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.
2,640
datasets available to search
ShareScore release 0.9.0
Dataset results
2,640 results for “Schizophrenia”
Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Batellopsis paula gen. et sp. nov., holotype, ovigerous female (CL 4.0 mm), north of Île des Pins, New Caledonia (MNHN-IU-2018-4937): A, frontal region (right antennular peduncle broken), lateral view; B, same, dorsal view; C, telson and uropods, lateral view; D, telson, dorsal view.
Fig. 2 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Externae of Korean rhizocephalans in this study. Blue arrow: mantle aperture, scale bar: 2 mm for H and J, 1mm for A-G, I, K, L. A, Peltogasterella gracilis; B, Peltogasterella sp.; C, Peltogaster sp. 1; D, Parasacculina imberbis; E, Parasacculina pilosella; F, Parasacculina yatsui; G, Parasacculina oblonga; H, Parasacculina sp. 1; I, Polyascus cf. gregarius; J, Heterosaccus papillosus; K, Sacculina angulata; L, Sacculina gracilis. Externae of C and H are incomplete, because they were sampled for molecular analysis.
Fig. 5 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Centroid size (CS) means between the treatments. The differences were significant (p = 0.0015).
Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. Dispersion plot between the first two principal components (PC1 vs PC2) with the percentage of the variation explained by each axis. The ellipses represent 90% confidence around the mean shape of the treatments. The lower graphs represent the extremes of variation with a scale factor of -0.15 and 0.15 respectively. In both cases, the deformation is shown in color compared to the consensus form of light blue polygon.
Fig. 7 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 7. Trawl haul from EXBODI station CP3841 (depth: 477–503 m), north of Île des Pins, New Caledonia, type locality of Batellopsis paula gen. et sp. nov. Note the presence of several sponges, predominantly Hexactinellida, including the presumed host of Batellopsis paula gen. et sp. nov. and several spongicolid shrimps and galatheids. Photo credit: Laure Corbari et al., MNHN.
Fig. 6 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 6. Batellopsis paula gen. et sp. nov., holotype, ovigerous female (CL 4.0 mm), north of Île des Pins, New Caledonia (MNHN-IU-2018-4937): A, second pereiopod, lateral view; B, same, chela, mesial view; C, same, fingers with some microserrulate setae removed to show details of distal portion of fingers, mesial view; D, third pereiopod, lateral view; E, same, distal portion of propodus and dactylus, lateral view; F, fourth pereiopod, lateral view; G, fifth pereiopod, mesial view; H, same, propodus and dactylus, lateral view.
Fig. 5 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. Batellopsis paula gen. et sp. nov., holotype, ovigerous female (CL 4.0 mm), north of Île des Pins, New Caledonia (MNHN-IU-2018-4937): A, major cheliped, lateral view; B, same, chela, dorsolateral view; C, same, fingers, lateral view; D, same, mesial view; E, minor cheliped, lateral view; F, same, carpus and chela, mesial view; G, same, lateral view.
Fig. 2 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Typical examples of absorption spectra of body mucus. (A), Spectrum with no prominent absorptions (thick line, Phyllidia picta), spectrum with one absorption peak (arrow: middle line, Aldisa albatrossae), and spectrum with one shoulder (arrowhead, thin line, Sebadoris fragilis) in the visible-UVA-UVB range (280–800 nm). (B), Spectra with a peak in visible range (large arrow) and/or multiple peaks in the UVA-UVB range (arrows). Thick line, Chelidonura hirundinina; thin line, Asteronotus cespitosus.
Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Phylogenetic tree constructed using Maximum Likelihood (ML) and Bayesian Inference (BI) methods, based on the concatenation of 16S, CO1, and H3 gene sequences. The numbers above or below each branch indicate the Bootstrap support and Bayesian Posterior Probabilities, respectively. The tree represents the relationship among genera within hexactinellid-associated alpheid clades (ingroup, in colours), with two species of Prionalpheus and two species of Alpheopsis as outgroups (black lines). The genera Batella, Batellopsis gen. nov., Vexillipar and Bannereus are highlighted in yellow, blue, red, and green, respectively. Within each genus (coloured boxes), two main characters are illustrated: left, major cheliped fingers (with bulge-groove system or teeth); right, second pereiopod fingers, showing disposition of setae (organised in fan-like patterns or in simple tufts).
Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Refractive indices of the body mucus from 31 species of heterobranch sea slugs. The dashed line indicates the approximate refractive index of seawater (1.339). This plot does not include the data of Plakobranchus ocellatus, which are shown in figure 3.
Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Distribution map of the eight most common Korean rhizocephalans. Blue dotted lines indicate divisions between ecoregions mentioned in Muhammad et al. (2022) and Kim et al. (2020 2022).
Fig. 2 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Batellopsis paula gen. et sp. nov., holotype, ovigerous female (CL 4.0 mm), north of Île des Pins, New Caledonia (MNHN-IU-2018-4937): habitus, left lateral view [right side appendages omitted, except for major cheliped].
Fig. 2 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 2. Non-metric multidimensional scaling (NMDS) ordination for recovered amoebae species in enrichment media based on SØrensen similarity index of species presence (for media abbreviations see Materials and methods). © 2018 Academia Sinica, Taiwan
Fig. 1 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Hierarchical cluster analysis of recovered amoebae species in enrichment media (SØrensen similarity index, complete linkage Method). Vertical axis represents dissimilarity (for media abbreviations see Materials and methods). © 2018 Academia Sinica, Taiwan
Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. The numbers of families recovered using different culture media (for media abbreviations see Materials and methods).
Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. Predicted three-dimensional distribution of amino acids overlapped in convergent evolutionary analyses. (A), (B) CDH23 longer than 1500 amino acids were predicted into separate parts. Overlapped sites in CDH23 are indicated in blue. (C) Overlapped sites in OTOF are indicated in blue. (D) Overlapped sites in PRESTIN are indicated in blue.
Fig. 5 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 5. (A–I) Psolus nanoplax sp. nov. Martins & Tavares (MZUSP 589). SEM photomicrographs of the ossicles. (A) knobbed plate from dorsal body (B) supporting rod from dorsal tube feet; (C) "cup-like" plates from sole in dorsal view; (D) "cup-like" multiperforated plates from sole in ventral view; (E) "cup-like" four-holed plates from sole in dorsal view; (F) "cup-like" plates from sole in lateral view (G) knobbed plates from sole and (H–I) knobbed plates from ventral tube feet. Scale bars: A–B = 50 μm; C = 20 μm; D–I =, 30 μm.
Fig. 1. Species trees and alternative constraint convergence topologies. H0 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 1. Species trees and alternative constraint convergence topologies. H0 is the well-accepted species tree. H1, H2, and H3 are three alternate echolocator-converged topologies. H1-control, H2-control and H3-control refer to the constraint convergent topologies of representative non-echolocators (cow, hedgehog, and non-echolocating bats).
Fig. 4 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 4. (A–F) Psolus nanoplax sp. nov. (MZUSP 589, 592). (A) lateral view of holotype preserved in ethanol (note anal cone in white arrow); (B) upper view of [paratype-MZUSP 592] preserved in ethanol (note mouth and anus in black and red arrows, respectively); (C) detail of anal cone [holotype-MZUSP 592] (note anal cone and papillae, in white and red arrows, respectively); (D) detail of dorsal tube feet [holotype-MZUSP 592] (red arrow); (E) detail of lateral scales [paratype-MZUSP 592]; (F) ventral view detail of ambulacral feet [paratype-MZUSP 592], (note the inner and outer rows of tube feet: black and white arrows, respectively); (G) calcareous ring (H) detail of retractor muscle (white arrow) and (I) outline of the calcareous ring [paratype-MZUSP 592]; R, radial plate. IR, interradial plate. Note, only radial plate notched. Scale bars: A = 5 mm; B = 4 mm; C = 500 μm, D = 500 μm, E = 0.5 mm; F = 2 mm; G–I = 500 μm.
Fig. 3 in Positive association between PTN polymorphisms and schizophrenia in Northeast Chinese Han population.
Fig. 3. (A–F) Psolidium lonchostinum sp. nov., holotype (MZUSP 744). SEM photomicrographs of the ossicles. (A) four-holed smooth plate from sole, ventral view; (B) four-holed smooth plate from sole, dorsal view; (C–D) multiperforated smooth plate from sole, dorsal view; (E) four-holed smooth plate from sole, lateral view; (F) rod from ventral tube feet, dorsal view. Scale bars: A–B = 30 μm; C = 40 μm; D–E = 50 μm; F = 80 μm.
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.