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417 results for “IA”
Figure 3 from: Kaygorodova IA (2015) Annotated checklist of the leech species diversity in the Maloe More Strait of Lake Baikal, Russia. ZooKeys 545: 37-52. https://doi.org/10.3897/zookeys.545.6053
Figure 3 - Glossiphonia sp. 2 from Kurma Bay of the Maloe More Strait (Lake Baikal). Scale bar 1 mm.
Figure 2 from: Kaygorodova IA (2015) Annotated checklist of the leech species diversity in the Maloe More Strait of Lake Baikal, Russia. ZooKeys 545: 37-52. https://doi.org/10.3897/zookeys.545.6053
Figure 2 - Glossiphonia sp. 1 (below) and Alboglossiphonia heteroclita (above) from Kurma Bay of the Maloe More Strait (Lake Baikal). Scale bar 10 mm.
Figure 1 from: Kaygorodova IA (2015) Annotated checklist of the leech species diversity in the Maloe More Strait of Lake Baikal, Russia. ZooKeys 545: 37-52. https://doi.org/10.3897/zookeys.545.6053
Figure 1 - Map of the Maloe More Strait of Lake Baikal. Red dots indicate leech sampling localities: 1 Tutay Bay 2 Sakhurte Bay 3 Olkhon Gates Strait 4 Kurkut Bay 5 Ulirba Bay 6 Mukhor Bay 7 Shide Bay 8 Khuzhir-Nugho Bay 9 Khuzhir-Nugho Bay against of Sarma village) 10 Sarma River 11 Mukhor-Khale Bay 12 Khagden-Khale Bay 14 Kurma Bay 15 Otto-Khushun Bay 16 Lake Surkhaytor-Hur 17 Lake Zunduk 18 Zunduk Bay 19 Codoviy Bay 20 Lake Zama 21–24 Northern transit of the Maloe More 25 Cape Khoboy 26 Nyurgon Bay 27 Kharansa Bay 28 Odonim Bay 29 Khuzhir Bay 30 Elgay Bay 31 Lake Khankhoy 32 Shibetey Bay 33 Semisosennaya Bay 34 Khargoy Bay 35 Kharin Irgi Bay 36 Khul Bay 37 Zagli 38 Lake Nur 39 Ushun Bay.
Figure 5 from: Kaygorodova IA (2015) Annotated checklist of the leech species diversity in the Maloe More Strait of Lake Baikal, Russia. ZooKeys 545: 37-52. https://doi.org/10.3897/zookeys.545.6053
Figure 5 - Codonobdella sp. on its host amphipod. The sample was found in the northern transit of the Maloe More Strait.
Figures 22-26 from: Straka J, Alqarni AS, Juzova K, Hannan MA, Hinojosa-Díaz IA, Engel MS (2015) Rediscovered parasitism of Andrena savignyi Spinola (Hymenoptera, Andrenidae) by Stylops (Strepsiptera, Stylopidae) and revised taxonomic status of the parasite. ZooKeys 519: 117-139. https://doi.org/10.3897/zookeys.519.6035
Figures 22-26 - First instar of Stylops nassonowi Pierce 22 Dorsal view 23 Ventral view 24 Detail of head, ventral view 25 Detail of head, dorsal view 26 Thoracic segments, ventral view. Scale bars: 10 µm.
Figure 5 from: Straka J, Alqarni AS, Juzova K, Hannan MA, Hinojosa-Díaz IA, Engel MS (2015) Rediscovered parasitism of Andrena savignyi Spinola (Hymenoptera, Andrenidae) by Stylops (Strepsiptera, Stylopidae) and revised taxonomic status of the parasite. ZooKeys 519: 117-139. https://doi.org/10.3897/zookeys.519.6035
Figure 5 - Detail from Figure 4 showing one female of Stylops nassonowi Pierce and numerous emergent first instars.
Figure 4 from: Straka J, Alqarni AS, Juzova K, Hannan MA, Hinojosa-Díaz IA, Engel MS (2015) Rediscovered parasitism of Andrena savignyi Spinola (Hymenoptera, Andrenidae) by Stylops (Strepsiptera, Stylopidae) and revised taxonomic status of the parasite. ZooKeys 519: 117-139. https://doi.org/10.3897/zookeys.519.6035
Figure 4 - Metasomal apex of female of Andrena (Suandrena) savignyi Spinola from Riyadh, Saudi Arabia parasitized by Stylops nassonowi Pierce, and depicting two females of the parasite exposed from under the apex of tergum IV.
Figures 6-21 from: Straka J, Alqarni AS, Juzova K, Hannan MA, Hinojosa-Díaz IA, Engel MS (2015) Rediscovered parasitism of Andrena savignyi Spinola (Hymenoptera, Andrenidae) by Stylops (Strepsiptera, Stylopidae) and revised taxonomic status of the parasite. ZooKeys 519: 117-139. https://doi.org/10.3897/zookeys.519.6035
Figures 6-21 - Ventral (6–19) and dorsal views (20, 21) of cephalothoraxes of female puparia from Stylops nassonowi Pierce (6–13, 20, 21) and Stylops aterrimus Newport (14–19) 6 Voucher SCa5 (Czech Republic) 7 Voucher SCa6 (Czech Republic) 8 Voucher SHo1 (Turkey) 9 Voucher SSa1 (Saudi Arabia) 10 Voucher SSg1 (Czech Republic) 11 Voucher STi2 (Hungary) 12 Voucher STi4 (Czech Republic) 13 Voucher STi6 (Czech Republic) 14 Voucher SAg1 (Tunisia) 15 Voucher SBm1a (Czech Republic) 16 Voucher SBm1b (Czech Republic) 17 Voucher STig2 (Tunisia) 18 Voucher SCa7 (Switzerland) 19 Voucher Ssp1 (Tunisia) 20 Voucher SCa10 (Czech Republic) 21 Voucher STi6 (Czech Republic).
Figures 1-3 from: Straka J, Alqarni AS, Juzova K, Hannan MA, Hinojosa-Díaz IA, Engel MS (2015) Rediscovered parasitism of Andrena savignyi Spinola (Hymenoptera, Andrenidae) by Stylops (Strepsiptera, Stylopidae) and revised taxonomic status of the parasite. ZooKeys 519: 117-139. https://doi.org/10.3897/zookeys.519.6035
Figures 1-3 - Female of Andrena (Suandrena) savignyi Spinola from Riyadh, Saudi Arabia parasitized by Stylops nassonowi Pierce 1 Dorsal habitus of bee 2 Lateral habitus of bee (image inverted); one female of parasite observable at apex of tergum IV 3 Detail of setae at bee's metasomal apex showing numerous first instars of the parasite.
Figure 9 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 9 - Selaginella pellucidopunctata Valdespino. A Megaspore, proximal face B Close-up of megaspore, proximal face C Megaspore, distal face D Close-up of megaspore, distal face E Microspore, proximal face F Close-up of microspore, proximal face G Microspore, distal face H Close-up of microspore, distal face. A–H taken from the isotype, Oliveira 1094 (PMA).
Figure 8 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 8 - Selaginella pellucidopunctata Valdespino. A Section of lower surface of stem B Lower surface of lateral leaf C Close-up of distal portion and apex of lateral leaf, lower surface; note elongate, straight-walled, and papillate cells (idioblasts) D Close-up of lateral leaf, lower surface; note elongate, straight-walled, and papillate cells (idioblasts) E Strobilus, upper surface; note dorsal (Ds) and ventral (Vs) sporophyll F Dorsal sporophylls, adaxial- (F-1) and abaxial surfaces (F-2); note acroscopic margin (Ma) and basiscopic margin (Mb), this usually referred to as laminar flap (lf), stomata (a) throughout lamina and midrib, as well as tooth-like projections (b) on midrib and lamina, abaxial (upper) surface, marginal tooth projections (c), and ligule (d) G Strobilus, lower surface; note dorsal- (Ds) and ventral (Vs) sporophyll H Ventral sporophyll, adaxial (lower) surface. A–H taken from the isotype, Oliveira 1094 (PMA).
Figure 5 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 5 - Selaginella neospringiana Valdespino. A Lateral leaf and portions of median leaves, upper surfaces; note papillae on cells lumen and stomata (a) along midrib of median leaf B Close-up of upper surface of lateral leaf; note papillae on cells lumen. A–B taken from the isotype, Glaziou 11723 (PMA).
Figure 7 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 7 - Selaginella pellucidopunctata Valdespino. A Section of upper surface of stem B Upper surface of median leaf C Close-up of base and proximal portion of median leaf, upper surface; note marginal stoma (a) on outer margin D Close-up of median leaf, distal region, upper surface E Close-up of apex of median leaf, upper and lower surfaces; note marginal stoma (a) on basiscopic margin of lateral leaf, upper surface F Upper surface of lateral leaf; note marginal stoma (a) on basiscopic margin and submarginal tooth (b) G Close-up of base and proximal portion of lateral leaf, upper surface; note marginal stoma (a) on basiscopic margin H Close-up of distal portion and apex of lateral leaf, upper surface; note submarginal tooth (b). A–H taken from the isotype, Oliveira 1094 (PMA).
Figure 6 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 6 - Selaginella neospringiana Valdespino. A Megaspore, proximal face B Close-up of megaspore, proximal face C Megaspore, distal face D Close-up of megaspore, distal face E Microspore, proximal face F Close-up of microspore, proximal face G Microspore, distal face H Close-up of microspore, distal face I Microspore, equatorial view. A–I taken from the isotype, Glaziou 11723 (PMA).
Figure 4 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 4 - Selaginella neospringiana Valdespino. A Section of upper surface of stem B Upper surface of median leaf C Close-up of base and proximal portion of median leaf, upper surface D Close-up of distal portion and apex of median leaf, upper surface E Section of lower surface of stem F Lower surface of lateral leaf; note marginal stoma (a) G Close-up of proximal portion and base of lateral leaf, lower surface; note marginal stoma (a) on basiscopic margin and on outer margin of median leaf (far, lower right) H Close-up of distal portion and apex of lateral leaf, lower surface; note marginal stoma (a). A–H taken from the isotype, Glaziou 11723 (PMA).
Figure 11 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 11 - Selaginella trygonoides Valdespino. A Section of upper surface of stem B Upper surface of median leaf; note submarginal stomata (a) on inner half of the lamina C Close-up of inner margin of median leaf, upper surface; note submarginal stomata (a) D Close-up of median leaf upper surface; note papillae on cell lumen E Upper surface of median leaf; note submarginal stomata on inner half of the lamina F Close-up of base, portion of inner margin and inner half of lamina (note stomata), and portion of outer margin and outer half of lamina of median leaf, upper surface G Upper surface of lateral leaf and portion of median leaves, upper surface H Close-up of distal portion and apex of lateral leaf, upper surface. A–H taken from the holotype, Almeida et al. 1994 (PMA).
Figure 3 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 3 - Selaginella nanuzae Valdespino. A Megaspore, proximal face B Close-up of megaspore, proximal face C Megaspore, distal face D Close-up of megaspore, distal face E Microspore, proximal face F Microspore, distal face. A–F taken from the holotype, Salino et al. 7788 (PMA).
Figure 2 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 2 - Selaginella nanuzae Valdespino. A Section of lower surface of stem B Lower surface of lateral leaf C Close-up of base and distal portion of lateral leaf, lower surface D Close-up of acroscopic half of lateral leaf near base, lower surface E Close-up of distal portion and apex of lateral leaf, lower surface F Close-up of portion of basiscopic margin of lateral leaf near apex, lower surface; note marginal stoma (a) G Upper surface of lateral leaf H Close-up of upper surface of lateral leaf. A–H taken from the holotype, Salino et al. 7788 (PMA).
Figure 1 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 1 - Selaginella nanuzae Valdespino. A Section of upper surface of stem B Upper surface of median leaf C Close-up of base and proximal portion of median leaf, upper surface; note marginal (a) and submarginal (b) stoma, and outer base tufted with long cilia (c) D Close-up of distal portion and apex of median leaf, upper surface E Section of upper surface of stem F Close-up of outer half of median leaf, upper surface G Close-up-of inner half of median leaf, upper surface H Lower surface of median leaf. A–H taken from the holotype, Salino et al. 7788 (PMA).
Figure 12 from: Valdespino IA (2015) Novelties in Selaginella (Selaginellaceae – Lycopodiophyta), with emphasis on Brazilian species. PhytoKeys 57: 93-133. https://doi.org/10.3897/phytokeys.57.6489
Figure 12 - Selaginella trygonoides Valdespino. A Section of lower surface of stem B Lower surface of lateral leaf C Close-up of base and proximal portion of lateral leaf, lower surface; note marginal stomata (a) D Close-up of distal portion and apex of lateral leaf, lower surface E Lower surface of axillary leaf and portions of lateral leaves F Upper surface of lateral leaf G Close-up of base and proximal portion of lateral leaf, upper surface H Close-up of distal portion and apex of lateral leaf, upper surface; note marginal stoma (a). A–H taken from the holotype, Almeida et al. 1994 (PMA).
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Allen Brain Atlas
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OpenNeuro
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