisks). EC – ectocyst, EN – endocyst, MA – macronucleus, MC – mesocyst. Scale bars: 30 μm (A–F); 20 µm (G); 10 μm (H, I).
Piprahwa & Ganwaria (Siddharthnagar district, Uttar Pradesh). Site plan, 1971-77.
<p>Piprahwa & Ganwaria (Siddharthnagar district, Uttar Pradesh). Site plan, 1971-77. © Archaeological Survey of India.</p>
Fig. 26. Dinoponera quadriceps Kempf, 1971 in Large ants are not easy - the taxonomy of Dinoponera Roger (Hymenoptera: Formicidae: Ponerinae)
Fig. 26. Dinoponera quadriceps Kempf, 1971, ♂ (specimen from Caracol, Piauí, Brazil; DZUP 549804). A. Full-face view. B. Full body in lateral view. C. Full body in dorsal view.
Fig. 6. A–C. Myolepta petiolata Thompson, 1971 in New species of Myolepta Newman, 1838 (Diptera, Syrphidae) from the Indomalayan Realm
Fig. 6. A–C. Myolepta petiolata Thompson, 1971, ♀ (ZFMK-DIP-00082511). A. Habitus, lateral view. B. Habitus, dorsal view. C. Head, frontal view. D–F. M. petiolata, ♀, holotype (BPBM). D. Habitus, lateral view. E. Habitus, dorsal view. F. Habitus, frontal view. Scale bars: A–B = 1 mm; C = 0.5 mm.
Figs 5A–I in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Figs 5A–I. Rigidohymena quadrinucleata, resting cysts and excystants in the light microscope, the rare mode of excystation. A–E – the beginning of excystation with formation of excystation vacuole and the cyst wall ruptures under the pressure of excystant and excystation vacuole (circular area marks the individual protuberances that were separated from the cyst wall, arrowhead marks regenerating ciliature); F–I – during the rare excystation mode, the regenerating excystant breaks the transparent membrane first, inside the resting cyst. CW – cyst wall, EV – excystation vacuole, EX – excystant, MA – macronucleus, TM – transparent membrane, TS – transparent space. Scale bars: 30 μm.
Figs 1A–D in A Study on Resting Cysts of an Oxytrichid Soil Ciliate, Rigidohymena quadrinucleata (Dragesco and Njine, 1971) Berger, 2011 (Ciliophora, Hypotrichia), Including Notes on its Encystation and Excystation Process
Figs 1A–D. Rigidohymena quadrinucleata, trophic specimen and schematic illustrations of morphology of resting cysts. A – ventral view of a representative trophic specimen from the studied Slovak population; B – illustration of resting cyst based on transmission electron microscopy investigations; C, D – illustrations of young and mature resting cysts based on light microscopy investigations. 1–6 – six fronto-ventral-transverse cirral rows, AV – autophagic vacuole, AZM – adoral zone of membranelles, CC – caudal cirri, CS – "curious structures", CV – contractile vacuole, CX – cortex, EC – ectocyst, EM – endoral membrane, EN – endocyst, FV – food vacuole, LMR – left marginal cirral row, M – mitochondria, MA – macronucleus, MC – mesocyst, MI – micronucleus, MT – metacyst, PM – paroral membrane, RMR – right marginal cirral rows, SP – spine-like protuberances, TC – transverse cirri. Scale bars: 25 µm (A); 5 µm (B); 25 µm (C, D).
Figure 1 in Results of the research expedition Biaçores 1971. Fishes and list of stations
Figure 1. – Location of the stations of the Biaçores 1971 cruise (stars). Some stars signal several stations (see Appendix I for details).
Fig. 7 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan
Fig. 7. Map showing the distribution of the Rakantrechus Complex (in part) and anophthalmic species of the genus Trechiama in western Japan.—Light green square, Rakantrechus (s. str.); orange square, R. (Izushites); green circle, R. (Iyotrechus); yellow circle, R. (Pilosotrechiama); green triangle, Nipponaphaenops (s. str.); blue open triangle, N. (Tanakaphaenops) subgen. nov.; purple obtriangle, Ishikawatrechus; large purple circle, anophthalmic Trechiama species.—An, the type locality of Ishikawatrechus annulus Sugaya et Hara; Tk, the type locality of Nipponaphaenops (Tanakaphaenops) kojii sugen. et sp. nov. The course of the Hôyo River in the Last Glacial Maximum was drawn according to Kuwashiro (1959).
Fig. 6 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan
Fig. 6. Habitus.—Nipponaphaenops (Tanakaphaenops) kojii subgen et sp. nov. (holotype female). Scale: 1.0 mm.
Fig. 3 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan
Fig. 3. Basal parts of pronotum and elytra in the Trechiama Series.—a–d, f & h–i, basal parts of pronotum and elytra; e & g, basal parts of elytra (a, c & e–i, dorsal view; b & d; oblique dorsal view).—a, Ishikawatrechus septemtrionalis S. Uéno; b, Trechiama ohruii S. Uéno; c–d, Nipponaphaenops (Tanakaphaenops) kojii subgen et sp. nov. (holotype female); e, Rakantrechus (Paratrechiama) sp. (nomurai group from Shikoku); f, Nipponaphaenops (s. str.) erraticus S. Uéno; g, Yamautidius (Miyamaidius) anaulax S. Uéno; h, Rakantrechus (s. str.) kawasawai S. Uéno; i, Himiseus sp.—D1, first elytral discal seta on or near stria 3; D2, second elytral discal seta on or near stria 3; D5, first elytral discal seta on or near stria 5; ds, discal setae on pronotum; fur, basal transverse furrow; hb, prehumeral border of elytra; icl, inclined face of elytral basal peduncle; tvc, transverse carina bordering elytral disc and inclined face; ©–®, pores 1–4 of marginal umbilicate series of elytra, respectively; III, elytral stria 3; V, elytral stria 5. Scale: 0.25 mm for a, d & h; 0.5 mm for b; 0.21 mm for c & g; 0.32 mm for e, f & i.
Fig. 5 in Contribution to the Knowledge of the Rakantrechus Complex (Coleoptera, Carabidae, Trechini), with Description of a New Subgenus and a New Species of the Genus Nipponaphaenops S. Uéno, 1971 from Northwestern Shikoku, Western Japan
Fig. 5. Basal parts of pronotum and elytra in Rakantrechus species. —a,Rakantrechus (Uozumitrechus) mukaibarai S. Uéno (holotype male); b, R. (Iyotrechus) hisamatsui (S. Uéno et Naitô) comb. nov. (non-type diminutive individual, female); c, R. (Izushites) sp. (female); d, R. (Paratrechiama) elegans S. Uéno (paratype male); e, R. (P.) pallescens S. Uéno (non-type female); f, R. (P.) gracillimus S. Uéno (paratype male)—icl, inclined face of basal peduncle of elytra; ©–®, pores 1–4 of marginal umbilicate series of elytra, respectively; V, fifth elytral stria. Scales: 0.25 mm.
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Allen Brain Atlas
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