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306 results for “freshwater snail”
FIGURE 1 in Adding the West-African riverine component: Revision of the Recent freshwater snails belonging to Pseudocleopatra Thiele, 1928 (Caenogastropoda, Cerithioidea, Paludomidae)
FIGURE 1. Distribution of recent species of Pseudocleopatra Thiele, 1928 in Africa.
Linked collectors and determiners for: All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand.
Natural history specimen data linked to collectors and determiners held within, "All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d48c7b51-c9b4-49e7-8abf-1ecee8db36a1">https://bionomia.net/dataset/d48c7b51-c9b4-49e7-8abf-1ecee8db36a1</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d48c7b51-c9b4-49e7-8abf-1ecee8db36a1">https://gbif.org/dataset/d48c7b51-c9b4-49e7-8abf-1ecee8db36a1</a>. Formatted as a Frictionless Data package.
Figures 18-24 from: Czaja A, Gladstone NS, Becerra-López JL, Estrada-Rodríguez JL, Sáenz‑Mata J, Hernández-Terán F (2021) A remarkable new genus and species of subterranean freshwater snail from a recently dried-up spring of Viesca, Coahuila, Northern Mexico. Subterranean Biology 39: 129-141. https://doi.org/10.3897/subtbiol.39.67799
Figures 18-24 SEM images of Phreatoviesca spinosa gen. nov. et sp. nov. 18 shell apex with protoconch, UJMC 508 19 paratype 3, shell apex with protoconch, UJMC 503 20 shell apex with protoconch, UJMC 510 21 paratype 1, apex with protoconch, UJMC 501 22 smooth specimen with body whorl shows irregular, strong marked growth lines, UJMC 508 23 paratype 1, body whorl shows irregular, strong marked growth lines, UJMC 501 24 paratype 2, body whorl shows regularly spaced shovel-shaped spines, UJMC 502.
Figures 14-17 from: Czaja A, Gladstone NS, Becerra-López JL, Estrada-Rodríguez JL, Sáenz‑Mata J, Hernández-Terán F (2021) A remarkable new genus and species of subterranean freshwater snail from a recently dried-up spring of Viesca, Coahuila, Northern Mexico. Subterranean Biology 39: 129-141. https://doi.org/10.3897/subtbiol.39.67799
Figures 14-17 SEM images of Phreatoviesca spinosa gen. nov. et sp. nov. 14 specimen with strong spines, UJMC 506 15 specimen with ribs, UJMC 507 16 specimen with smooth whorls, UJMC 508 17 specimen with smooth whorls, UJMC 509. Scale bar: 1 mm.
Figure 1 from: Czaja A, Gladstone NS, Becerra-López JL, Estrada-Rodríguez JL, Sáenz‑Mata J, Hernández-Terán F (2021) A remarkable new genus and species of subterranean freshwater snail from a recently dried-up spring of Viesca, Coahuila, Northern Mexico. Subterranean Biology 39: 129-141. https://doi.org/10.3897/subtbiol.39.67799
Figure 1 Map of the study area with localization of the sampling site near the town of Viesca, Coahuila, Mexico.
Figures 2-13 from: Czaja A, Gladstone NS, Becerra-López JL, Estrada-Rodríguez JL, Sáenz‑Mata J, Hernández-Terán F (2021) A remarkable new genus and species of subterranean freshwater snail from a recently dried-up spring of Viesca, Coahuila, Northern Mexico. Subterranean Biology 39: 129-141. https://doi.org/10.3897/subtbiol.39.67799
Figures 2-13 Shells of Phreatoviesca spinosa gen. nov. et sp. nov. 2, 3 holotype, specimen from both sides, UJMC 500 4, 5 paratype 1, specimen from both sides, UJMC 501 6 paratype 2, specimen with a 'corkscrew'-like morphology, UJMC 502 7, 8 paratype 3, specimen from both sides, UJMC 503 9 paratype 4, specimen with smooth whorls and a trumpet-like aperture, UJMC 504 10, 11 paratype 5, specimen with smooth whorls, UJMC 505. Opercula 12, 13 paratype 5, specimen with smooth whorls, UJMC 505. Scale bar: 1 mm.
Fig. 5 in The Freshwater Snail Genus Sulcospira Troschel, 1857 From Java, With Description Of A New Species From Tasikmalaya, West Java, Indonesia (Mollusca: Gastropoda: Pachychilidae)
Fig. 5. External anatomy of a female S. kawaluensis new species: A, anatomy of a female exposed subhaemocoelic brood pouch filled with embryonic shells; B, schematic representation of the pallial oviduct morphology. Small letters (a–d) indicate approximate location of anterior part of cross section. Abbreviations: cte, ctenidium; og, oviductal groove; op, operculum; osp, osphradium; po, pallial oviduct; sb, spermatophore bursa; sg, sperm gutter; 2sg, second sperm gutter; sh, subhaemocoelic brood pouch; sr, seminal receptacle. Scale bar =1 mm.
Figure 9 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 9 - Image of Haematoloechus similis;a. Drawing of cercaria structureb. Cercaria without stainingc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: s – stylet, os – oral sucker, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, ta – tail, spo: sporocyst, c – cercaria, b – body, sp – spine (scale a, b = 50 µm, c = 50 µm).
Figure 8 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 8 - Image of Loxogenoides bicolor;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: s – stylet, os – oral sucker, vi – vigulate gland, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, ta – tail, spo: sporocyst, c – cercaria, b – body, sp – spine (scale a, b = 50 µm, c = 20 µm).
Figure 6 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 6 - Image of Centrocestus formosanus;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Redia stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, es – eye spot, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, ta – tail, df – dorsal finfold, ti – tip, re – redia, c – cercaria, b – body, sp – spine (scale a, b = 100 µm, c = 10 µm).
Figure 5 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 5 - Image of Stictodora tridactyla;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Redia stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, ep – esophagus, es – eye spot, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, lf – lateral finfold, ta – tail, df – dorsal finfold, re – redia, c – cercaria, b – body, sp – spine, sh – sensory hair (scale a, b = 100 µm, c = 10 µm).
Figure 4 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 4 - Image of Haplorchis taichui;a. Drawing of cercaria structureb. Cercaria without stainingc. Redia without stainingd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, es – eye spot, p – pharynx, pg – penetration gland, gi – genital primordial, eb – excretory bladder, lf – lateral finfold, ta – tail, df – dorsal finfold, re – redia, c – cercaria, sp – spine (scale a, b = 100 µm, c = 20 µm).
Figure 3 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 3 - Image of Haplorchis pumilio;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Redia stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, es – eye spot, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, lf – lateral finfold, ta – tail, df – dorsal finfold, re – redia, c – cercaria, b – body, sp – spine, sh – sensory hair (scale a, b = 100 µm, c = 10 µm).
Figure 20 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 20 - Image of Podocotyle (Podocotyle) lepomis;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–f. Images of Scanning ElectronmicroscopeAbbreviations: s – stylet, os – oral sucker, p – pharynx, penetration gland, vs – ventral sucker, eb – excretory bladder, ta – tail, ad – adhesive organ, spo – sporocyst, c – cercaria (scale a, b = 100 µm, c = 10 µm).
Figure 7 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 7 - Image of Acanthatrium hitaense;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: s – stylet, os – oral sucker, vi – vigulate gland, p – pharynx, pg – penetration gland, vs – ventral sucker, eb – excretory bladder, ta – tail, ti – tip, spo: sporocyst, c – cercaria, b – body, sp – spine (scale a, b = 25 µm, c = 50 µm).
Figure 2 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 2 - Shell Morphology of Melanoides tuberculata in Thailand;a. Sri Satchanalai Stream, Sri Satchanalai National Park, Sri Satchanalai District, Sukhothai Province (SUT0109009)b. Lam Takhong Stream, Khao Yai National Park, Pak Chong District, Nakhon, Ratchasima Province (SUT0109020)c. Rice Field at Nong Kra Done, Muang District, Nakhon Pathom Province (SUT0109062)d. Pond in Silpakorn University, Muang District, Nakhon Pathom Province (SUT0109063)e. Bang Ta-nai Canal, Pak Kred District, Nontaburi Province (SUT0109065)f. Huay Nuang Stream, Suanphueng District, Ratchaburi Province (SUT0109108)Scale bar = 1.0 mm.
Figure 18 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 18 - Image of Gastrothylax crumenifer;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Redia stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, p – pharynx, es – eye spot, vs – ventral sucker, ga – genital atrium, in – intestine, vs – ventral sucker, ta – tail, re – redia, c – cercaria (scale a, b = 100 µm, c = 10 µm).
Figure 19 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 19 - Image of Cercaria caribbea LXVIII;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, p – pharynx, vs – ventral sucker eb – excretory bladder, ta – tail, spo – sporocyst (scale a, b = 100 µm, c = 10 µm).
Figure 16 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 16 - Image of Mesostephanus appendiculatus;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, p – pharynx, in – intestine, vs – ventral sucker, eb – excretory bladder, ta – tail, fu – furca, ff – furcal finfold b – body, sp – spine, ex – excretory pore, spo – sporocyst, c – cercaria (scale a, b = 100 µm, c = 20 µm).
Figure 15 from: Krailas D, Namchote S, Koonchornboon T, Dechruksa W, Boonmekam D (2014) Trematodes obtained from the thiarid freshwater snail Melanoides tuberculata (Müller, 1774) as vector of human infections in Thailand. Zoosystematics and Evolution 90(1): 57-86. https://doi.org/10.3897/zse.90.7306
Figure 15 - Image of Apatemon gracilis;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–g. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, p – pharynx, es – eye spot, vs – ventral sucker, in – intestine, pg – penetration gland, eb – excretory bladder, ta – tail, cb – caudal body, fu – furca, b – body, sp – spine, spo – sporocyst, c – cercaria (scale a, b = 100 µm, c = 20 µm).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.