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8,443 results for “gastropoda”
Figure 4 in Іnfluence of some heavy metals to the pulmonary and direct diffusive respiration of the great ramshorn Planorbarius corneus allospecies (Mollusca: Gastropoda: Planorbidae) from the Ukrainian river system
Figure 4. Photo of habitat Planorbarius corneus from Sula River (Romny, Sumy region) in 2021 (Photos: Yuliia V. Babych).
Figure 2 in Іnfluence of some heavy metals to the pulmonary and direct diffusive respiration of the great ramshorn Planorbarius corneus allospecies (Mollusca: Gastropoda: Planorbidae) from the Ukrainian river system
Figure 2. Map showing the type localities of Planorbarius corneus s. lato allospecies: black triangle – «western»; black square – «eastern».
Figure 3 in Іnfluence of some heavy metals to the pulmonary and direct diffusive respiration of the great ramshorn Planorbarius corneus allospecies (Mollusca: Gastropoda: Planorbidae) from the Ukrainian river system
Figure 3. Photo of habitat Planorbarius corneus from Hnyla River (Horodnytsia village, Ternopil region) in 2021 (Photos: Yuliia V. Babych).
Figure 1 in Іnfluence of some heavy metals to the pulmonary and direct diffusive respiration of the great ramshorn Planorbarius corneus allospecies (Mollusca: Gastropoda: Planorbidae) from the Ukrainian river system
Figure 1. Shells of Planorbarius corneus s. lato. (A – allospecies "western", B – allospecies "eastern"): 1 – top view; 2 – bottom view; 3 – side view. Scale bars: 10 mm. (Photos: Yuliia V. Babych).
Figure 2 in First molecularly substantiated records of the pond snail Ampullaceana fontinalis in the Siverskyi Donets River Basin, Ukraine (Gastropoda: Lymnaeidae)
Figure 2. Voucher of PS43 specimen, Ampullaceana fontinalis, from the Borova River, Luhansk region, Ukraine.
Figure 3 in First molecularly substantiated records of the pond snail Ampullaceana fontinalis in the Siverskyi Donets River Basin, Ukraine (Gastropoda: Lymnaeidae)
Figure 3. Phylogenetic relationships within the genus Ampullaceana obtained using the maximum likelihood optimality criterion based on COI sequences (Log-likelihood of the tree = -4245.7847). Values of both the SH-like approximate likelihood-ratio test (SH-aLRT) and ultrafast bootstrapping are shown for branches.
Fig. 2 in Suitability of selected ornamental plants for growth and survival of Lissachatina fulica (Gastropoda: Achatinidae)
Fig. 2. Mean percent survival of newly hatched Lissachatina fulica afer 70 d of feeding on a single diet treatment. (A) Annual plants. (B) Perennial plants. Means topped by the same lowercase letters are not significantly different (P> 0.05; Kruskal-Wallis rank sum test and Dunn's test). Error bars indicate standard error.
Fig. 1 in Assessment of barrier materials to protect plants from Florida leatherleaf slug (Mollusca: Gastropoda: Veronicellidae)
Fig. 1. Diagram of barrier and soil moisture evaluation arena. Slugs were inoculated onto moist soil in region "a," and could access a leaf disc on moist soil in region "c" afer traversing region "b" that contained wet or dry soil that was either with or without physical 'barrier' material. The circles represent a small plastic Petri dish within a larger Petri dish; the walls of dishes preserved the integrity of the soil moisture treatments.
Fig. 1 in Evaluation of copper hydroxide as a repellent and feeding deterrent for Cuban brown snail (Mollusca: Gastropoda: Pleurodontidae)
Fig. 1. Mean number (± SE) of Zachrysia provisoria snails accessing the lid of their container over a 7-d period when the interior walls of the container were coated with copper sulfate residue, or treated only with tap water (control). Days with statistically significant (P <0.05) differences in snail behavior are marked with an asterisk (*).
Fig. 8 in Revaluation of the taxonomic characters and distribution of Omalonyx geayi (Gastropoda, Succineidae)
Fig. 8. Shell of Omalonyx geayi Tillier, 1980 paratype (MNHN unnumbered) in dorsal, ventral, lateral and protoconch views. Height =13 mm (TILLIER, 1980).
Fig. 7 in Revaluation of the taxonomic characters and distribution of Omalonyx geayi (Gastropoda, Succineidae)
Fig. 7. Reproductive system of Omalonyx geayi Tillier, 1980 (Paramaribo, UF 463461), with phallus and vagina opened to show ornamentation of the Internal wall (ag, albumen gland; dd, defferent duct; ep, epIphallus; es, epIphallIc sphIncter; fo, free ovIduct; gg, gametolItIc gland (bursa copulatrix); hd, hermaphrodite duct; ov, ovariotestis; ph, phallus; po, pallial oviduct; pr, prostatic gland; ps, phallus sheath; rm, retractor muscle; sv, seminal vesicles; va, vagina). Scale bar: 1 mm.
Figs 1-6 in Revaluation of the taxonomic characters and distribution of Omalonyx geayi (Gastropoda, Succineidae)
Figs 1-6. Histological micrographs of the ovariotestes of Omalonyx. Figs 1-2, parasitised ovariotestis tissues from Carauari (MCP 9183). Figs 3-4, parasitised ovariotestis tissues from Trinidad (USDA 100453). Fig. 5, healthy ovariotestis tissues from Carauari (MCP 9183). Fig. 6, healthy ovariotestis tissues from Santa Maria (MCP 8831). Asterisks indicate spermatozoids, and arrows parasites. Haematoxylin-eosin stain.
FIGURE 12 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 12. Limacina sp. 2, RGM 777373,; 1: apertural, 2: apical, 3: oblique apical, and 4: umbilical views. Bar equals 100 μm.
FIGURE 9 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 9. Limacina timi sp. nov.; 1: holotype, RGM 1007748b; 2: paratype 1, RGM 777408a; 3: paratype 2, RGM 777408b; 4: paratype 3, RGM 777414 m;. Apertural views. Bar equals 100 μm.
FIGURE 6 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 6. Limacina robusta (Eames, 1952), Holotype, Natural History Museum, London BM 68457. Rahki Nala (Pakistan, western Punjab); Kirthar Formation, Lower Chocolate Clays (late Lutetian – Priabonian); 1: apical, 2: apertural, 3: lateral view. Bar equals 100 μm.
FIGURE 2 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 2. Altaspiratella bearnensis (Curry, 1982); RGM 777374; 1: apical view, 2: apertural view. Bar equals 100 μm.
FIGURE 1 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 1. Location and geological map of the Tanzanian Drilling Project Eocene/Oligocene boundary sites (TDP 11, 12 and 17), additional Tanzanian Drilling Project sites in the area are also shown, modified from Nicholas et al. (2006). After Cotton and Pearson, (2011).
FIGURE 4 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 4. Heliconoides nikkieae sp. nov.; holotype, RGM 777415a, 3dPDF. For animation see: http:// palaeo-electronica.org/content/2017/2024-pteropodafrom-tanzania.
FIGURE 8 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 8. Limacina tanzaniaensis sp. nov.; holotype, apertural view, RGM 777428b, 3dPDF. For animation see: http://palaeo-electronica.org/content/2017/2024- pteropoda-from-tanzania.
FIGURE 13. Bovicornu aff. eocenense Meyer, 1886 in Pteropoda (Mollusca, Gastropoda, Thecosomata) from the Eocene/Oligocene boundary interval of three cored boreholes in southern coastal Tanzania and their response to the global cooling event
FIGURE 13. Bovicornu aff. eocenense Meyer, 1886; 1: RGM 777370, apertural view; 2: RGM 1007784, basal view. Bar equals 100 μm.
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International Brain Laboratory public data
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OpenNeuro
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