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1,925 results for “Platyhelminthes”
Fig. 2 in Schizorhynchia Meixner, 1928 (Platyhelminthes, Rhabdocoela) of the Iberian Peninsula, with a description of four new species from Portugal
Fig. 2. Copulatory organ of species of Proschizorhynchus Meixner, 1928. A. Proschizorhynchus algarvensis sp. nov., holotype (HU 615). B–C. P. arnautsae sp. nov. B. Holotype (HU 616). C. A specimen from the reference collection of Hasselt University (HU X.1.35). D–E. P. troglodytus sp. nov. D. Holotype (HU 617). E. A specimen from the reference collection of Hasselt University (HU X.1.40). F–G. P. pectinatus l'Hardy, 1965 (HU X.1.43). F. Copulatory organ. G. Sclerotised spermatic duct. H. P. reniformis Brunet, 1970 (HU X.1.45). Scale bars: A, F = 50 µm; B–E, G–H = 20 µm.
Figure 6 in First record of the family Pseudocerotidae (Platyhelminthes, Polycladida, Cotylea) from the Persian Gulf, Iran
Figure 6. Sagittal section of Tytthosoceros lizardensis: A male copulatory system B female copulatory system C pharynx: ma male antrum s stylet sv seminal vesicle p prostate fa female antrum fg female gonopore ce cement gland ph pharynx mo mouth.
Figure 3 in First record of the family Pseudocerotidae (Platyhelminthes, Polycladida, Cotylea) from the Persian Gulf, Iran
Figure 3. Ear-like pseudotentacle in Tytthosoceros lizardensis: te pseudotentacular eyes ce cerebral eyes.
Figure 7 in First record of the family Pseudocerotidae (Platyhelminthes, Polycladida, Cotylea) from the Persian Gulf, Iran
Figure 7. Sagittal reconstruction of Tytthosoceros lizardensis: ma male antrum mg male gonopore s stylet sv seminal vesicle p prostate fa female antrum fg female gonopore ce cement gland ph pharynx mo mouth
Figs 39–41. 39 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 39–41. 39. Dilepididae genus sp. Hooks. 40. Passerilepis sp. Hooks. 41. Cracticotaenia fieldingi (Maplestone & Southwell, 1923) Hooks. Scale bars: 39–41 = 20 µm.
Figs 23–28 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 23–28. Dictymetra longiuncinata sp. nov. 23. Scolex. 24. Hooks. 25. Mature proglottis. 26. Terminal genitalia. 27. Cirrus armament. 28. Eggs. Scale bars: 23 = 100 µm; 24, 26 = 50 µm; 25 = 200 µm; 27 = 10 µm; 28 = 20 µm.
Figs 7–11 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 7–11. Spiniglans beveridgei sp. nov. 7. Scolex. 8. Hooks. 9. Mature proglottis. 10. Terminal genitalia. 11. Pregravid proglottis with young reticular uterus. Scale bars: 7 = 100 µm; 8 = 20 µm; 9 = 200 µm; 10 = 50 µm; 11 = 500 µm.
Figs 1–6 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 1–6. Sobolevitaenia whittingtoni sp. nov. 1. Scolex. 2. Sucker armament. 3. Hooks. 4. Mature proglottis. 5. Terminal genitalia. 6. Egg. Scale bars: 1 = 100 µm; 2, 5 = 50 µm; 3, 6 = 20 µm; 4 = 250 µm.
Figs 34–38 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 34–38. Cracticotaenia adelaidae sp. nov. 34. Scolex. 35. Detail of hooks crowns. 36. Hooks: anterior (A) and posterior (B). 37. Mature proglottis. 38. Eggs. Scale bars: 34 = 100 µm; 35 = 10 µm; 19 = 500 µm; 36, 38 = 20 µm; 37 = 250 µm.
Figs 29–33 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 29–33. Notopentorchis musealis sp. nov. 29. Scolex. 30. Hooks: A, C. Anterior hooks, B. Posterior hook. 31. Mature proglottis. 32. Postmature proglottis. 33. Pregravid proglottis. Scale bars: 29, 31–33 = 100 µm; 30 = 20 µm.
Figs 12–16 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 12–16. Monopylidium australiense sp. nov. 12. Scolex. 13. Hooks. 14. Mature proglottis. 15. Terminal genitalia. 16. Eggs. Scale bars: 12, 14 = 100 µm; 13, 16 = 20 µm; 15 = 50 µm.
Figs 17–22 in Seven new species of cestode parasites (Neodermata, Platyhelminthes) from Australian birds
Figs 17–22. Dictymetra gerganae sp. nov. 17. Scolex. 18. Hooks. 19. Mature proglottis. 20. Terminal genitalia. 21. Terminal genitalia tuft. 22. Egg. Scale bars: 17 = 100 µm; 18, 20, 21 = 50 µm; 19 = 500 µm; 22 = 20 µm.
Fig. 5 in A new species of freshwater flatworm (Platyhelminthes, Tricladida, Dendrocoelidae) inhabiting a chemoautotrophic groundwater ecosystem in Romania
Fig. 5. Dendrocoelum obstinatum Stocchino & Sluys, sp. nov. A. Holotype (ZMA V.Pl. 7264.1), microphotograph of gregarine protozoans in a gut diverticulum. B. Specimen from the Movile Cave, microphotograph of a nematode infecting the bulb of the adenodactyl (ZMA V.Pl. 7265.2). C. Holotype, microphotograph of the mass of sperm inside the copulatory bursa with the rod-like structures. D. Specimen from the Limanu well, microphotograph of the mass of sperm inside the copulatory bursa, with a multilayered concentric organization of the circular structures (ZMA V.Pl. 7269.1).
Fig. 3 in A new species of freshwater flatworm (Platyhelminthes, Tricladida, Dendrocoelidae) inhabiting a chemoautotrophic groundwater ecosystem in Romania
Fig. 3. Dendrocoelum obstinatum Stocchino & Sluys, sp. nov., holotype (ZMA V.Pl. 7264.1). A. Sagittal reconstruction of the female copulatory apparatus (anterior to the left). B. Sagittal reconstruction of the male copulatory apparatus (anterior to the left). Only the terminal portions of the spermiducal vesicles are drawn. C. Sagittal reconstruction of the male copulatory apparatus with the cervix-like protrusion (anterior to the left).
Fig. 2 in A new species of freshwater flatworm (Platyhelminthes, Tricladida, Dendrocoelidae) inhabiting a chemoautotrophic groundwater ecosystem in Romania
Fig. 2. Dendrocoelum obstinatum Stocchino & Sluys, sp. nov. Sketch of the ventral view of a preserved (Bouin's fluid) specimen from Movile Cave.
Fig. 1 in A new species of freshwater flatworm (Platyhelminthes, Tricladida, Dendrocoelidae) inhabiting a chemoautotrophic groundwater ecosystem in Romania
Fig. 1. Geographic distribution of freshwater planarians of the genus Dendrocoelum recorded from Romania. ▲: unspecified locality of D. lacteum Müller, 1774. Rectangular inset (bottom) corresponds with enlarged area, showing the collection sites of D. obstinatum Stocchino & Sluys, sp. nov. indicated by blue stars (see also Table 1).
Figs 27–30 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 27–30. Raillietina mahnerti sp. nov. 27. a) Scolex. b) Sucker hooklets. c) Rostellar hook. 28. Mature proglottis, ventral view. 29. Copulatory organs. 30. Gravid proglottis with egg capsules. Scale bars: 27a, 28, 30 = 100 µm; 27b = 20 µm; 27c = 10 µm; 29 = 50 µm.
Figure 8 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 8. Obama maculipunctata sp. nov. in dorsal view. (A) Photograph of a live specimen (holotype MZUSP PL.1565). (B) Dorsal pattern of pigmentation of the holotype. (C) Eye pattern of a fixed specimen (paratype MZU PL.00197). (D) Photograph of monolobated eyes of a fixed specimen (paratype MZU PL.00197) in clove oil. (E) Photograph of trilobated eyes of a fixed specimen (paratype MZU PL.00197) in clove oil.
Figure 2 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 2. Cratera ochra sp. nov., holotype, in dorsal view. (A) Photograph of the live specimen. (B) Dorsal pattern of pigmentation of the preserved specimen.
Figure 1. Bayesian phylogenetic tree inferred from the 640 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 1. Bayesian phylogenetic tree inferred from the 640-bp of cytochrome c oxidase subunit I gene under GTR + I + G model of sequence evolution. The two new species are highlighted in light grey (Cratera ochra sp. nov.) and dark grey (Obama maculipunctata sp. nov.). Values indicate support for each node according to the maximum posterior probabilities>70% and bootstrap support values> 70%, respectively.
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International Brain Laboratory public data
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OpenNeuro
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