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1,925 results for “Platyhelminthes”
Figures 9–12 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figures 9–12. Miroplana trifasciata? (9) Freehand sketch of preserved specimen. (10) Specimen from the Tamagawa River. (11) V.Pl. 950.1, sagittal section. (12) V.Pl. 950.1, sagittal reconstruction of the copulatory apparatus.
Figures 7, 8 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figures 7, 8. Miroplana paulula. (7) QM G 222882, sagittal reconstruction of the penis papilla. (8) QM G 222882, sagittal reconstruction of the female copulatory apparatus.
Figure 31 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figure 31. Map of species richness on an equal area grid map from the Worldmap program. Maximum richness shown in black and minimum in light grey, with intermediate scores grouped into grey-scale classes of approximately equal numbers of grid cells. Numbers within cells denote number of species recorded within that grid cell.
Figures 2, 3 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figures 2, 3. Foviella affinis. (2) V.Pl. 948.3, sagittal section of the copulatory apparatus. (3) V.Pl. 948.3, sagittal section through eye cup with lens.
Figure 1 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figure 1. Foviella affinis, sagittal section through copulatory apparatus (from Sabussow 1900: pl. III, figure 34; labels adapted according to current terminology).
Figure 13 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figure 13. Geographic distribution of M. trifasciata, M. trifasciata?, P. asahinai and P. cervix in the Far East.
Figures 25–27 in Biodiversity of marine planarians revisited (Platyhelminthes, Tricladida, Maricola)
Figures 25–27. Procerodella cervix. (25) V.Pl. 953.3, sagittal reconstruction of the copulatory apparatus. (26) V.Pl. 953.6, sagittal reconstruction of the copulatory apparatus. (27) V.Pl. 953.1, sagittal reconstruction of the copulatory apparatus.
Figure 6 in The anatomy and attachment mechanism of the haptor of a Capsala sp. (Platyhelminthes: Monogenea: Capsalidae) on the blue marlin, Makaira nigricans (Istiophoridae)
Figure 6. Diagrammatic view of a marlin, showing scanning electron micrographs of Makaira nigricans at four different locations ventrally, where a Capsala sp. was observed. (a) Beneath the head; (b) between the pectoral fins; (c) region lateral to the first anal fin; (d) region lateral to the second anal fin.
Figure 5 in The anatomy and attachment mechanism of the haptor of a Capsala sp. (Platyhelminthes: Monogenea: Capsalidae) on the blue marlin, Makaira nigricans (Istiophoridae)
Figure 5. Diagrammatic view of a marlin, showing scanning electron micrographs of the dorsal skin of Makaira nigricans at two different locations, where a Capsala sp. was observed. (a) The bill and on top of the head; (b) region lateral to the dorsal and caudal fins.
Figure 3 in The anatomy and attachment mechanism of the haptor of a Capsala sp. (Platyhelminthes: Monogenea: Capsalidae) on the blue marlin, Makaira nigricans (Istiophoridae)
Figure 3. The attachment to the host surface by a Capsala sp. (a) Longitudinal section of an individual attached to the surface of Makaira nigricans, showing the location of the haptor and anterior attachment organs; (b, c) scanning electron micrographs showing the outlines left by (b) the anterior attachment organs, and (c) the haptor showing the impression of the septa and marginal valve.
Figure 4 in The anatomy and attachment mechanism of the haptor of a Capsala sp. (Platyhelminthes: Monogenea: Capsalidae) on the blue marlin, Makaira nigricans (Istiophoridae)
Figure 4. Diagrammatic representation of the balanced forces acting on the body of Capsala sp. while it is attached to the outer surface of Makaira nigricans (arrows indicate the direction in which the force is acting).
Figure 2 in The anatomy and attachment mechanism of the haptor of a Capsala sp. (Platyhelminthes: Monogenea: Capsalidae) on the blue marlin, Makaira nigricans (Istiophoridae)
Figure 2. The haptoral anatomy of a Capsala sp. (a) Differential interference contrast photograph of the posterior haptor; (b) schematic representation of the anatomy of the haptor—in the same orientation as indicated in (a).
Figure 1 in A new predatory flatworm (Platyhelminthes, Polycladida) from Botany Bay, New South Wales, Australia
Figure 1. Imogine lateotentare sp. nov., preserved. (A) Diagram of the dorsal surface; (B) morphology of the ventral surface; (C) arrangement of the dorsal eyes; (D) diagrammatic reconstruction of the reproductive system. c, cerebral eyes; ce, cement glands; f, frontal eyes; fa, female antrum; go, gonopores; m, mouth; ma, male antrum; n, nuchal tentacle; p, penis papillae; ph, pharynx; pr, prostatic vesicle; s, seminal vesicle; va, vasa deferentia. Scale bars: 1.5 mm (A, B); 0.9 mm (C); 0.6 mm (D).
Figure 2 in A new predatory flatworm (Platyhelminthes, Polycladida) from Botany Bay, New South Wales, Australia
Figure 2. Living Imogine lateotentare sp. nov. from Kurnell Pier, Botany Bay, New South Wales, Australia. (A) Colour pattern on dorsal surface; (B) ventral view showing pharynx, gonopores and vas deferens. Scale bar: 1.4 mm (A).
Figure 5 in Composition of meiobenthonic Platyhelminthes from brackish environments of the Galician and Cantabrian coasts of Spain with the description of a new species of Djeziraia (Polycystididae, Kalyptorhynchia)
Figure 5. Percentage of turbellarians in relation to the substrate type. M, muddy; S, sandy; SG, sandy-gravel; SM, sandy-muddy; SST, sandy-stony; ST, stony.
Figure 4 in Composition of meiobenthonic Platyhelminthes from brackish environments of the Galician and Cantabrian coasts of Spain with the description of a new species of Djeziraia (Polycystididae, Kalyptorhynchia)
Figure 4. Number of turbellarians found in relation to the water temperature (black bars) and to the concentration of dissolved oxygen in the samples (grey bars) (the samples without dissolved oxygen and temperature data were not considered).
Figure 1 in Composition of meiobenthonic Platyhelminthes from brackish environments of the Galician and Cantabrian coasts of Spain with the description of a new species of Djeziraia (Polycystididae, Kalyptorhynchia)
Figure 1. Location of the sample sites, with turbellarians (black points) and without turbellarians (white circles). The locality numbers correspond to those given in Tables I–III.
Figure 3 in Composition of meiobenthonic Platyhelminthes from brackish environments of the Galician and Cantabrian coasts of Spain with the description of a new species of Djeziraia (Polycystididae, Kalyptorhynchia)
Figure 3. Number of turbellarians found in relation to the conductivity and to the salinity (conductivity data of the brackish localities were not considered, because they were punctual measurements).
Figure 2 in Composition of meiobenthonic Platyhelminthes from brackish environments of the Galician and Cantabrian coasts of Spain with the description of a new species of Djeziraia (Polycystididae, Kalyptorhynchia)
Figure 2. Djeziraia longistyla sp. nov. (A) General organization in dorsal view (from the living animal); (B) atrial organs; (C) stylet (photograph from the living animal). b, bursa; cg, caudal glands; cod, common oviduct; fd-I, female duct type I; fd-II, female duct type II; ga, common genital atrium; gd, genital duct; gp, gonopore; ov, ovary; ovd, oviduct; p, proboscis; pg, prostatic glands; ph, pharynx; pv, prostatic vesicle; rs, receptaculum seminis; st, stylet; te, testis; u, uterus; vi, vitellaria; vs, vesicula seminalis; vd, vitelloduct.
Fig. 5 in Molecular phylogenetics and sequence analysis of two cave-dwelling Dugesia species from Southeast Asia (Platyhelminthes: Tricladida: Dugesiidae)
Fig. 5. Maximum likelihood tree inferred from concatenated COI, ITS-1 and 28SrRNA sequence data. Species from the Western Palearctic region are marked by inverted triangles, those from Ethiopia by circles, and those from the Oriental-Australasia region by coloured triangles, with colours indicating geographical location (red: Southeast Asia; blue: East Asia; purple: India; orange: Australia). The three main clades in the tree with strong bootstrap support at the base are highlighted in blue (Clade I), green (Clade II), and beige (Clade III). Branch length for S. mediterranea was 0.37 nucleotide substitutions per nucleotide site.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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