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.
1,549
datasets available to search
ShareScore release 0.7.1
Dataset results
1,549 results for “invertebrate”
Fig. 8 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 8. Neritariid gastropods Neritaria mandelslohi (Klipstein, 1843) from Lago Antorno, northern Italy, Cassian Formation, Carnian, Upper Triassic. A. PZO 12798, in oblique lateral (A1) and lateral view (A3), and oblique lateral view of protoconch (A2). B. PZO 12799 in apical view.
Fig. 18 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 18. Zygopleurid larval shells of Zygopleura sp. from Lago Antorno (A) and Misurina Landslide (B), northern Italy, Cassian Formation, Carnian, Upper Triassic. PZO 12836 (A) and PZO 12711 (B), in lateral view.
Fig. 19 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 19. Caenogastropods from Lago Antorno (A, B, D), Misurina Landslide C) and Klipstein's (1843) collection (E), northern Italy, Cassian Formation, Carnian, Upper Triassic. A. Kittliconcha aonis (Kittl, 1894), PZO 12834, in lateral view. B. Kittliconcha aonis (Kittl, 1894), PZO 12835, in lateral view. C. Kittliconcha aonis (Kittl, 1894); PZO 12710, in lateral view. D. Tyrsoecus zeuschneri (Klipstein, 1843); PZO 12837, in lateral view. E. Tyrsoecus zeuschneri (Klipstein, 1843), Klipstein's (1843) illustrated type specimen NHMUK PI OR 35421(1)), in lateral (E1) and apertural (E2) views.
Fig. 34 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 34. Pyrite framboid from Lago Antorno, northern Italy, Cassian Formation, Carnian, Upper Triassic. PZO 12887.
Fig. 14 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 14. Prostyliferid gastropods Prostylifer paludinaris (Münster, 1841) from Lago Antorno (A–C) and Misurina Landslide (D), northern Italy, Cassian Formation, Carnian, Upper Triassic. A. PZO 13680, relatively large specimen with preserved protoconch and inner lip, in apertural view (A1); A2, close up showing umbilical chink and arched inner lip; A3, apex with mammilated protoconch having spiral crests, in lateral view. B. PZO 12823, juvenile specimen with protoconch having spiral crests, in apertural view. C. PZO 12824, juvenile specimen with protoconch having spiral crests; C1, larval shell ending at sinusigera, in apertural view; C2, close up of whorl of larval shell. D. PZO 12699, juvenile specimen with mammilated protoconch having spiral crests, in lateral view (D1); D2, early whorls, larval shell ending at sinusigera, in lateral view.
Fig. 21 in Palaeoecology of tropical marine invertebrate assemblages from the Late Triassic of Misurina, Dolomites, Italy
Fig. 21. Heterobranch gastropods from Misurina Landslide, northern Italy, Cassian Formation, Carnian, Upper Triassic. A. Promathildia cf. decorata Klipstein, 1843), PZO 12729, in lateral (A1) and apical (A3) views; A2, close up to show heterostrophic protoconch, in lateral view. B. Promathildia subnodosa (Münster, 1841), PZO 12730, in apertural view. C. Promathildia cf. milierensis Zardini, 1980; PZO 12722, in apertural view (C1); C2, close up to show heterostrophic protoconch, in lateral view; C3, close up to show heterostrophic protoconch, transition to teleoconch well visible, in lateral view. D. Promathildia cf. milierensis Zardini, 1980, PZO 12725, in lateral view. E. Promathildia cf. milierensis Zardini, 1980, PZO 12723, in lateral view. F. Promathildia cf. milierensis Zardini, 1980, PZO 12726, in lateral view. G. Camponaxis lateplicata (Klipstein, 1843), PZO 12731, in lateral view. H. Promathildia cf. milierensis Zardini, 1980, PZO 12727, in lateral view. I. Promathildia cf. milierensis Zardini, 1980; PZO 12724, in lateral view.
Figure 1 in Distribution patterns and diversity of invertebrates of temperate rainforests in Tasmania with a focus on Pauropoda
Figure 1. Location of collecting sites, numbered from 1 to 12 as in the text. Numbers in brackets indicate total number of pauropod species found on each site. Insert shows distribution of rainforest in Tasmania taken from Coy et al. (1991).
Figure 2 in Using deep-learning for automatic identification of images of marine benthic macro-invertebrate bycatch: a proof of concept
Figure 2. – Three images of organisms obtained by cropping images of lots; from left to right: Chalinidae (Porifera), Polyclinidae (Chordata), Hormatidae (Cnidaria).
Figure 3 in Using deep-learning for automatic identification of images of marine benthic macro-invertebrate bycatch: a proof of concept
Figure 3. – Image of a batch of macro-invertebrate bycatch organisms from Kerguelen Exclusive Economical Zone (Poker 4 survey, 2017), including corals, a crinoïd, an ophiurid, a sea urchin and a brachiopoda; organisms are incomplete and have been quickly spread out over a small plate to take the picture.
Figure 6 in Using deep-learning for automatic identification of images of marine benthic macro-invertebrate bycatch: a proof of concept
Figure 6. – Example of detection and classification obtained with an image including an Ophiuroid, a piece of coral and a sea star with network 2; red squares and annotations have been provided by the computer with no human action.
Figure 5 in Using deep-learning for automatic identification of images of marine benthic macro-invertebrate bycatch: a proof of concept
Figure 5. – Example of detection and classification obtained with an image including Ascidians and a sea star with network 2; red squares and annotations have been provided by the computer with no human action.
FIGURE 6 in Anthropologically introduced biases in natural history collections, with a case study on the invertebrate paleontology collections from the middle Cambrian Spence Shale Lagerstätte
FIGURE 6. Publications over time that refer specifically to Spence Shale specimens or use quantitative data from the Spence Shale in an analysis.
FIGURE 4 in Anthropologically introduced biases in natural history collections, with a case study on the invertebrate paleontology collections from the middle Cambrian Spence Shale Lagerstätte
FIGURE 4. Specimens in the KUMIP collections by locality, breaking down number of specimens of biomineralizing and soft-bodied taxa from each locality.
FIGURE 1 in Anthropologically introduced biases in natural history collections, with a case study on the invertebrate paleontology collections from the middle Cambrian Spence Shale Lagerstätte
FIGURE 1. Examples of anthropological actions that create bias in natural history collections and when they occur.
FIGURE 2 in Exotic Terrestrial Macro-Invertebrate Invaders in California from 1700 to 2015: An Analysis of Records
FIGURE 2. Total number of invertebrates detected in Cal- FIGURE 3. Plot of CUSUM values for counts of exotic ifornia 1935–2010. arthropods recorded in California over the period 1935 to 2010.
FIGURE 1 in Exotic Terrestrial Macro-Invertebrate Invaders in California from 1700 to 2015: An Analysis of Records
FIGURE 1 (left). Examples of non-native macro-terrestrial arthropods that have been detected in California. A. Avocado thrips, Scirtothrips perseae Nakahara (Thysanoptera: Thripidae). (Detected 1992). B. Brown widow spider, Latrodectus geometricus Koch (Araneae: Theridiidae) (detected 2003). C. Glassy-winged sharpshooter, Homalodisca vitripennis (Germar) (Hemiptera: Cicadellidae) (detected 1994). D. Brown marmorated stink bug, Halyomorpha halys Stål (Hemiptera: Pentatomidae) (detected 2005). E. Citrus leafminer, Phyllocnistis citrella Stainton (Lepidoptera: Gracillariidae) (detected 1999). F. Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Psyllidae) (detected 2008). G. Palm weevil, Rhynchophorus vulneratus (Panzer) (Coleoptera: Curculionidae) (detected 2010) (eradicated 2015). H. Gold spotted oak borer, Agrilus auroguttatus Waterhouse (Coleoptera: Buprestidae) (detected 2004).
Fig. 36 in Unrecorded species of Korean invertebrates discovered through the project of 'Discovery of Korean Indigenous Species' II
Fig. 36. Gerdocypris nipponica (Okubo, 1980). A. whole animal (up) and left valve (bottom) (female); B. hemipenis; C. distal part of L7 (male); D. Uropodal Ramus (male); E. A1 (male); F. A2 and Md.
Fig. 27 in Unrecorded species of Korean invertebrates discovered through the project of 'Discovery of Korean Indigenous Species' II
Fig. 27. Paramphiascella vararensis (Scott T., 1903), female. A. dorsal view; B, lateral view. Scale bars = 200 μm.
Fig. 29. Danielssenia typica Boeck, 1873. A in Unrecorded species of Korean invertebrates discovered through the project of 'Discovery of Korean Indigenous Species' II
Fig. 29. Danielssenia typica Boeck, 1873. A. female, ventral view; B. male, lateral view. Scale bars = 100 μm.
Fig. 24 in Unrecorded species of Korean invertebrates discovered through the project of 'Discovery of Korean Indigenous Species' II
Fig. 24. Macrocheles similis Krantz and Fillipponi, 1964, female. A. dorsal shield; B. tectum; C. ventral view.
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.