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FIG. 12 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 12. — Setulation of the medial spine and ornamentation of the frontal surface of P1 basipodite, female; A, Cyclops abyssorum Sars, 1863 (Norway, Lønavatn); B, C. kolensis Lilljeborg, 1901 (Poland, L. Wigry); C, C. furcifer Claus, 1857 (Germany, Baden); D, C. alaskaensis Lindberg, 1956 (Alaska). Scale bar: 50 µm.
FIG. 5 in New diagnostic microcharacters of the cephalothoracic appendages in Cyclops O. F. Müller, 1776 (Crustacea, Copepoda, Cyclopoida)
FIG. 5. — Spinule ornamentation on the caudal surface of the antennal coxobasis, female; A, B, Cyclops heberti Einsle, 1996; A, Germany, Oldenburg; B, Germany (paratype); C, D, C. scutifer Sars, 1863; C, Norway, Maridalsvann; D, Norway, Lønavatn; E, F, C. insignis Claus, 1857 (Norway, Frognertjern); G, C. columbianus Lindberg, 1956 (Alaska, Karluk lake[?]). Scale bar: 50 µm.
FIG. 2 in Le poisson-cyclope d'Alexandre Neckam (De naturis rerum II, 24): entre vérité zoologique et réminiscences virgiliennes
FIG. 2. — Baleine beluga - Delphinapterus leucas (Pallas, 1776).
FIG. 1 in Le poisson-cyclope d'Alexandre Neckam (De naturis rerum II, 24): entre vérité zoologique et réminiscences virgiliennes
FIG. 1. — Phoque à capuchon - Cystophora cristata (Erxleben, 1777).
On following pages: 5. Greater Leaf-nosed Bat (Doryrhina camerunensis}; 6.Telefomin Leaf-nosed Bat (Doryrhina corynophyllus); 7. Cyclops Leaf-nosed Bat (Doryrhina cyclops); 8. Hill's Leaf-nosed Bat (Doryrhina edwardshillil; 9. Fly River Leaf-nosed Bat {Doryrhina muscinus); 10. Semon's Leaf-nosed Bat [Doryrhina semoni); 11. Northern Leaf-nosed Bat [Doryrhina stenotis}; 12. Wollaston's Leaf-nosed Bat (Doryrhina wollastom); 13. Commerson's Leaf-nosed Bat (Macronycteris commersoniii; 14. Madagascar Cryptic Leaf-nosed Bat (Macronycteris cryptovalorona); 15. Giant Leaf-nosed Bat (Macronycteris gigas); 16. SaoTome Leaf-nosed Bat (Macronycteris thomensis}; 17. Striped Leafnosed Bat (Macronycteris vittatus); 18. Dong BacTrident Bat (Aselliscus dongbacanus); 19. Stoliczka's Trident Bat (Aselliscus stoliczkanusY, 20. Temminck's Trident Bat (Aselliscus tricuspidatus); 21. East Asian Tailless Leaf-nosed Bat (Coelops frithii); 22. Malayan Tailless Leaf-nosed Bat (Coelops robinsoni); 23. Solomons Leaf-nosed Bat (Anthops ornatus}. in Hipposideridae
On following pages: 5. Greater Leaf-nosed Bat (Doryrhina camerunensis}; 6.Telefomin Leaf-nosed Bat (Doryrhina corynophyllus); 7. Cyclops Leaf-nosed Bat (Doryrhina cyclops); 8. Hill's Leaf-nosed Bat (Doryrhina edwardshillil; 9. Fly River Leaf-nosed Bat {Doryrhina muscinus); 10. Semon's Leaf-nosed Bat [Doryrhina semoni); 11. Northern Leaf-nosed Bat [Doryrhina stenotis}; 12. Wollaston's Leaf-nosed Bat (Doryrhina wollastom); 13. Commerson's Leaf-nosed Bat (Macronycteris commersoniii; 14. Madagascar Cryptic Leaf-nosed Bat (Macronycteris cryptovalorona); 15. Giant Leaf-nosed Bat (Macronycteris gigas); 16. SaoTome Leaf-nosed Bat (Macronycteris thomensis}; 17. Striped Leafnosed Bat (Macronycteris vittatus); 18. Dong BacTrident Bat (Aselliscus dongbacanus); 19. Stoliczka's Trident Bat (Aselliscus stoliczkanusY, 20. Temminck's Trident Bat (Aselliscus tricuspidatus); 21. East Asian Tailless Leaf-nosed Bat (Coelops frithii); 22. Malayan Tailless Leaf-nosed Bat (Coelops robinsoni); 23. Solomons Leaf-nosed Bat (Anthops ornatus}.
FIGURE 1. Ampelisca cyclops Walker, 1904 in Ampelisca Krøyer, 1842 (Amphipoda: Ampeliscidae) in the Persian Gulf and the Gulf of Oman
FIGURE 1. Ampelisca cyclops Walker, 1904, female, 14.6 mm (INIOC2–101S), Gulf of Oman, Iran. Scale bars: a = 1 mm, b = 0.5 mm.
FIGURE 4 in A new annelid species from whalebones in Greenland and aquaculture sites in Newfoundland: Ophryotrocha cyclops, sp. nov. (Eunicida: Dorvilleidae)
FIGURE 4. Haplotype network from TCS using fifteen COI sequences from the new species, Ophryotrocha cyclops, resulting in twelve haplotypes. Light grey: specimens from the Greenland site; white: specimens from Newfoundland sites A and B; dark grey: specimens from Newfoundland site C.
FIGURE 3 in A new annelid species from whalebones in Greenland and aquaculture sites in Newfoundland: Ophryotrocha cyclops, sp. nov. (Eunicida: Dorvilleidae)
FIGURE 3. Majority rule consensus tree from the Bayesian phylogenetic analyses of a combined dataset with three genes; 16S, COI and H3. Posterior probability values provided at nodes, with asterisks showing mean support values of 95 or higher.
FIGURE 1 in A new annelid species from whalebones in Greenland and aquaculture sites in Newfoundland: Ophryotrocha cyclops, sp. nov. (Eunicida: Dorvilleidae)
FIGURE 1. Ophryotrocha cyclops, sp. nov. (A) Dorsal and (B) ventral view of a whole individual, after preservation in ethanol. (C) Dorsal view of a live specimen, showing light-reflecting, central quasi-fused eye spots (white arrow) and triangular parapodial lobe (black arrow). (D) SEM, K type jaws. (E) SEM, P-type jaws. (F) SEM, P-type maxillae. Scale bars: (A) 1 mm, (C) 500 µm, (B) 1 mm scale interval units, (D) and (E) 200 µm, (F) 50 µm.
FIGURE 2 in A new annelid species from whalebones in Greenland and aquaculture sites in Newfoundland: Ophryotrocha cyclops, sp. nov. (Eunicida: Dorvilleidae)
FIGURE 2. Ophryotrocha cyclops, sp. nov. (A) Light micrograph of parapodium, (B to D) SEM of chaetae. Scale bars: (A) 100 µm, (B) 50 µm, (C) 20 µm, and (D) 100 µm.
FIGURE 1 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 1: St. Marys River C. sibiricus female (a) A1 17-segmented (b) A1 first segment without surface pits (c) A1 segment 12 with medium length aesthetasc arrowed (d) A1 segments 15−17 with hyaline membrane arrowed.
FIGURE 4 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 4: Lake Erie C. divergens female (a) A2 basipodite caudal surface ornamentation at position A, B, C (b) Mxp syncoxopodite with short distally hooked membranous element arrowed (c) P1 basipodite ornamented with row of spinules arrowed and medial spine with heteronomous setulation arrowed (d) P4 coxopodite ornamentation with spinules at positions A, C, D, and E (e) P4 coxopodite setae arrowed, extending beyond medial margin of basipodite
FIGURE 3 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 3: Lake Erie C. divergens female (a) A1 17-segmented (b) A1 first segment with dense pitting arrowed (c) A1 segment 12 with medium length aesthetasc arrowed (d) A1 segments 15−17 with hyaline membrane arrowed.
FIGURE 2 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 2: St. Marys River C. sibiricus female (a) A2 basipodite caudal surface ornamentation at position A, B, C (b) Mxl palp proximalmost seta without long setules and surface bear (c) Mxp syncoxopodite with long distally clubbed membranous element arrowed (d) P1 basipodite ornamented with row of spinules arrowed and medial spine with bare proximal margin arrowed (e) P4 coxopodite ornamented with spinules at positions A, B, C, D, and E (f) P4 coxopodite setae arrowed, not extending beyond medial margin of basipodite.
FIGURE 6 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 6: Known occurrences of Cyclops species within the Laurentian Great Lakes basin with C. divergens displayed as black triangles, C. sibiricus as black squares, unconfirmed reports of C. strenuus which likely refer to C. sibiricus as white squares, and C. scutifer as black circles.
FIGURE 5 in Reevaluation of the genus Cyclops Müller, 1776 (Cyclopoida: Cyclopidae) in the Laurentian Great Lakes basin: first report of the Palearctic species Cyclops divergens Lindberg, 1936 from Lake Erie and documentation of Cyclops sibiricus Lindberg, 1949 in the St. Marys River
FIGURE 5: Lake Erie C. divergens male (a) A1 geniculate (b) Mxl palp proximalmost seta ornamented with long setules (arrowed) and large spinules on surface arrowed (c) P4 coupler ornamented with horizontal row of long hairs (arrowed).
cyclop stairs Prague castle
Beautiful stairs hidden at Prague castle Source: Objaverse 1.0 / Sketchfab
Fig. 3 in Seed dispersal effectiveness: A comparison of four bird species feeding on seeds of invasive Acacia cyclops in South Africa
Fig. 3. Geographic distribution (i.e. green colour) of the studied bird species in Southern Africa, namely, the frugivorous (a) Knysna turaco Tauraco corythaix, and (b) the red-winged starling Onychognathus morio, (c) the granivorous red-eyed dove Streptopelia semitorquata, and (d) the laughing dove S.senegalensis (SABAP 2 http://www.adu.org.za/ accessed 23 June 2015).
Fig. 2 in Seed dispersal effectiveness: A comparison of four bird species feeding on seeds of invasive Acacia cyclops in South Africa
Fig. 2. Seed dispersal effectiveness (i.e. a product of germination rates (quality) and average adult body mass as proxy for seed load (quantity) for different bird species that ingested seeds of Acacia cyclops: the frugivorous Knysna turaco Tauraco corythaix, and the red-winged starling Onychognathus morio, the granivorous red-eyed dove Streptopelia semitorquata, and the laughing dove S. senegalensis. Different letters above the bars show statistically significant difference. Error bars show standard error of mean.
Fig. 1 in Seed dispersal effectiveness: A comparison of four bird species feeding on seeds of invasive Acacia cyclops in South Africa
Fig. 1. Seed dispersal quality (i.e. mean germination rates % ± SE) for untreated (experimental control) and gut-passed Acacia cyclops seeds through different bird species:the frugivorous Knysna turaco Tauraco corythaix, and the red-winged starling Onychognathus morio, the granivorous red-eyed dove Streptopelia semitorquata, and the laughing dove S. senegalensis. Different letters above the bars show statistically significant difference. Error bars show standard error of mean.
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