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.
8,443
datasets available to search
ShareScore release 0.9.0
Dataset results
8,443 results for “gastropoda”
FIGURE 14 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 14 A1–A3. 'Clavatula' olgae (Hoernes & Auinger, 1891), paralectotype, NHMW 1862/0001/0552a, Buituri (Romania). B1–B3. 'Clavatula' olgae (Hoernes & Auinger, 1891), lectotype, NHMW 1862/0001/0552, Buituri (Romania). C1–C2. 'Clavatula' vitalisi Strausz, 1955, holotype, M.105, Várpalota (Hungary). D1–D2. 'Clavatula' ariejansseni nov. sp., holotype, NHMW 1847/0058/1220, Seyithasan (Turkey). E1–E2. 'Clavatula' ariejansseni nov. sp., paratype, NHMW 1847/0058/1221, Seyithasan (Turkey).
FIGURE 19 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 19 A1–A3. Granulatocincta schreibersi (Hörnes, 1854), lectotype, NHMW 1846/0037/0315, Steinebrunn (Austria). B1–B3. Granulatocincta schreibersi (Hörnes, 1854), paralectotype, NHMW 2021/0130/0001, Enzesfeld (Austria). C1–C3. Granulatocincta schreibersi (Hörnes, 1854), NHMW 1863/0015/1131, Gainfarn (Austria). D1–D3. Granulatocincta schreibersi (Hörnes, 1854), NHMW 2021/0126/0007, Gainfarn (Austria). E1–E3. Granulatocincta theoderichi nov. sp., holotype, NHMW 2016/0026/0320, Ritzing (Austria). F1–F3. Granulatocincta theoderichi nov. sp., paratype, NHMW 2016/0026/0320b, Ritzing (Austria). G1–G3. Granulatocincta theoderichi nov. sp., paratype, NHMW 1848/0003/0022a, Ritzing (Austria). H1–H3. Granulatocincta theoderichi nov. sp., paratype, NHMW 1848/0003/0022b, Ritzing (Austria).
FIGURE 22 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 22 A1–A3. Megaclavatula laevigata (Eichwald, 1830), NHMW 1846/0037/0308, Baden (Austria). B1–B3. Megaclavatula subsculpta (Schaffer, 1912), lectotype, KM Inv. No. F/1125, Maria Dreieichen (Austria). C1–C2. Megaclavatula nemethi (Kovács & Vicián, 2021), holotype, HNHM, PAL 2021.21.1, Letkés (Hungary). D. Megaclavatula nemethi (Kovács & Vicián, 2021), paratype, NHMW 2021/0002/0003, Letkés (Hungary). E1–E2. Megaclavatula? szontaghyi (Strausz, 1926), holotype, M.116, Bán, Baranya County (Hungary). F. Megaclavatula neudorfensis (Schaffer, 1898), holotype, NHMW 2021/0137/0001, Devínska Nová Ves (Slovakia). G1–G3. Megaclavatula pilleri nov. sp., holotype, NHMW 1949/0005/0051a, Baden-Sooss (Austria). H1–H3. Megaclavatula pilleri nov. sp., paratype, NHMW 1949/0005/0051b, Baden-Sooss (Austria).
FIGURE 32 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 32 A1–A3. Perrona loetschi nov. sp., holotype, NHMW 1949/0005/0102a, Grund (Austria). B1–B2. Perrona loetschi nov. sp., paralectotype, NHMW 1949/0005/0102b, Grund (Austria). C1–C3. Perrona loetschi nov. sp., paralectotype, NHMW 2021/0153/0001, Grund (Austria). D1–D2. Perrona loetschi nov. sp., paralectotype, NHMW 1855/0045/0752, Grund (Austria). E1–E3. Perrona louisae (Hoernes & Auinger, 1891), lectotype, NHMW 1861/0050/0162a, Weinsteig (Austria). F1–F2. Perrona louisae (Hoernes & Auinger, 1891), paralectotype, NHMW1861/0050/0162b, Weinsteig (Austria).
FIGURE 30 A1–A2 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 30 A1–A2. Neoperrona harzhauseri (Kovács & Vicián, 2021), holotype, PAL 2021.24.1, Letkés (Hungary). B1–B3. Neoperrona harzhauseri (Kovács & Vicián, 2021), NHMW 2019/0151/019a, Letkés (Hungary). C1–C. Neoperrona harzhauseri (Kovács & Vicián, 2021), NHMW 2019/0151/019b, Letkés (Hungary). D1–D3. Neoperrona zoltanorum nov. sp., holotype, NHMW 2019/0151/0108a, Letkés (Hungary). E1–E3. Neoperrona zoltanorum nov. sp., NHMW 2019/0151/0108b, Letkés (Hungary).
FIGURE 20 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 20 A1–A3. Megaclavatula amaliae (Hoernes & Auinger, 1891), lectotype, NHMW 1949/0005/0049a, Lăpugiu de Sus (Romania). B1–B3. Megaclavatula amaliae (Hoernes & Auinger, 1891), paralectotype, NHMW 1949/0005/0049b, Lăpugiu de Sus (Romania), C1–C2. Megaclavatula amaliae (Hoernes & Auinger, 1891), NHMW 2021/0132/0001, Baden-Sooss (Austria). D1–D2. Megaclavatula antoniae (Hoernes & Auinger, 1891), Z.PAL.U.W., No BkKG928, Korytnica (Poland). E1–E2. Megaclavatula antoniae (Hoernes & Auinger, 1891), NHMW 1949/0005/0045, Guntersdorf (Austria). F1–F3. Megaclavatula antoniae (Hoernes & Auinger, 1891), holotype, NHMW 1849/0005/0048, Guntersdorf (Austria). G1–G3. Megaclavatula antoniae (Hoernes & Auinger, 1891), NHMW 1949/0005/0045, Guntersdorf (Austria).
FIGURE 37 A1–A3 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 37 A1–A3. Perrona koeberli nov. sp., holotype. NHMW 1949/0005/0105a, Grund (Austria). B1–B3. Perrona koeberli nov. sp., paratype, NHMW 1855/0045/0752a, Grund (Austria). C1–C3. Perrona koeberli nov. sp., paratype, NHMW 1855/0045/0753a, Grund (Austria). D1–D3. Perrona koeberli nov. sp., paratype, NHMW 1949/0005/0105b, Grund (Austria). E1–E3. Perrona oliviae (Hoernes & Auinger 1891), paralectotype, NHMW 1865/0001/0223, Lăpugiu de Sus (Romania). F1–F3. Perrona oliviae (Hoernes & Auinger 1891), lectotype, NHMW 1949/0005/0111a, Lăpugiu de Sus (Romania). G. Perrona oliviae (Hoernes & Auinger 1891), paralectotype, NHMW 1873/0026/0027, Lăpugiu de Sus (Romania).
FIGURE 2 in The Clavatulidae (Gastropoda, Conoidea) of the Miocene Paratethys Sea with considerations on fossil and extant Clavatulidae genera
FIGURE 2. Descriptive terms used in descriptions and measurements to shell morphology, whorl profiles and anal sinus. SL: shell length, MD: maximum diameter, AA: apical angle, LWH: last whorl height, AH: aperture height. AL: aperture length. AW: aperture width.
Figures 17–19 in A new species of Solaropsisfrom Amapá, Brazil (gastropoda: Solaropsidae) triggering uncertainty about the genus and redefinition of some species
Figures 17–19. Reproduction of relevant figures of solaropsids from the literature: 17, fig. 76 of Lister (1770); 18, pl. 63, fig. G3 of Favanne (1780); 19, fig. 3 of Hupé (1857) of Helix pellisboae.
Figures 2–7 in A new species of Solaropsisfrom Amapá, Brazil (gastropoda: Solaropsidae) triggering uncertainty about the genus and redefinition of some species
Figures 2–7. Holotype of Solaropsis caperata MZSP 144000 (W = 50.2 mm): 2, apical view; 3, inferior view; 4, left view; 5, apertural view; 6, detail of region half a whorl preceding the peristome, showing characteristic depression, dorsal-slightly inferior view; 7, detail of apical region, apical view, scale = 1 mm.
Figures 10–16 in A new species of Solaropsisfrom Amapá, Brazil (gastropoda: Solaropsidae) triggering uncertainty about the genus and redefinition of some species
Figures 10–16. Paratypes of Solaropsis caperata. 10, MZSP 154136 (W 45.1 mm), frontal view; 11, same apical view; 12, same, inferior view; 13, MZSP 154137 (W 39.0 mm), frontal view; 14, same, frontalslightly inferior view to show depression; 15, same, apical view; 16, inferior view.
Figure 1 in A new species of Solaropsisfrom Amapá, Brazil (gastropoda: Solaropsidae) triggering uncertainty about the genus and redefinition of some species
Figure 1. Map of collection area, in Amapá (green), Rio Cajarí Extractive Reserve (purple), municipality of Laranjal do Jari.
Figure 1. Scaphander gracilis Watson, 1883 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 1. Scaphander gracilis Watson, 1883. (a) apertural (left), adpertural (right), apical (bottom) views of shell from south off Flores Island, Azores, lectotype, NHMUK 1887.2.9.2183–6, H = 13.5 mm (images courtesy of the NHMUK photographic unit). (b) apertural (left), adpertural (right), apical (bottom) views of shell from south of São Miguel Island, Azores, paralectotype, NHMUK 1887.2.9.2187 − 8, H = 13.0 mm (images courtesy of the NHMUK photographic unit). (c) apertural (left), adpertural (right), apical (bottom) views of shell from between São Miguel and Santa Maria Islands, Azores, DBUA 1630, H = 20 mm. (d) stereo microscope image of the sculpture of the shell illustrated in C. Scale bar = 1 mm.
Figure 4 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 4. Bayesian phylogenetic tree based on partial sequences of the COI gene. Figures on nodes are posterior probabilities, scale bar refers to branch lengths. The tree was rooted using the species Bulla vernicosa.
Figure 3 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 3. Scanning electron micrographs of foraminifera taken from the gut content of Scaphander gracilis (DBUA 1630, H = 20 mm). (a–b) agglutinating foraminifera; (c−j) calcareous foraminifera. Scale bar = 1 mm.
Figure 2 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 2. Anatomical details of Scaphander gracilis Watson, 1883 (DBUA 1630, H = 20 mm). (a) radula; (b) rachidian tooth; (c) denticulation of the inner edge of lateral teeth; (d) anterior part of digestive tract; (e) gizzard plates, inner side of the paired plates and lateral view of the unpaired plate; (f) male reproductive system; (g) lining of the penial chamber. bb, buccal bulb; c, crop; go, genital opening; m, mouth; o, oesophagus; p, prostate; pc, penial chamber; pd, prostatic duct; pgp, paired gizzard plates; sg, salivary gland; ugp, unpaired gizzard plate. Scale bars: A, G = 200 µm; B, C = 20 µm; D, F = 1 mm; E = 2 mm.
Figure 5 in Revisiting the deep-sea Atlantic gastropod species Scaphander gracilis Watson, 1883 (Gastropoda: Cephalaspidea: Scaphandridae): first data on its anatomy, systematics, and ecology
Figure 5. Distribution of Scaphander gracilis, based on reliable literature records (shells) and newly sampled material (complete specimen).
Figure 4. Dated 50 in A misinterpreted disjunction: the phylogenetic relationships of the North African land snail Gyrostomella (Gastropoda: Stylommatophora: Helicidae)
Figure 4. Dated 50% clade credibility tree with median node heights based on the combined analysis of partial sequences of the mitochondrial COI and 16 S rRNA genes, as well as a part of the nuclear ribosomal RNA cluster covering parts of the 5.8 S rRNA gene, the complete ITS2 and a part of the 28 S rRNA gene. Values at the nodes represent node ages in Ma. Bars represent 95% highest posterior density intervals and coloured squares at the nodes and the tips of the tree represent (estimated) ranges from the dispersal–extinction–cladogenesis (DEC) model. The arrows indicate the nodes where the DEC model and the DEC model allowing for founder-event speciation (+J) differed with regard to the estimated ancestral range. The node used for calibration is indicated by an asterisk. Insert map: delimitation of geographical areas considered in the biogeographic analyses: (1) Western Mediterranean region of Europe (incl. western Europe, northern Europe and parts of Central Europe), (2) western North Africa (incl. Cape Verde Islands), (3) Canary Islands and Madeira Archipelago (Macaronesian Archipelagos) and (4) Eastern Mediterranean region (incl. the Middle East, parts of eastern Central Europe and eastern Europe, the Caucasus region and adjacent areas).
Figure 2 in A misinterpreted disjunction: the phylogenetic relationships of the North African land snail Gyrostomella (Gastropoda: Stylommatophora: Helicidae)
Figure 2. Approximate ranges of Gyrostomella s.s., Maurohelix and Levantina. The question mark indicates the possible extension of the range of Maurohelix to eastern Morocco (see Holyoak et al., 2020). Note: map made with Natural Earth (free vector and raster map data https://www.naturalearthdata.com).
Figure 1 in A misinterpreted disjunction: the phylogenetic relationships of the North African land snail Gyrostomella (Gastropoda: Stylommatophora: Helicidae)
Figure 1. Shells of Gyrostomella species. A–D, Gyrostomella (Gyrostomella) gyrostoma (Férussac, 1821), syntype of Helix gyrostoma Férussac, 1821, 'Tripoli de Barbarie' (Libya, Tripolis region), Muséum national d'Histoire naturelle, Paris, France (MNHN) IM-2000–31713. E–H, Gyrostomella (Gyrostomella) tripolitana (Wood, 1828), holotype of Helix leachi Férussac, 1832, 'Tripoli de Barbarie' (Libya, Tripolis region), MNHN IM-2000–31720. I–K, Gyrostomella (Maurohelix) raymondi (Saint-Simon, 1848), syntype of Helix miloni Bourguignat, 1883, 'Djebel Sahari, près de Djelfa' (Djebel Sahari near Djelfa), Muséum d'Histoire naturelle de la Ville de Genève (MHNG) 118695 (photos: E. Neubert and E. Bochud). L–N, Gyrostomella (Maurohelix) raymondi, syntype of Helix sollieri Bourguignat, 1883, 'Djebel Sahari, près de Djelfa' (Djebel Sahari near Djelfa), MHNG 118710 (photos: E. Neubert and E. Bochud). Scale bars: 10 mm.
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.