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.
60
datasets available to search
ShareScore release 0.9.0
Dataset results
60 results for “diagnostic features”
FIGURE 6 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 6. Female Thelandros karkasensis sp. nov., A. General lateral view; B. En face view; C. Anterior end of body; D. Vulva, lateral view; E. Posterior end, lateral view; F. Posterior end, lateral view. Scale bars = 10 µm (B), 50 (C, E, F), 200 (D), 1000 (A).
FIGURE 2 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 2. Male Parapharyngodon thulini sp. nov.: A. General lateral view; B. General ventral view; C. En face view of head; D. Anterior end of body; E. Posterior end, ventral view; F. Posterior end, lateral view. Scale bars = 10 µm (C), 50 (D. F), 100 (E), 500 (A. B).
FIGURE 5 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 5. Male Thelandros karkasensis sp. nov.: A. General lateral view; B. En face view; C. Anterior end of body; D. Posterior end, ventral view; E. Posterior end, superficial lateral view; F. Posterior end, optical section. Scale bars = 25 (B), 50 (C. D. E. F), 400 (A).
FIGURE 4 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 4. Scanning electron micrographs of Parapharyngodon thulini sp. nov., male: A. En face view, arrows indicate amphids; B. Apical view of caudal extremity showing cloaca, three pairs of papillae and anal lip, arrow indicates last pair of papillae; C. Detail of postcloacal papillae; D. Detail of precloacal papillae; E. Genital cone with two subsurface structures. Female: F. En face view; G. Detail of cephalic extremities, arrows indicate amphids; H. Ventral view of posterior end terminating in a spike. Scale bars = 5 µm (C. D. E), 10 (A. G), 15 (F), 20 (B).
FIGURE 7 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 7. Scanning electron micrographs of Thelandros karkasensis sp. nov., male: A. General ventrolateral view of posterior end, B. Ventral view of cloacal region, with detail of anal lip, rod-shape precloacal papillae and flask shaped adcloacal papillae; C. Detail of precloacal papillae. Female: D. En face view, arrows indicate amphids; E. Lateral view of posterior end of body, showing vulva region and tail; F. Prevulvar extremities. Scale bars = 3 µm (C), 5 (D), 15 (B), 40 (F), 50 (A), 100 (E).
FIGURE 3 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 3. Female Parapharyngodon thulini sp. nov.: A. General lateral view; B. En face view; C. Anterior end of body; D. Vulva, lateral view; E. Posterior end, lateral view; F. Egg. Scale bars = 10 µm (B), 15 (C), 50 (F), 200 (D), 1000 (A).
FIGURE 2. Diagnostic features. A–G in A study on the genus Lagria from China with one new species and new distributional records (Coleoptera: Lagriinae)
FIGURE 2. Diagnostic features. A–G. Tibiae and aedeagus of Lagria (Lagria) medogensis sp. nov.. A. Male protibia; B. Male mesotibia; C. Male metatibia; D. Female mesotibia, arrows indicating tiny denticles; E. Female metatibia; F. Aedeagus, lateral view; G. Aedeagus, ventral view; H–I. Aedeagus of Lagria (Lagria) indicola. H. Lateral view; I. Ventral view.
FIGURE 4. Ensiferella kanmiyai Nartshuk diagnostic features. A in New species and new records of Chloropinae from Singapore (Diptera: Chloropidae)
FIGURE 4. Ensiferella kanmiyai Nartshuk diagnostic features. A, habitus (modified from: https://singapore.biodiversity. online/species/A-Arth-Hexa-Diptera-002634). B, male terminalia, profile. C, male terminalia, ventral. Abbreviations: an sc, anal sclerite; ba, basiphallus; di, distiphallus; ep, epandrium; hy, hypandrium; me, mesolobus; ph, phallapodeme; pr, pregonite; po, postgonite; su, surstylus.
Evaluation of a Diagnostic Feature in a Cardiac Resynchronization Therapy (CRT) Device
ClinicalTrials.gov study NCT00957541. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Clinical and Diagnostic Features of Endocarditis
ClinicalTrials.gov study NCT05547607. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
FIGURE 14 in Tamdamaeus staryi gen. nov., sp. nov. (Acari, Oribatida, Damaeidae) from Vietnam, with remarks on certain unusual diagnostic features
FIGURE 14. Tamdamaeus staryi sp. nov., adult, microscope image: lateral view.
FIGURE 13 in Tamdamaeus staryi gen. nov., sp. nov. (Acari, Oribatida, Damaeidae) from Vietnam, with remarks on certain unusual diagnostic features
FIGURE 13. Tamdamaeus staryi sp. nov., adult, microscope image: dorsal view.
FIGURE 1 in Gastrointestinal Nematodes of Laudakia nupta nupta (Sauria: Agamidae) from Iran with Descriptions of Two New Species (Oxyuridea: Pharyngodonidae) and comments on the diagnostic features of Parapharyngodon and Thelandros
FIGURE 1. Map of Iran and sampling locations (▲).
Interest Of Renal Elastography In Children As A Diagnostic Tool Of Renal Fibrosis: Confrontation To Histological Features Of Renal Biopsies
ClinicalTrials.gov study NCT01613625. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Corynebacterium Spp Bone and Joint Infection: Retrospective Study of Microbiological, Diagnostic and Therapeutic Features
ClinicalTrials.gov study NCT03081273. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Impact of Confinement and Preventive Measures in Period of SARS-COV2 Infection on Clinical Features, Diagnostic and Therapeutic Management and Prognosis of Patients With Lung Cancer
ClinicalTrials.gov study NCT04366219. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Fig. 8 in Comparative osteology of paradoxical frogs (Hylidae: Pseudae) with comments on diagnostic features, evolutionary trends and potential aquatic adaptations
Fig. 8. Hind limb bones of representative pseudine species compared to that of Xenohyla. Femur in lateral view, tibiofibula in ventral view, tibiale-fibulare in plantar view, all oriented with their distal end to bottom of page; foot in plantar view with its distal end to top of page. Skeletal data from CT-scans available at Morphosource. Scale bars equal 1 mm. Anatomical abbreviations in section 2.2.6.
Application of a classifier combining bronchial genomics and chest CT features facilitates the diagnostic evaluation of lung cancer in smokers and non-smokers
GEO Series GSE166926. Bronchus. 283 samples. Type: Expression profiling by high throughput sequencing.
Single-cell Atlas Reveals Diagnostic Features Predicting Progressive Drug Resistance in Chronic Myeloid Leukemia
<p>This archive contains data of scRNAseq and CyTOF in form of Seurat objects, txt and csv files as well as R scripts for data analysis and Figure generation.</p> <p>A summary of the content is provided in the following.</p> <p><strong>R scripts</strong></p> <p>Script to run Machine learning models predicting group specific marker genes: CML_Find_Markers_Zenodo.R<br> Script to reproduce the majority of Main and Supplementary Figures shown in the manuscript: CML_Paper_Figures_Zenodo.R<br> Script to run inferCNV analysis: inferCNV_Zenodo.R Script to plot NATMI analysis results:NATMI_CvsA_FC0.32_Updown_Column_plot_Zenodo.R Script to conduct sub-clustering and filtering of NK cells NK_Marker_Detection_Zenodo.R</p> <p>Helper scripts for plotting and DEG calculation:ComputePairWiseDE_v2.R, Seurat_DE_Heatmap_RCA_Style.R</p> <p><strong>RDS files</strong></p> <ul> </ul> <p><em>General scRNA-seq Seurat objects:</em></p> <ul> <li>scRNA-seq seurat object after QC, and cell type annotation used for most analysis in the manuscript: DUKE_DataSet_Doublets_Removed_Relabeled.RDS</li> <li>scRNA-seq including findings e.g. from NK analysis used in the shiny app: DUKE_final_for_Shiny_App.rds</li> <li>Neighborhood enrichment score computed for group A across all HSPCs: Enrichment_score_global_groupA.RDS </li> <li>UMAP coordinates used in the article: Layout_2D_nNeighbours_25_Metric_cosine_TCU_removed.RDS</li> </ul> <p><em>SCENIC files:</em></p> <ul> <li>Regulon set used in SCENIC: 2.6_regulons_asGeneSet.Rds</li> <li>AUC values computed for regulons: 3.4_regulonAUC.Rds</li> <li>MetaData used in SCENIC cellInfo.Rds</li> <li>Group specific regulons for LCS: groupSpecificRegulonsBCRAblP.RDS</li> <li>Patient specific regulons for LSC: patientSpecificRegulonsBCRAblP.RDS</li> <li>Patient specificity score for LSC: PatientSpecificRegulonSpecificityScoreBCRAblP.RDS</li> <li>Regulon specificty score for LSC: RegulonSpecificityScoreBCRAblP.RDS</li> </ul> <p><em>BCR-ABL1 inference:</em></p> <ul> <li>HSC with inferred BCR-ABL1 label: HSCs_CML_with_BCR-Abl_label.RDS</li> <li>UMAP for HSC with inferred BCR-ABL1 label: HSCs_CML_with_BCR-Abl_label_UMAP.RDS</li> <li>HSPCs with BCR-ABL1 module scores: HSPC_metacluster_74K_with_modscore_27thmay.RDS</li> </ul> <p><em>NK sub-clustering and filtering:</em></p> <ul> <li>NK object with module scores: NK_8617cells_with_modscore_1stjune.RDS</li> <li>Feature genes for NK cells computed with DubStepR: NK_Cells_DubStepR</li> <li>NK cells Seurat object excluding contaminating T and B cells: NK_cells_T_B_17_removed.RDS</li> <li>NK Seurat object including neighbourhood enrichment score calculations: NK_seurat_object_with_enrichment_labels_V2.RDS</li> </ul> <p><em>txt and csv files:</em></p> <ul> <li>Proportions per cluster calculated from CyTOF: CyTOF_Proportions.txt</li> <li>Correlation between scRNAseq and CyTOF cell type abundance: scRNAseq_Cor_Cytof.txt</li> <li>Correlation between manual gating and FlowSOM clustering: Manual_vs_FlowSOM.txt</li> <li>GSEA results: <ul> <li>HSPC, HSC and LSC results: FINAL_GSEA_DATA_For_GGPLOT.txt</li> <li>NK: NK_For_Plotting.txt</li> </ul> </li> <li>TFRC and HLA expression: TFRC_and_HLA_Values.txt</li> <li>NATMI result files: <ul> <li>UP-regulated_mean.csv</li> <li>DOWN-regulated_mean.csv</li> </ul> </li> <li>Gene position file used in inferCNV: inferCNV_gene_positions_hg38.txt</li> <li>Module scores for NK subclusters per cell: NK_Supplementary_Module_Scores.csv</li> </ul> <p>Compressed folders:</p> <ul> <li>All CyTOF raw data files: CyTOF_Data_raw.zip</li> <li>Results of the patient-based classifier: PatientwiseClassifier.zip</li> <li>Results of the single-cell based classifier: SingleCellClassifierResults.zip</li> </ul> <p> </p> <p>For general new data analysis approaches, we recommend the readers to use the Seruat object stored in <a href="https://zenodo.org/api/files/fef7a797-4b53-4473-ba55-17c36557e318/DUKE_final_for_Shiny_App.rds?versionId=5986649e-349d-4ed3-ac3e-7673ab988bf2">DUKE_final_for_Shiny_App.rds</a> or to use the shiny app(<a href="http://scdbm.ddnetbio.com/">http://scdbm.ddnetbio.com/</a>) and perform further analysis from there.</p> <p>RAW data is available at EGA upon request using Study ID: EGAS00001005509</p> <p><strong>Revision</strong></p> <p>The for_CML_manuscript_revision.tar.gz folder contains scripts and data for the paper revision including 1) Detection of the BCR-ABL fusion with long read sequencing; 2) Identification of BCR-ABL junction reads with scRNAseq; 3) Detection of expressed mutations using scRNAseq.</p>
Additional diagnostic value of cardiac magnetic resonance feature tracking in patients with biopsy-proven arrhythmogenic cardiomyopathy
<p>This record contains raw data related to the article “Additional diagnostic value of cardiac magnetic resonance feature tracking in patients with biopsy-proven arrhythmogenic cardiomyopathy”<br> </p> <p>Abstract</p> <p><strong>Background: </strong>We aim to evaluate the value of Cardiac magnetic resonance (CMR) feature tracking (CMR-FT) in addition to Task Force Criteria(TFC) in patients with (arrhythmogenic cardiomyopathy) AC biopsy-proved.</p> <p><strong>Methods: </strong>Thirty-five patients with AC histologically proven who performed CMR with late gadolinium enhancement (LGE) acquisition were enrolled. The study population was divided in Group1 (negative CMR TFC and LV ejection fraction≥55%) and Group2 (positive CMR TFC and/or LVEF<55%) and compared to an age and gender-matched control group. CMR datasets of all patients were analyzed to calculate LV indexed end-diastolic (LVEDi) and end-systolic (LVESi) volumes and RV indexed end-diastolic (RVEDi) and end-systolic (RVESi) volumes, both LV ejection fraction (LVEF) and RV ejection fraction (RVEF). Moreover, LV and RV global longitudinal (GLS), circumferential (GCS) and radial (GRS) strain were measured.</p> <p><strong>Results: </strong>The AC patients showed both higher LVEDi (p:0.002) and RVEDi (p:0.017) and lower LVEF (p: 0.016) as compared to control patients. Moreover, AC patients showed impaired LV-GLS (p < 0.001), LV-GRS (p < 0.001), LV-GCS (p < 0.001) and RV-GRS (p:0.026) as compared to control subjects. Group1 patients showed a significant reduction of LV-GRS (p < 0.05) and LV-GCS p < 0.01) as compared to control subjects. At univariate analysis LV-GCS was the most discriminatory parameter between Group1 vs heathy subjects with an optimal cut-off of -15.8 (Sensitivity: 74%; Specificity: 10%).</p> <p><strong>Conclusions: </strong>In patients with AC biopsy-proven, CMR-FT could improve the diagnostic yield in the subset of patients who results negative for imaging TFC criteria resulting as useful gatekeeper for indication of myocardial biopsy in case of equivocal clinical and imaging presentation.</p> <p> </p>
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.