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.
1,692
datasets available to search
ShareScore release 0.7.1
Dataset results
1,692 results for “Caenogastropoda”
Fig. 43 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 43. Cochlostoma (T.) adamii (Paulucci, 1879). A. 1- Monte Stella 2, I I (EZ-0018). B. 2- Monte Stella, I I (EZ-1065). C. 3- Tiriolo, I I (EZ-0019). D. 6- Canolo, I I (EZ-1071).
Fig. 40 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 40. Samples tentatively assigned to Cochlostoma (T.) cassiniacum (Saint-Simon in Paulucci, 1878) from the Lattari and Picentini Mountains and Cilento. A. 1- Valico di Chiunzi, I (EZ-0011). B. 2- Acerno-Pian del Gaudo, I (EZ-0012). C. 3- Trentinara, I (EZ-013). D. 6- Gole del Calore, I (EZ- 0016). E. 7- Monte Terminio, I (EZ-0026). F. 9- Monte Vergine, I (EZ-1148).
Fig. 27 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 27. Samples part of clade A with amplified 16S. A. NFS158, Tisovec, SLO (WdM-6748). B. Cochlostoma (T.) reitteri (Boettger, 1880), Kapella Pass, HR (WdM-6882). C. NFS127, Mt Shelegur, AL (HNHM-99880). D. C. (T.) pageti Klemm, 1962, Katafico, GR (HNHM-99329). E. C. (T.) pallgergelyi sp. nov., near Lovcén peak, MONT (HNHM-99889). F. NFS145, 2 km S of Vilusi, MONT (HNHM-99893).
Fig. 19 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 19. Lectotype (here designated) of Cochlostoma (T.) patulum (Draparnaud, 1801), 1- Monpellier, FR ((NHMW-14710).
Fig. 9 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 9. Maximum Likelihood consensus tree based on 16S rRNA partial sequences in Turritus Westerlund, 1883 and the outgroup taxa. Bootstrap support of the nodes is indicated.
Fig. 36 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 36. Shell and female genitals of samples from the central-southern Apennine with amplified 16S. A. Passo Sta Crocella, I (EZ-0025). B. Mt Scalambra, I (EZ-0023). C. Mt Semprevisa, I (EZ-1057). D. Collelongo, I (EZ-1196). E. Valico di Chiunzi, I (EZ-0011). F. NFS152, Trecchina, I (EZ-1134).
Fig. 48 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 48. Cochlostoma (T.) mnelense (Wagner, 1914). A. 1- Mali i Munellës, AL (HNHM-99864). B. 7- Mali i Shentit 1310, AL (HNHM-99170). C–D. 2- 2.5 km N of Ndërshenë, AL (HNHM-99321). E–F. 3- Mërkuth, AL (HNHM-99322).
Fig. 39 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 39. Samples tentatively assigned to Cochlostoma (T.) cassiniacum (Saint-Simon in Paulucci, 1878) from the Matese Mountains. A. 1- Passo Santa Crocella, I (EZ-0025). B. 2- Sella Perrone, I (EZ-0024). C. 3- Miralago, I (EZ-0405). D. 4- San Gregorio Matese, I (EZ-1147).
Fig. 47 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 47. Topotypical Cochlostoma (T.) mnelense (Wagner, 1914), 1- Mali i Munellës, AL (HNHM- 99864).
Fig. 46 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 46. Syntype of Cochlostoma (T.) mnelense (Wagner, 1914) (NHMW-41173), "Berg Mnela b. Oroshi", AL.
Fig. 8 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 8. Bayesian consensus tree based on H3 and 16S rRNA partial sequences, after the first 25% were discarded as burn-in. Posterior probability of the nodes is indicated. Asterisk before the taxon name for topotypical sample.
Fig. 7 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 7. Bayesian consensus tree based on 16S rRNA partial sequences, after the first 25% were discarded as burn-in. Posterior probability of the nodes is indicated. Asterisk before the taxon name for topotypical sample.
Fig. 6 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 6. Some examples of female genitals in Turritus Westerlund, 1883 with explanation of relevant features. A. Cochlostoma (T.) agriotes (Westerlund, 1879), Monte Cucco, I (EZ-0001). B. NFS128, Crno Jezero, MONT (TxEx-du0001). C. C. (T.) reitteri (Boettger, 1880), Kapella Pass, HR (WdM-6882). D. C. (T.) simrothi (Caziot, 1908), Saorge, FR (EZ-0782). E. C. (T.) adamii, Monte Stella, I (EZ-1065). F. C. (T.) nanum, Mount Risnjak, HR (WdM-5666). 1. Position of the connection of the pedunculus to the bursa. 1A. Posterior view. 1B. Ventral view. 2. Shape, length and position of the seminal receptacle. 2A. Seminal receptacle long, club shaped, reaching the dorsal side of the body. 2B. Seminal receptacle short, oval shaped, confined to the ventral side of the body. 3. Position of the junction of the uterus gland in respect to the connection of the distal oviduct with the pedunculus of the bursa. 3A. Far from. 3B. Close to.
Fig. 5 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 5. Female genitals in Turritus Westerlund, 1883. 1. Visceral oviduct (VO). 2. Proximal loop (PL). 3. Loops of the visceral oviduct (LP). 4. Seminal receptacle (SR). 5. Pedunculus of the bursa copulatrix (CBC). 6. Bursa copulatrix (BC). 7. Channel of the uterine gland (JUG). A. Cochlostoma (T.) adamii (Paulucci, 1879), Monte Stella, I (EZ-1075). B. C. (T.) crosseanum (Paulucci, 1879), Posta, Via Salaria, I (EZ-0002). Bottom right: variation of the position of the pedunculus of the bursa copulatrix.
Fig. 4 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 4. Diagnostic characters of the shell in Turritus Westerlund, 1883. A1. Hidden umbilicus, NFS064, Rio Fuggio, I. A2. Visible umbilicus, C. (T.) elegans (Clessin, 1879), Razboijste near Oltari. HR (WdM- 6896). B1. Flat columellar lobe, C. (T.) elegans, Senj-Sveti Jurai, HR (WdM-6887). B2. Indented columellar lobe, C. (T.) nanum (Westerlund, 1879), Mt Snežnik 1764, HR (WdM-7005). B3. Deeply indented columellar lobe, C. (T.) pallgergelyi sp. nov., Kameno 1, MONT (HNHM-105450). C1. Spotless shell, C. (T.) patulum (Draparnaud, 1801), Cirque D'Archiane, FR (RMNH-117454). C2. Visible spots, C. (T.) cassiniacum (Saint-Simon in Paulucci, 1878), Val Canneto 1050, I (EZ-1131). D1. Weak ribbing, C. (T.) nanum, Mt Snežnik 1764, HR (WdM-7005). D2. Strong ribbing, C. (T.) sardoum (Westerlund, 1890), Cala Fuili, I (EZ-0577).
Fig. 1 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 1. The "Sectio" Turritus in Westerlund, 1883. A. Cochlostoma (Eupomatias) henricae (Strobel, 1851), Sella Chianzutan, I (EZ0274). B. Cochlostoma (Turritus) stossichi (Hirc, 1881), Ponikve, HR (ZMB170.256).
Fig. 3 in Cochlostoma Jan, 1830 revised: an overview of the subgenus Turritus Westerlund, 1883 and its species (Caenogastropoda, Cochlostomatidae)
Fig. 3. Measurements taken on the shell. 1. Height (H). 2. Width of the 1st whorl (W). 3. Width of the 1st suture. 4. Width of the 2nd whorl. 5. Inclination of the ribs in relation to the orthogonal line to the main axis. 6. Inclination of the aperture lip in relation to the main axis in lateral view. 7. Ribs per millimeter measured along the 1st suture. 8. Ribs per millimeter measured along the basal suture of the 4th whorl. The figure in the lower right corner shows how the whorls (green) and sutures (red) are counted.
FIG. 3 in A new genus and new species of Pupinidae (Gastropoda: Caenogastropoda) from Northern Vietnam
FIG. 3. Chuatienpupa megacanalis sp. nov. A–E. Holotype VNMN-IZ 000.002.331. F–H. Paratypes ZVNU.MOL 047. Photos: Nguyen T.S. and Do D.S. РИС. 3. Chuatienpupa megacanalis sp. nov. A–E. Голотип VNMN-IZ 000.002.331. F–H. Паратипы ZVNU.MOL 047. Фото: Нгуен Т.С. и До Д.С.
FIG. 1. A in A new genus and new species of Pupinidae (Gastropoda: Caenogastropoda) from Northern Vietnam
FIG. 1. A. General shell morphology of Chuatienpupa gen. nov. and its terminology. B. Details of the anterior canal (bottom view). C. Details of the posterior canal. РИС. 1. A. ОбЩаЯ морфологиЯ раковины Chuatienpupa gen. nov. и термины, испольЗованные при ее описании. B. Детали переднего канала (вид сниЗу). C. Детали Заднего канала.
FIG. 5 in A new genus and new species of Pupinidae (Gastropoda: Caenogastropoda) from Northern Vietnam
FIG. 5. Chuatienpupa megacanalis sp. nov., A–C. Living specimen (paratype ZVNU.MOL 047). D. Juvenile shells. Photos: Nguyen T.S. and Do D.S. РИС. 5. Chuatienpupa megacanalis sp. nov., A–C. ЖиваЯ особь (паратип ZVNU.MOL 047). D. Ювенильные раковины. Photos: Nguyen T.S. and Do D.S.
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.