Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
306
datasets available to search
ShareScore release 0.9.0
Dataset results
306 results for “freshwater snail”
Figure 14 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 14 - Image of Transversotrema laruei;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Redia stained with 0.5% neutral redd.–f. Images of Scanning ElectronmicroscopeAbbreviations: gp – genital pore, es – eye spot, m – mouth, ov – ovary, vs – ventral sucker, te – testes, eb – excretory bladder, i – intestine, ap – appendages, ta – tail, fu – furca, p – pharynx, re – redia, c – cercaria (scale a, b = 100 µm, c = 20 µm).
Figure 17 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 17 - Image of Echinochasmus pelecani;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, cs – collar spine, p – pharynx, in – intestine, vs – ventral sucker, mct – main collecting tube, ta – tail, re – redia, c – cercaria (scale a, b = 50 µm, c = 10 µm).
Figure 13 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 13 - Image of Alaria mustelae;a. Drawing of cercaria structureb. Cercaria stained with 0.5% neutral redc. Sporocyst stained with 0.5% neutral redd.–f. Images of Scanning ElectronmicroscopeAbbreviations: os – oral sucker, p – pharynx, es – eye spot, ep – esophagus, vs – ventral sucker, in – intestine, pg – penetration gland, eb – excretory bladder, ta – tail, fu – furca, spo: sporocyst, c – cercaria (scale a, b = 50 µm, c = 10 µm).
Figure 12 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 12 - Image of Cardicola alseae;a. Drawing of cercaria structureb. Cercaria stained with Semichon's acetic carmine & fast greenc. Sporocyst stained with 0.5% neutral redd.–f. Images of Scanning ElectronmicroscopeAbbreviations: dm – dorso-median finfold, pg – penetration gland, eb – excretory bladder, an – anterior organ, ta – tail, cb – caudal body, sp – spine, fu – furca, spo: sporocyst, c – cercaria (scale a, b = 50 µm, c = 20 µm).
Figure 10 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 10 - Image of Cloacitrema philippinum;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, in – intestine, vs – ventral sucker, eb – excretory bladder, ta – tail, ad – adhesive gland, re – redia, c – cercaria, b – body(scale a, b = 100 µm, c = 50 µm).
Figure 11 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 11 - Image of Philopthalmus sp.;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, ep – esophagus, vs – ventral sucker, in – intestine, eb – excretory bladder, ta – tail, ad – adhesive gland, re – redia, c – cercaria, b – body (scale a, b = 100 µm, c = 50 µm).
Figure 1 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 1 - Occurrence of Melanoides tuberculata in Thailand. Closed symbol – M. tuberculata with infection; open symbol – M. tuberculata without infection.
Figure 3 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 3 - a–c Theodoxus pallida (from Edlauer's collection, NHMW 75000/E/50824) a Shell with corroded apex b label of Edlauer's collection c apophysis of Theodoxus pallida d apophysis ofTheodoxus fuiviatilis (from IR79).
Figure 6 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 6 - Shell of Bithynia starmuehlneri sp. n. a frontal view b lateral view c juvenile shell with operculum.
Figure 2 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 2 - a–c Neritina mesopotamica d–e Neritina euphratica f–g Neritina schlaeflii a shell (syntype) b lable c operculum d shell (syntype, ZMZ 528916, Irak, Samava, photo: Eike Neubert) e operculum of Neritina euphratica from Euphrates f shell (syntype, ZMZ 529679, Persian Gulf, Island Ghaes, photo: Eike Neubert) g operculum of Neritina schlaeflii from Shatt Al-Arab-Fao region.
Figure 18 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 18 - The Planorbis spp. of Iran. a Planorbis carinatus b Planorbis intermixtus c Indoplanorbis exustus.
Figure 15 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 15 - a–b Acroloxus pseudolacustris sp. n.: shell c–d Acroloxus lacustris (from Hamburg, Germany): shell.
Figure from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure - Figure 8. The molluscs of brackish waters. a Ecrobia grimmi b Heleobia dalmatica c Ecrobia grimmi from Edlauer's collection (NHMW, "Hydrobia acuta" 75000/E/60453) d Cerithidea cingulata.
Figure 14 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 14 - Valvata nowshahrensis sp. n. a shell b ventral view on the umbilicus c head with penis in situ.
Figure 13 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 13 - Farsithyra farsensis (from Edlauer's collection, NHMW "Pseudamnicola uzielliana" 75000/E/50795): a–b shell.
Figure 12 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 12 - The prosobranch molluscs of Iran. a Theodoxus fluviatilis (operculum see Fig. 3d) b Bithynia (Bithynia) ejecta (syntype ZMZ 524006, Iraq, Samava, ex coll. Mousson, photo: E. Neubert) c Melanoides tuberculatus d Thiara scabra e Melanopsis sp. f Melanopsis costata g Farsithyra farsensis h Sarkhia kermanshahensis, i: Pseudamnicola saboori k Pseudamnicola zagrosensis l Pseudobithynia irana m Pseudobithynia zagrosia n Valvata cristata.
Figure 16 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 16 - The Lymnaeidae of Iran. a Radix persica (IR27-07) b–d Radix bactriana (b IR03-05 c IR87-05 d IR88-05 e IR91-05) f Radix persica (IR107-05) g Radix iranica (IR89-05) h Radix sp. i Radix sp. k Galba truncatula (IR62-05) l Galba schirazensis.
Figure 10 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 10 - Kaskakia khorrasanensis sp. n. a shell b penis in situ c–d penis (c: dorsal view, d: ventral view).
Figure 1 from: Glöer P (2012) The freshwater snails (Gastropoda) of Iran, with descriptions of two new genera and eight new species. ZooKeys 219: 11-61. https://doi.org/10.3897/zookeys.219.3406
Figure 1 - Map of Iran with dots showing the collection localities (corresponding to the sampling site numbers in Appendix). The total number of freshwater mollusc species collected from each province are as follows (in parentheses): Bushehr (1), Fars (15), Gilan (12), Hormozgan (13), Isfahan (10), Kerman (15), Hermanshah (4), Khorasan (5), Khuzestan (14), Lorestan (6), Markazi (5), Mazandaran (21), Qom (1), Seistan and Baluchestan (16), Semnan (1), Teheran (5), West Azarbayjan (1), Yazd (6), Zanjan (1).
Figure 8 from: Glöer P (2013) A new freshwater snail genus (Hydrobiidae, Gastropoda) from Montenegro, with a discussion on gastropod diversity and endemism in Skadar Lake. ZooKeys 281: 69-90. https://doi.org/10.3897/zookeys.281.4409
Figure 8 - Skadar Lake basin and selected characteristic habitat types. a sublacustrine spring Karuč (the locus typicus of Karucia sublacustrina sp. n.) b spring Vitoja flooded by the lake water (December 2010) c View from NE of the lake (River Crnojevića) d View from Malo Blato with eutrophic conditions and Phragmites belt e Šasko Lake (the water of the lake comes from the Bojana River but the communication with the river and the Skadar Lake regulatly interrupred during summer months) – the locus typicus of Gyraulus shasi and Gyraulus ioanis f spring (captured for the local drinking) on the island Vranjina, the locus typicus of Radomaniola elongata. Photos. V. Pešić.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.