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148 results for “Cestode”
FIGURE 3 in The cestode order Rhinebothriidea no longer family-less: A molecular phylogenetic investigation with erection of two new families and description of eight new species of Anthocephalum
FIGURE 3. Scanning electron micrographs of Anthocephalum decrisantisorum n. sp. and Anthocephalum healyae n. sp. A. A. decrisantisorum n. sp., scolex. Letters indicate locations of Figures 3C–D. B. A. decrisantisorum n. sp., marginal loculi. Letter indicates location of Figure 3C. C. A. decrisantisorum n. sp., proximal surface of marginal loculus near bothridial rim. D. A. decrisantisorum n. sp., proximal surface of bothridium. E. A. decrisantisorum n. sp., distal surface of bothridium. F. A. healyae n. sp., scolex. Letters indicate locations of Figures 3H–J. B. G. A. healyae n. sp., marginal loculi. Letter indicates location of Figure 3H. H. A. healyae n. sp., proximal surface of marginal loculus near bothridial rim. I. A. healyae n. sp., proximal surface of bothridium. J. A. healyae n. sp., distal surface of bothridium.
FIGURE 5 in The cestode order Rhinebothriidea no longer family-less: A molecular phylogenetic investigation with erection of two new families and description of eight new species of Anthocephalum
FIGURE 5. Scanning electron micrographs of Anthocephalum jensenae n. sp. and Anthocephalum mattisi n. sp. A. A. jensenae n. sp., scolex. Letters indicate locations of Figures 5D–E. B. A. jensenae n. sp., marginal loculi. Letter indicates location of Figure 5C. C. A. jensenae n. sp., proximal surface of marginal loculus near bothridial rim. D. A. jensenae n. sp., proximal surface of bothridium. E. A. jensenae n. sp., distal surface of bothridium. F. A. mattisi n. sp., scolex. Letters indicate locations of Figures 5H–J. G. A. mattisi n. sp., marginal loculi. Letter indicates location of Figure 5H. H. A. mattisi n. sp., proximal surface of marginal loculus near bothridial rim. I. A. mattisi n. sp., proximal surface of bothridium. J. A. mattisi n. sp., distal surface of bothridium.
FIGURE 4 in The cestode order Rhinebothriidea no longer family-less: A molecular phylogenetic investigation with erection of two new families and description of eight new species of Anthocephalum
FIGURE 4. Scolex and proglottid line drawings of Anthocephalum jensenae n. sp. and Anthocephalum mattisi n. sp. A. A. jensenae n. sp., scolex of paratype (LRP 8532). B. A. jensenae n. sp., proglottid of holotype (QM G234603). C. A. mattisi n. sp., scolex of paratype (LRP 8535). D. A. mattisi n. sp., proglottid of holotype (MNHN HEL433).
FIGURE 2 in The cestode order Rhinebothriidea no longer family-less: A molecular phylogenetic investigation with erection of two new families and description of eight new species of Anthocephalum
FIGURE 2. Scolex and proglottid line drawings of Anthocephalum decrisantisorum n. sp. and Anthocephalum healyae n. sp. A. A. decrisantisorum n. sp., scolex of paratype (LRP 8524). B. A. decrisantisorum n. sp., proglottid of holotype (MZUM[P] 2014.3[H]). C. A. healyae n. sp., scolex of paratype (QM G234601). D. A. healyae n. sp., proglottid of holotype (QM G234600).
FIGURE 1 in The cestode order Rhinebothriidea no longer family-less: A molecular phylogenetic investigation with erection of two new families and description of eight new species of Anthocephalum
FIGURE 1. Line drawings of Anthocephalum n. spp. A. Anthocephalum decrisantisorum n. sp., paratype (LRP 8523). B. Anthocephalum healyae n. sp., holotype (QM G234600), not all anterior proglottids shown. C. Anthocephalum jensenae n. sp., holotype (QM G234603). D. Anthocephalum mattisi n. sp., holotype (MNHN HEL433). E. Anthocephalum meadowsi n. sp., holotype (QM G234607). F. Anthocephalum odonnellae n. sp., holotype (MZUM[P] 2014.5[H]). G. Anthocephalum papefayei n. sp., paratype (LRP 8549). H. Anthocephalum philruschi n. sp., (LRP 8555). For comparative purposes, all drawings are at same scale.
Survival of workers and queens of the ant Temnothorax nylanderi depending on infection with the cestode Anomotaenia brevis
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Data from: Geographic and host-mediated population genetic structure in a cestode parasite of the three-spined stickleback
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FIGURE 4 in A new genus and two new species of unarmed hymenolepidid cestodes (Cestoda Hymenolepididae) from geomyid rodents in Mexico and Costa Rica
FIGURE 4. Line drawing of last mature proglottid of Hobergia irazuensis n. gen., n. sp.
FIGURE 7 in A new genus and two new species of unarmed hymenolepidid cestodes (Cestoda Hymenolepididae) from geomyid rodents in Mexico and Costa Rica
FIGURE 7. Scolex of Hymenolepis cratogeomyos n. sp. showing relatively large apical organ sac.
Figs 1–3 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 1–3. Emberizotaenia aeschlii sp. nov. 1. Scolex. 2. Mature proglottis, ventral view. 3. Cirrus-sac. Scale bars: 1 = 100 µm; 2 = 250 µm; 3 = 20 µm.
Figs 22–26 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 22–26. Raillietina hymenolepidoides sp. nov. 22. a) Complete rostellar crown. b) Hooklets of sucker. c) Apical tegument with spiniform microtriches. 23. Rostellar hooks. 24. Sketch of male proglottides showing relative position of testes. 25. Early pregravid proglottis, dorsal view. 26. Gravid proglottides with developed capsules. Scale bars: 22 = 20 µm; 23 = 10 µm; 24, 26 = 100 µm; 25 = 50 µm.
Figs 14–21 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 14–21. Biuterina jensenae sp. nov. 14. Scolex. 15. Rostellar hooks (I: anterior; II: posterior; a: from holotype; b: from Tricholestes criniger (Blyth, 1845)). 16. Cirrus-sac. 17. Mature proglottis, dorsal view. 18–20. Various stages of paruterine organ development. 21. Egg. Scale bars: 14, 17–19 = 100 µm; 15 = 10 µm; 16 = 50 µm; 20 = 250 µm; 21 = 20 µm.
Figs 8–13 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 8–13. Anonchotaenia kornyushini sp. nov. 8. Scolex. 9. Mature proglottis. 10. Cirrus-sac, dorsal view. 11–13. Various stages of uterine and paruterine organ development. Scale bars: 8–9 = 100 µm; 10 = 50 µm; 11–13 = 250 µm.
Figs 31–35. — 31–32 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 31–35. — 31–32. Ophryocotlyoides dasi Tandan & Singh, 1964. 31. Scolex with double crown of hooks, spinuous pseudoproboscis and armed suckers margins. 32. Mature proglottis, ventral view. — 33–35. Variolepis cf. bilharzii (Krabbe, 1869). 33. Scolex. 34. Rostellar hooks. 35. Mature proglottis. Scale bars: 31, 33 = 50 µm; 32 = 250 µm; 34 = 20 µm; 35 = 100 µm.
Figs 4–7 in Cestode parasites (Neodermata, Platyhelminthes) from Malaysian birds, with description of five new species
Figs 4–7. Sobolevitaenia anthusi (Spasskaya, 1958). 4. Scolex. 5. Sucker spines. 6. Rostellar hooks (I: anterior, II posterior). 7. Mature proglottis, ventral view. Scale bars: 4 = 50 µm; 5–6 = 20 µm; 7 = 200 µm.
Fig. 9 in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 9. Larvae of the family Taeniidae. A, The proliferated cysticerci of Taenia crassiceps in the subcutaneous tissue of Myodes rufocanus; B, the strobilocercus of Hydatigera taeniaeformis from the liver of Rattus norvegicus; C, the disseminated alveolar hydatid of Echinococcus multilocularis in peritoneal organs of My. rufocanus. Scale bars: 20 mm.
Fig. 7. A in Cestode fauna of murid and cricetid rodents in Hokkaido, Japan, with assignment of DNA barcodes
Fig. 7. A maximum-likelihood phylogenetic tree of the genus Paranoplocephala. The tree was made with mitochondrial cox1 sequences (546 nucleotide sites) under the substitutional model GTR+G+I. The isolates of this study (19AK378, 19AK412, 19AK419, 19AK436, 19AK454-2, and 19AK454-3) 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.
Figure 2 from: Alves PV, de Chambrier A, Scholz T, Luque JL (2017) Annotated checklist of fish cestodes from South America. ZooKeys 650: 1-205. https://doi.org/10.3897/zookeys.650.10982
Figure 2 - Proportion of articles on the fish cestodes from South America published per intervals of years sorted by categories. The numerals above individual bars indicate the absolute number of articles.
Figure 1 from: Alves PV, de Chambrier A, Scholz T, Luque JL (2017) Annotated checklist of fish cestodes from South America. ZooKeys 650: 1-205. https://doi.org/10.3897/zookeys.650.10982
Figure 1 - The geographical distribution of tapeworms in South America associated with their fish hosts from the major marine ecoregions of Spalding et al. (2007) and river basins in the continent. Each species may occur in more than one basin or ecoregion.
FIGURE 6 A–F in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 6 A–F. Notopentorchis javanica (Hübscher, 1937) from Hemiprocne longipennis (Rafinesque), Indonesia. A. Scolex. B. Anterior rostellar hook. C. Posterior rostellar hook. D. Mature proglottis, dorsal view. E. Genital ducts in mature proglottis, dorsal view. F. Gravid proglottis, dorsal view. Scale-bars: A, D, F, 100 µm; B, C, 20 µm; E, 50 µm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
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