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148 results for “Cestode”
Fig. 2. A in Review of tapeworms of rodents in the Republic of Buryatia, with emphasis on anoplocephalid cestodes
Fig. 2. A neighbour-joining reconstruction of partial cytochrome oxidase I (mtDNA) sequences of Paranoplocephala spp., Andrya rhopalocephala and Neandrya cuniculi from lagomorphs were used as an outgroup. The labels show the GenBank number for each sequence. Values at nodes show the percentage from 10000 bootstrap replicates.
Fig. 1 in Review of tapeworms of rodents in the Republic of Buryatia, with emphasis on anoplocephalid cestodes
Fig. 1. Study sites in Buryatia. 1-6, Kamensk, Pasolskaya, Ganzurinov, Nizhnaya Ivolga, Verhnaya Berezovka, Utochkina Pad; 7, Maloje Kolesova; 8-10, Barguzin River, Shapen'kovo, Nesteriha; 11-13, Muhorshibir, Sharaldai, Zabaikalsk; 14, Tseremushki.
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.
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.
Fig. 4. A in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 4. A maximum-likelihood phylogenetic tree of the genus Hymenolepis. The tree was made with sequences of mitochondrial cox1 (456 nucleotide sites) under the substitutional model GTR+G+I. The isolates of this study (18AK285, 19AK270, H22B, JA173, JA175, JA220, and JA244) are shown in bold face. The DNA accession number of each taxon is shown in parenthesis. Rodentolepis nana (accession no. LC063187) was used as an outgroup taxon.
Fig. 8. A in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 8. A maximum-likelihood phylogenetic tree of the genus Catenotaenia. The tree was made with 28S rDNA sequences (1208 nucleotide sites) under the substitutional model GTR+G. The isolates of this study (AMU, JA212, and JA317) are shown in bold face. The DNA accession number of each taxon is shown in parenthesis. Hymenolepis diminuta (accession no. AY157181) was used as an outgroup taxon.
Fig. 3 in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 3. Adult tapeworms of Hymenolepis sp. 1, Arostrilepis tenuicirrosa, and Microsomacanthus sp. A, Scolex of Hymenolepis sp. 1; B, mature proglottids of Hymenolepis sp. 1; C, scolex of A. tenuicirrosa; D, mature proglottid of A. tenuicirrosa; E, gravid proglottid of A. tenuicirrosa; F, whole body of Microsomacanthus sp.; G, scolex of Microsomacanthus sp.; H, mature proglottids of Microsomacanthus sp. Scale bars: A, C, G, 200 µm; B, D, 500 µm; E, 1 mm; F, 2 mm; G, 100 µm.
Fig. 6 in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 6. Adult tapeworms of Paranoplocephala kalelai, Catenotaenia sp., and Raillietina sp. A, Scolex of P. kalelai; B, mature proglottid of P. kalelai; C, gravid proglottid of P. kalelai; D, scolex of Catenotaenia sp.; E, mature proglottid Catenotaenia sp.; F, gravid proglottids of Catenotaenia sp.; G, scolex of Raillietina sp.; H, mature proglottids of Raillietina sp. Scale bars: A–C, E, H, 500 µm; D, G, 200 µm; F, 1 mm.
Fig. 5. A in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 5. A maximum-likelihood phylogenetic tree of the genus Arostrilepis. The tree was made with sequences of mitochondrial cytb (558 nucleotide sites) under the substitutional model GTR+G+I. The isolates of this study (19AK170, 19AK439, 19AK454, and 19AK459) are shown in bold face. The DNA accession number of each taxon is shown in parenthesis. Hymenolepis diminuta (accession no. AF314223) was used as an outgroup taxon.
Fig. 2. A in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 2. A maximum likelihood phylogenetic tree of the families Hymenolepididae, Anoplocephalidae, Catenotaeniidae, and Davaineidae. The tree was made with sequences of 28S rDNA (1137 nucleotide sites) under the substitutional model GTR+G. The isolates of this study (19AK270, JA175, 19AK170, JA313, 19AK378, AMU, and Para33SI) are shown in bold face. The DNA accession number of each taxon is shown in parenthesis. Bootstrap percentages are shown on each node. Scale bar indicates the number of substitutions per nucleotide site. Dibothriocephalus nihonkaiensis (accession no. LC474508) was used as an outgroup taxon.
Fig. 1 in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 1. Maps of the Japanese Archipelago and Hokkaido. Arrows indicate the southward and northward movements of terrestrial mammals in the Pleistocene glacial epoch. Rodent sampling sites are shown as open circles.
Fig. 2 in A New Genus And Species Of Cestodes (Cyclophyllidea, Gryporhynchidae) From Ciconiiform Birds
Fig. 2. Proparadilepis plegadissaakovae gen. et sp. n. Holotype: 1— scolex; 2 — rostellar hooks; 3 — egg; 4 — hermaphrodyte proglottid; 5 — gravid proglottid. Scale bars 1, 4, 5 — 100 µm; 2, 3 — 50 µm.
Fig. 1 in A New Genus And Species Of Cestodes (Cyclophyllidea, Gryporhynchidae) From Ciconiiform Birds
Fig. 1. Proparadilepis plegadissaakovae gen. et sp. n. Holotype, general view of cestoda. Scale bar 1 cm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.