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51 results for “pulmonate”
РИС. 1. Схематичное иЗображение глаЗа наЗемного лёгочного моллюска. СокраЩениЯ: c – роговица; ec – глаЗнаЯ капсула; r – сетчатка; p – краЯ Зрачка; l – хрусталик, окруженный слоем стекловидного тела; L abs – абсолютное расстоЯние между Зрачком и наружной поверхностью хрусталика; D l – продольный диаметр хрусталика; А – абсолютный диаметр Зрачabs ка; D – поперечный диаметр глаЗа. FIG. 1. Schematic drawing of the eye of a terrestrial pulmonate mollusk. Abbreviation: c – cornea; ec – eye capsule; r – retina; p – edges of the pupil; l – lens, surrounded by a layer of the vitreous body; L abs – the absolute distance between the pupil and the outer surface of the lens; D l – the longitudinal diameter of the lens; А abs – the absolute diameter of the pupil; D e – the transverse diameter of the eye. in Зрачок камерных глаЗ наЗемных брюхоногих моллюсков (Heterobranchia, Stylommatophora)
РИС. 1. Схематичное иЗображение глаЗа наЗемного лёгочного моллюска. СокраЩениЯ: c – роговица; ec – глаЗнаЯ капсула; r – сетчатка; p – краЯ Зрачка; l – хрусталик, окруженный слоем стекловидного тела; L abs – абсолютное расстоЯние между Зрачком и наружной поверхностью хрусталика; D l – продольный диаметр хрусталика; А – абсолютный диаметр Зрачabs ка; D – поперечный диаметр глаЗа. FIG. 1. Schematic drawing of the eye of a terrestrial pulmonate mollusk. Abbreviation: c – cornea; ec – eye capsule; r – retina; p – edges of the pupil; l – lens, surrounded by a layer of the vitreous body; L abs – the absolute distance between the pupil and the outer surface of the lens; D l – the longitudinal diameter of the lens; А abs – the absolute diameter of the pupil; D e – the transverse diameter of the eye.
To Evaluate the Safety, Tolerability, and Efficacy of TMC207 as Part of an Individualized Multi-drug Resistant Tuberculosis (MDR-TB) Treatment Regimen in Participants With Sputum Smear-positive Pulmon
ClinicalTrials.gov study NCT00910871. IPD Sharing: Not stated. Countries: 12. Publications: 2.
Effects of adult and egg predators on hatching plasticity of the pulmonate limpet
Open the record for dataset details and reuse information.
FIGURES 22–32. 22–23 in The fossil pulmonate snails of Sandelzhausen (Early / Middle Miocene, Germany): Succineidae, Testacelloidea and Helicoidea
FIGURES 22–32. 22–23.?Helicodonta sp. (BSPG 1959 II 17678; D = 4.3 mm). 24–25. Helicodontidae indet. (BSPG 1959 II 17300; D = 3.7 mm). 26–27. Leucochroopsis kleinii (BSPG 1959 II 16147; D = 5.0 mm). 28–29. Urticicola perchtae sp. nov. (holotype; BSPG 1959 II 17312; H = 3.5 mm). 30–31. Urticicola perchtae sp. nov. (paratype; BSPG 1959 II 17313; H = 2.9 mm). 32. Urticicola perchtae sp. nov., protoconch detail (holotype; BSPG 1959 II 17312).
FIGURES 1–21. 1–2 in The fossil pulmonate snails of Sandelzhausen (Early / Middle Miocene, Germany): Succineidae, Testacelloidea and Helicoidea
FIGURES 1–21. 1–2. Succinea minima (BSPG 1959 II 17471; H = 2.6 mm). 3–4. Palaeoglandina sp. (BSPG 1959 II 16145; H = 49.7 mm). 5. Testacella zelli (BSPG 1959 II 17689; H = 2.3 mm). 6–9. Klikia cf. coarctata (BSPG 1959 II 16144; D = 9.3 mm). 10–13. Cepaea cf. eversa (BSPG 1959 II 16162; D = 26.0 mm). 14–17. Cepaea cf. sylvestrina (BSPG 1959 II 16156; D = 19.9 mm). 18–19. Tropidomphalus cf. incrassatus (BSPG 1959 II 456; D = 28.8 mm). 20–21. Tropidomphalus cf. incrassatus (BSPG 1959 II 457; D = 35.1 mm).
FIGURE 98 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURE 98: Map showing the Recent distribution of Cerionidae (full line), Neniinae (dashed lined) and Urocoptidae (dotted line). The oldest fossils known for Cerionidae and Urocoptidae are indicated by a "C" and a "U", respectively. Itaboraí Basin is indicated by an "X" (its record of Neniinae is the oldest for the subfamily). The circle indicates the possible new record of Urocoptidae discovered by Pena et al. (2011).
FIGURES 32-42 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 32-42: 32-33. Temesa magalhaesi (DGM 4997-I) with broken aperture, showing the parietal lamella (pt). 34-35. Cecilioides sommeri (MNRJ 5016-I; holotype); shell length 2.5 mm. 36. Bulimulus fazendicus (AMNH 24243; holotype); shell length 16.5 mm. 37. B. fazendicus (AMNH 24242; paratype); shell length 16.5 mm. 38-39. Bulimulus trindadeae (MNRJ 5022-I; holotype); shell length 9.5 mm. 40-42. Cortana carvalhoi (DGM 4995-I; holotype); shell length 30.5 mm.
FIGURES 20-31 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 20-31: 20-21. Brasilennea guttula (MCT 6940-I; holotype), showing the two spiral furrows on the body whorl; shell length 13.5 mm. 22. Brasilennea minor (DGM 4221-I; holotype); shell length 9 mm. 23-24. B. minor (DGM 4999-I); shell length 11.5 mm. 25. Taller specimen of B. minor (DGM 4999-I); altura 15 mm. 26. B. minor (DGM 4999-I) with broken aperture, showing the parietal (pt) and columellar (cl) lamellae. 27. Temesa magalhaesi (DGM 4220-I; holotype); shell length 14.5 mm. 28-31. T. magalhaesi (DGM 4997-I); shell length 14 mm.
FIGURE 2 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURE 2: Measures used in shell description (see text for abbreviations) and terminology for peristome regions: parietal (Pr), palatal (Pl), basal (Ba) and columellar (Co).
FIGURES 51-58 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 51-58: 51-55. Leiostracus ferreirai (DGM 4993-I); shell length 12 mm. 51-53. Overview. 54. Umbilicus. 55. Protoconch. 56. L. ferreirai (DGM 5409-I; holotype); shell length 9.5 mm. 57-58. L. ferreirai (MNRJ 5186-I; paratype); shell length 11 mm.
FIGURES 10-19 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 10-19: 10-11. Brasilennea arethusae (AMNH 24237; holotype); shell length 23.5 mm. 12. B. arethusae (AMNH 24238; paratype); shell length 24 mm. 13. Anomalous specimen of B. arethusae (DGM 4998-I); shell length 27 mm. 14-15. "Strobilopsis mauryae" (MNRJ 5020-I; holotype); greater width 4.5 mm. 16. B. arethusae (AMNH 24239; paratype); greater width 7.5 mm. 17-19. Brasilennea guttula (MCT 6940-I; holotype); shell length 13.5 mm.
FIGURES 78-85 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 78-85: 78-79. Eoborus sanctijosephi (DGM 4992). 78. Smooth protoconch. 79. Umbilicus. 80. E. sanctijosephi (AMNH 24241; holotype); shell length 44 mm. 81-83. E. sanctijosephi; specimen previously classified as Vorticifex fluminensis (DGM 5003-I; holotype); greater width 8.5 mm. 84-85. Eoborus fusiforme sp. nov. (MNRJ 5188-I; holotype); shell length 18.5 mm.
FIGURES 70-77 in Taxonomic Revision Of The Fossil Pulmonate Mollusks Of Itaboraí Basin (Paleocene), Brazil
FIGURES 70-77: 70-74. Eoborus rotundus (MCT 6941-I; holotype); shell length 23.5 mm. 70-72. Overview. 73. Umbilicus. 74. Smooth protoconch. 75-77. Eoborus sanctijosephi (DGM 4992); shell length 44.5 mm.
FIGURES 15‑26 in Taxonomical Study On A Sample Of Pulmonates From Santa Maria Da Vitória, Bahia, Brazil, With Description Of A New Genus And Four New Species (Mollusca: Orthalicidae And Megalobulimidae)
FIGURES 15‑26: Shell of types and ordinary specimens: 15-20) Anostoma tessa new species; 15) Holotype, apertural view (H 31.1 mm); 16) Same, dorsal view; 17) Same, left view; 18) Same, right view; 19) Same, detail of aperture, apertural-slightly anterior view; 20) Paratype MZSP 103915, apertural view (H 31.1 mm); 21) Rhinus suturalis, MZSP 103924, frontal view (H 23.6 mm); 22-26) Megalobulimus amandus new species; 22) Holotype, apertural view (H 78.9 mm); 23) Same, right view; 24) Same, dorsal view; 25) Paratype MZSP 103919(2), young specimen, apical (larger) and apertural view (H 25.6 mm); 26) Paratype MZSP 103919(1), adult with thin lip, apertural and right views (H 69.8 mm).
Figure 8 in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 8. Phylogenetic tree based on the nuclear 18S rRNA gene as well as on the mitochondrial COI and 16S rRNA gene sequences, showing the systematic position of M. steenstrupi isolated from the plaited door snail Cochlodina laminata. The class Colpodea was used as the outgroup. Bootstrap values for maximum likelihood conducted in IQTrees as well as posterior probabilities for Bayesian inferences conducted in MrBayes and Phycas were mapped onto the best scoring IQ tree. Dash indicates mismatch between maximum likelihood and Bayesian tree topologies. Sequences marked in red were obtained during this study. Fully statistically supported nodes are marked with red solid circles. GenBank accession numbers can be found in Supporting Information (Table S6). The scale bar denotes six substitutions per one hundred nucleotide positions.
Figure 6 in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 6. Phylogenetic tree based on the nuclear 18S, 5.8S, and 28S rRNA gene sequences, showing the systematic position of M. steenstrupi isolated from the plaited door snail Cochlodina laminata. The subclass Scuticociliatia is represented by the orders Philasterida and Pleuronematida, the subclass Astomatia was used as the outgroup. Bootstrap values for maximum likelihood conducted in IQTrees as well as posterior probabilities for Bayesian inferences conducted in MrBayes and Phycas were mapped onto the best scoring IQ tree. Dash indicates mismatch between maximum likelihood and Bayesian tree topologies. Sequences marked in red were obtained during this study. Fully statistically supported nodes are marked with red solid circles. GenBank accession numbers can be found in Supporting Information (Table S2). The scale bar denotes seven substitutions per one hundred nucleotide positions.
Figure 2. M. steenstrupi after protargol impregnation. A, B in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 2. M. steenstrupi after protargol impregnation. A, B, top and bottom overviews of the same specimen, showing the ciliary pattern and nuclear apparatus. Black arrowheads mark the anterior suture, white double arrowheads denote the right lateral suture, white arrowheads denote the left lateral suture, and arrows mark the posterior suture. C, detail of the silverline system in the anterior body portion. D, semischematic diagram, showing the ciliary pattern within and around the mouth pocket. MA, macronuclear nodules; MI, micronucleus; PM, paroral membrane; SK, somatic kineties; SL, silverline; VK, vestibular kineties. Scale bars = 20 Μm (C), 55 Μm (A, B).
Figure 4. M in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 4. M. steenstrupi after protargol impregnation (A–D, H) and after silver nitrate impregnation (E–G). A, detail of the anterolateral body region, showing the anterior suture (black arrowhead) made by abutting anterior ends of ventral kineties and thigmotactic kineties. B, detail of the posterolateral body region, showing the posterior suture. C, frontal view, showing the entrance to the mouth pocket (arrow). Note that somatic kineties enter the mouth pocket to become vestibular kineties. D, optical section through the mouth pocket, showing the vestibular kineties, adoral organelle and paroral membrane. E–G, details of the cell surface, showing the somatic ciliary pattern and the silverline system. Black arrowheads mark the anterior suture, opposed white arrowheads denote the blank stripe within the right lateral suture, red arrows show the dikinetids of the thigmotactic field, and red arrowheads mark the horizontal silverlines. H, detail of the anterior body region, showing the thigmotactic field and the blank stripe within the right lateral suture (opposed white arrowheads). AO, adoral organelle; F, fibres, MP, mouth pockets; PM, paroral membrane; VK, vestibular kineties; SK, somatic kineties. Scale bars = 5 Μm (G), 10 Μm (B), 15 Μm (H), 20 Μm (A, C, E).
Figure 3. M in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 3. M. steenstrupi in vivo (A–D) and after protargol impregnation (E, F). A, B, ventral overviews of two representative individuals, showing the nuclear apparatus and the contractile vacuole. Arrow in (A) indicates the entrance to the mouth pocket. C, D, details of the posterior body region, showing the entrance to the mouth pocket (arrow) containing vestibular kineties, the nuclear and contractile vacuole apparatus as well as the posterior suture (opposed white arrowheads). E, top overview, showing the nuclear apparatus and the ciliary pattern. Black arrowheads mark the anterior suture, the white arrowhead denotes the left lateral suture. F, detail of nuclear apparatus of the specimen shown in (E). CV, contractile vacuole; MA, macronuclear nodules; MI, micronucleus; MP, mouth pocket; SK, somatic kineties; TF, thigmotactic field; VK, vestibular kineties. Scale bars = 15 Μm (C), 25 Μm (D), 30 Μm (F), 55 Μm (E), 60 Μm (A, B).
Figure 7 in Re-discovery and novel contributions to morphology and multigene phylogeny of Myxophyllum steenstrupi (Ciliophora: Pleuronematida), an obligate symbiont of terrestrial pulmonates
Figure 7. Phylogenetic tree based on the mitochondrial COI nucleotide sequences, showing the systematic position of M. steenstrupi isolated from the plaited door snail Cochlodina laminata. The class Colpodea was used as the outgroup. Bootstrap values for maximum likelihood conducted in IQTrees as well as posterior probabilities for Bayesian inferences conducted in MrBayes and Phycas were mapped onto the best scoring IQ tree. Dash indicates mismatch between maximum likelihood and Bayesian tree topologies. Sequences marked in red were obtained during this study. Fully statistically supported nodes are marked with red solid circles. GenBank accession numbers can be found in Supporting Information (Table S3). The scale bar denotes twenty substitutions per one hundred nucleotide positions.
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Allen Brain Atlas
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