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1,104 results for “morphological variations”
Fig. 7 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 7. Scanning electron microscope images of type II microscales. A, B, Platphalonidia sp. C, Cochylis atricapitana, D, C. epilinana, E, C. bucera, F,Nycthia pimana. G, Neocochylis molliculana. H, Thyraylia nana. Scale bars: 10 µm (A–F); 2 µm (G–H).
Fig. 4 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 4. Photomicrographs of the right hindwing of Cochylina. A, Eupoecilia angustana. B, Parirazona sp. C, Aethes moribundana. D, Phalonidia contractana. E, Cochylis bucera, F, Lorita baccharivora. G, Diceratura infantana. H, Nycthia pimana. I, L. scarificata. J, Cochylidia heydeniana. Scale bars: 1 mm.
Fig. 2 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 2. Pontoturania posterana, scanning electron microscope images, left hindwing, upperside. A, general view of CR. B, distal portion of CR. C, base of hairpencil. D, distal part of hairpencil scale. E, same but basal part. F, edge of CR showing base of hairpencil. G, socket of scale of hairpencil. H, section of CR showing type I microscale. I, distal section of CR showing type II microscale and hairpencil inside. Scale bars: 50 µm (A–C); 20 µm (F, H–I); 2 µm (D–E, G). Abbreviations: hp, hairpencil; ir, internal ridge; ms1, microscale type I; ms2, microscale type II.
Fig. 5 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 5. Scanning electron microscope images of components of the CR and basal lobe of the hindwing. A, CR of Parirazona sp. B, CR of Eupoecilia angustana. C, elongate scales on CR of Cochylichroa atricapitana. D, dorsal view of flat distal part of CR in Cochylis bucera. E, section of CR in Cochylis bucera showing keel- like extension of the costal edge, microscales type II and hairpencil. F, G, internal vestiture of CR in Falseuncaria ruficiliana. H, basal lobe of E. angustana. I, basal lobe of Parirazona sp. Scale bars: 50 µm (A, H); 20 µm (C–D, I); 10 µm (B, E–F); 2 µm (G). Abbreviations: ce, costal edge; hp, hairpencil; ms2, microscale type II.
Fig. 1 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 1. Pontoturania posterana, right hindwing CR, upper side, general features. A, aspect under stereomicroscope. B, aspect through optical microscope. C, detail of CR, hairpencil andType I microscales. D, distal portion of CR with microscales type II. Scale bars: 1 mm (A–B); 200 µm (C–D).
Fig. 3 in The Male Hindwing Costal Roll in Cochylina (Lepidoptera: Tortricidae): Morphological Variation, Phylogenetic Distribution, and Relationship to Host Utilization
Fig. 3. Pontoturania posterana, scanning electron microscope, CR internal vestiture. A–D, type I microscales. E–F, type II microscales. Scale bars: 50 µm (A); 10 µm (B, E–F); 2 µm (C–D).
FIGURES 41–48 in Two new species of Scotinella Banks, 1911 (Araneae: Phrurolithidae) from Mexico, with a discussion on the female genitalic morphology and intraspecific variation
FIGURES 41–48. Scotinella poncei sp. nov. 41, 42. Male habitus, dorsal view; 43, 44. Same, ventral view (arrow points to postepigastric sclerotized strips); 45, 46. Female habitus, dorsal view; 47, 48, Same, ventral view. Scale bars 41–48: 0.50 mm.
FIGURES 27–40 in Two new species of Scotinella Banks, 1911 (Araneae: Phrurolithidae) from Mexico, with a discussion on the female genitalic morphology and intraspecific variation
FIGURES 27–40. Scotinella garman sp. nov. 27. Female carapace, dorsal view; 28. Same, lateral view (arrow points to cheliceral bristles); 29. Same, anterior view; 30. Epigyne, ventral view (arrow points to mating plug); 31. Same, dorsal view; 32. Detail of secondary spermathecae, dorsal view; 33. Female tibia I, lateral view; 34. Detail of macrosetae of female tibia I, lateral view; 35. Female palp, lateral view; 36. Female femur I, dorsal view; 37. Detail of modified setae of female femur I, dorsal view; 38. Female palpal claw (arrow), anterior view; 39. Female trichobothrium of tarsus I, dorsal view; 40. Female tarsal organ of leg I, dorsal view. Scale bars 27–29: 0.25 mm; 30–31: 0.10 mm; 32: 0.05 mm. Abbreviations: CD—copulatory ducts, CO— copulatory openings, FD—fertilization ducts, in—indentation, S1—primary spermathecae, S2—secondary spermathecae.
FIGURES 16–26 in Two new species of Scotinella Banks, 1911 (Araneae: Phrurolithidae) from Mexico, with a discussion on the female genitalic morphology and intraspecific variation
FIGURES 16–26. Scotinella garman sp. nov. 16. Male palp, prolateral view; 17. Same, ventral view (asterisk points to a sclerotized portion of tegulum; arrow points to the basal bump of dRTA); 18. Same, retrolateral view; 19. Same, dorsal view; 20. Detail of palpal bulb, ventral view (arrow points to the embolar carina); 21. Detail of embolus, ventral view (arrow points to a small patch of modified setae); 22. Same, retrolateral view (arrow points to the embolar carina; asterisk points to a sclerotized portion of tegulum); 23. Palpal femur, prolateral view; 24. Same, ventral view (arrow points to femoral groove); 25. Same, retrolateral view; 26. Detail of femoral apophysis, retrolateral view. Scale bars 16–19, 23–25: 0.10 mm; 20–22, 26: 0.05 mm. Abbreviations: C—conductor, Cb—cymbium, E—embolus, Eb—embolic base, FA—femoral apophysis, dRTA—dorsal branch of RTA, vRTA—ventral branch of RTA, T—tegulum, vpb—ventral-prolateral bulge.
FIGURES 9–15 in Two new species of Scotinella Banks, 1911 (Araneae: Phrurolithidae) from Mexico, with a discussion on the female genitalic morphology and intraspecific variation
FIGURES 9–15. Scotinella garman sp. nov. 9. Male palp, prolateral view; 10. Same, ventral view (asterisk points to a sclerotized portion of tegulum; arrow points to the basal bump of dRTA); 11. Same, retrolateral view; 12. Same, dorsal view; 13. Uncleared epigyne, ventral view; 14. Cleared epigyne, ventral view; 15. Same, dorsal view. Scale bars 9–15: 0.10 mm. Abbreviations: Cb—cymbium, CD—copulatory ducts, CO—copulatory openings, E—embolus, FD—fertilization ducts, dRTA—dorsal branch of RTA, vRTA—ventral branch of RTA, S1—primary spermathecae, S2—secondary spermathecae, T—tegulum, vpb—ventralprolateral bulge.
FIGURES 1–8 in Two new species of Scotinella Banks, 1911 (Araneae: Phrurolithidae) from Mexico, with a discussion on the female genitalic morphology and intraspecific variation
FIGURES 1–8. Scotinella garman sp. nov. 1, 2. Male habitus, dorsal view; 3, 4. Same, ventral view (arrow points to postepigastric sclerotized strips); 5, 6. Female habitus, dorsal view; 7, 8. Same, ventral view. Scale bars 1–8: 0.50 mm.
Quantitative Evaluation of the Breast's Morphological Variations During Radiotherapy: MorphoBreast3D
ClinicalTrials.gov study NCT03801850. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Variation In Facial Morphology As A Determinant Of Face Covering Performance: FACEFIT
ClinicalTrials.gov study NCT05388201. IPD Sharing: YES. Countries: 1. Publications: 1.
Data from: Biogeographic variation in skull morphology across the Kra Isthmus in dusky leaf monkeys
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Data from: Naturally occurring variation in tadpole morphology and performance linked to predator regime
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Data from: Mitochondrial and morphological variation of Tilapia zillii in Israel
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Data from: Molecular phylogeny of Terniopsis (Podostemaceae) and contrasting molecular and morphological variations in two species
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The spatial analysis of biological interactions: morphological variation responding to the co-occurrence of competitors and resources
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Data from: Morphological variation pattern of Aquilegia ecalcarata and its relatives
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Data from: Genetic, morphological and ecological variation across a sharp hybrid zone between two alpine butterflies species
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Allen Brain Atlas
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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.