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78 results for “Taenia”
Fig. 3 in A novel intermediate host for Taenia serialis (Gervais, 1847): The European roe deer (Capreolus capreolus L. 1758) from the Monti Sibillini National Park (MSNP), Italy
Fig. 3. Phylogenetic relationships between two species of Taenia (T. serialis and T. multiceps) and the sample obtained for this study (sample from roe deer).
Fig. 1. Microscope view 100 in A novel intermediate host for Taenia serialis (Gervais, 1847): The European roe deer (Capreolus capreolus L. 1758) from the Monti Sibillini National Park (MSNP), Italy
Fig. 1. Microscope view 100 magnifications of the scolex collected from one of the cysts recovered in a wild European roe deer.
Fig. 2 in A novel intermediate host for Taenia serialis (Gervais, 1847): The European roe deer (Capreolus capreolus L. 1758) from the Monti Sibillini National Park (MSNP), Italy
Fig. 2. Note the meningeal vessels' congestion and the suppurative exudate covering the meningeal surface.
Text-fig. 2. Dorsal view of endocranium of a 31 mm sand lizard (Lacerta agilis). Derivatives of the teniform cartilages blue. cp: cartilago parietectalis (cartilago tecti nasi); cs: sphenethmoidal commissure; tm: taenia marginalis. (Modified from Gaupp 1900.) in Cartilago Teniformis And Its Derivatives: Additional Information On The Basic Composition And Evolution Of The Skull
Text-fig. 2. Dorsal view of endocranium of a 31 mm sand lizard (Lacerta agilis). Derivatives of the teniform cartilages blue. cp: cartilago parietectalis (cartilago tecti nasi); cs: sphenethmoidal commissure; tm: taenia marginalis. (Modified from Gaupp 1900.)
Fig. 3 in Severe coenurosis caused by larvae of Taenia serialis in an olive baboon (Papio anubis) in Benin
Fig. 3. Detail of a protoscolex extracted from a cyst.
Fig. 2 in The morphological and molecular identification of the tapeworm, Taenia lynciscapreoli, in intermediate and definitive hosts in Poland
Fig. 2. Measurement scheme used to measure rostellar hooks.
Fig. 4 in Identification and phylogenetic analysis of Taenia spp. parasites found in wildlife in the Emilia-Romagna region, northern Italy (2017-2022)
Fig. 4. Percentage of isolation of different Taenia species.
Fig. 3 in Identification and phylogenetic analysis of Taenia spp. parasites found in wildlife in the Emilia-Romagna region, northern Italy (2017-2022)
Fig. 3. Distribution of wildlife species in which each Taenia spp. were detected.
Fig. 2 in Identification and phylogenetic analysis of Taenia spp. parasites found in wildlife in the Emilia-Romagna region, northern Italy (2017-2022)
Fig. 2. – Distribution of different Taenia species in each host species considered.
Fig. 1 in Taenia lynciscapreoli in semi-domesticated reindeer (Rangifer tarandus tarandus, L.) in Sweden
Fig. 1. Taenia lynciscapreoli. Photo Anton de Jong, SVA.
FIGURES 12–14. Taenia talicei Dollfus, 1960. Metacestodes. 12. Polycephalic fimbriocercus. 13. Fimbriocercus. 14 in An endemic Taenia from South America: validation of T. tali c ei Dollfus, 1960 (Cestoda: Taeniidae) with characterization of metacestodes and adults
FIGURES 12–14. Taenia talicei Dollfus, 1960. Metacestodes. 12. Polycephalic fimbriocercus. 13. Fimbriocercus. 14. Cysticercus. Scale bar: 0.5 cm.
FIGURES 1–11. Taenia talicei Dollfus, 1960. 1–8. Adult form. 1 in An endemic Taenia from South America: validation of T. tali c ei Dollfus, 1960 (Cestoda: Taeniidae) with characterization of metacestodes and adults
FIGURES 1–11. Taenia talicei Dollfus, 1960. 1–8. Adult form. 1. Scolex (ventral view). 2. Scolex (apical view). 3–4. Rostellar hooks. 3. Large hooks. 4. Small hooks. 5. Mature segment. 6. Cirrus pouch and vagina. 7. Transverse section of mature segment. 8. Gravid proglottid. 9–11. Metacetodes. 9. Cysticercus. 10. Fimbriocercus. 11. Polycephalic forms. Scale bars in mm: 1, 0.5; 2, 0.3; 3–4, 0.05; 6, 0.25; 7, 1; 5 and 8–11, 2.
FIGURE 47. Cichlasoma taenia, ROM 88783, 104.6 in Annotated list and key to the stream fishes of Trinidad & Tobago
FIGURE 47. Cichlasoma taenia, ROM 88783, 104.6 mm SL, drainage canal at approximately 10.459°N 61.074°W, Trinidad.
Fig. 1. a in First report of pulmonary cysticercosis caused by Taenia crassiceps in a Cape fur seal (Arctocephalus pusillus)
Fig. 1. a) Large mass in the right thoracic wall. b) Protoscolex in the lung showing rostellar hooks. A mild chronic inflammation is obvious in the surrounding lung tissue.
Fig. 2. a in First report of pulmonary cysticercosis caused by Taenia crassiceps in a Cape fur seal (Arctocephalus pusillus)
Fig. 2. a) Cysticercus longicollis scolex with rostellar hooks and four suckers. b) Apical rostellum with two circular rows. c) Exogenous budding of Cysticercus longicollis in the subcutis of a Diana monkey.
Fig. 4. Bootstrap consensus tree inferred from 1000 replicates, using the Maximum Likelihood method. The analysis involved 20 in Severe coenurosis caused by larvae of Taenia serialis in an olive baboon (Papio anubis) in Benin
Fig. 4. Bootstrap consensus tree inferred from 1000 replicates, using the Maximum Likelihood method. The analysis involved 20 sequences of 12S rDNA gene of cestodes having coenurus type larvae (Taenia serialis and T. multiceps) and one sequence of Echinococcus granulosus, as outgroup. For each sequence, the GenBank Accession number, species, developmental stage, host and geographic origin are provided. A total of 320 positions were included in the dataset. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches.
Fig. 2 in Severe coenurosis caused by larvae of Taenia serialis in an olive baboon (Papio anubis) in Benin
Fig. 2. Macroscopic appearance of a Taenia serialis cyst during surgery, located in intermuscular tissues. Multiple protoscolices are visible as white spots on the inner surface of the cyst.
Fig. 2 in Molecular identification of Taenia hydatigena and Mesocestoides species based on copro-DNA analysis of wild carnivores in Mongolia
Fig. 2. Phylogenetic tree based on a partial sequence of tapeworms obtained by the neighbor joining method was conducted using the TN93 + I nucleotide substitution model. Numbers above branches are percent bootstrap values based on 1,000 replicates. Bootstrap value> 70% are shown. (a) Phylogenetic tree based on the cox1 sequences of T. hydatigenaand Mesocestoides sp. isolates available in the GenBankṜ database were included. Hymenolepis nana served as an out-group. (b) Phylogenetic analysis of the 12SrRNA partial sequence of T. hydatigena, Mesocestoides sp., and M. lineatus inferred using the sequence distance method and maximum likelihood. Hymenolepis nana was used as an out-group.
Figure 8 from: Haukisalmi V, Konyaev S, Lavikainen A, Isomursu M, Nakao M (2016) Description and life-cycle of Taenia lynciscapreoli sp. n. (Cestoda, Cyclophyllidea). ZooKeys 584: 1-23. https://doi.org/10.3897/zookeys.584.8171
Figure 8 - Pairwise comparisons of the shape of the large rostellar hooks in Taenia lynciscapreoli sp. n. and related species, using the junction between the blade and the guard as an anchor region for alignment. The hook of Taenia lynciscapreoli sp. n. is indicated by a black outline. A legend for measurements taken from the large hooks of the new species (Table 1) is also shown.
Figure 1 from: Haukisalmi V, Konyaev S, Lavikainen A, Isomursu M, Nakao M (2016) Description and life-cycle of Taenia lynciscapreoli sp. n. (Cestoda, Cyclophyllidea). ZooKeys 584: 1-23. https://doi.org/10.3897/zookeys.584.8171
Figure 1 - A phylogenetic tree of selected species of Taenia inferred from a 396 bp fragment of mitochondrial cox1 gene by the maximum likelihood method. Bootstrap values >50% are shown. The scale bar represents the estimated number of substitutions per site. Accession numbers or references of the previously published sequences are in parentheses. The haplotypes of Taenia lynciscapreoli sp. n. are designated with numbers 1–4, and their geographical origins and hosts are indicated with abbreviations: Fin, Finland; Rus, Russia; L, lynx; W, wolf; R, European or Siberian roe deer; M, moose.
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International Brain Laboratory public data
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OpenNeuro
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