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222 results for “Cytology”
Fig. 11 in Hybridization Between Parthenogenetic Lizards (Aspidoscelis neomexicana) and Gonochoristic Lizards (Aspidoscelis sexlineata viridis) in New Mexico: Ecological, Morphological, Cytological, and Molecular Context
Fig. 11. Adult specimens of Aspidoscelis neomexicana of special significance. A. AMNH R151740 /, SVL 73 mm, from Cove Campground (CL13), Conchas Lake, San Miguel County, New Mexico, used in karyotypic and electrophoretic analyses in this study. B. MSB 65617 /, SVL 79 mm, from Fort Sumner–De Baca County Landfill (FS1), Fort Sumner, De Baca County, New Mexico; first reported specimen of the species from the county (Taylor, 2002). C. AMNH R151741 /, SVL 73 mm, from Fort Sumner–Railroad Depot (FS2), Fort Sumner, De Baca County, New Mexico, used in karyotypic and electrophoretic analyses in this study.
Fig. 8 in Hybridization Between Parthenogenetic Lizards (Aspidoscelis neomexicana) and Gonochoristic Lizards (Aspidoscelis sexlineata viridis) in New Mexico: Ecological, Morphological, Cytological, and Molecular Context
Fig. 8. Four or five generations represented by specimens of Aspidoscelis neomexicana 3 A. sexlineata viridis from South Recreation Area (CL2*), Conchas Lake, San Miguel County, New Mexico, inferred from date of collection and snout–vent length (mm). Some lizards are active at the site from May to October (MJJASO) each year; horizontal line representing each lizard extends from the inferred year and month of hatching to the actual year and month of collection (. 5 younger or older age uncertain).
Fig. 15 in Hybridization Between Parthenogenetic Lizards (Aspidoscelis neomexicana) and Gonochoristic Lizards (Aspidoscelis sexlineata viridis) in New Mexico: Ecological, Morphological, Cytological, and Molecular Context
Fig. 15. Pattern of morphological variation expressed by the distribution of scores on the first two principal components extracted from a correlation matrix of eight meristic characters for 49 A. neomexicana (Ơ), 26 A. sexlineata viridis (m 5? and M 5 /), 13 A. neomexicana 3 A. sexlineata viridis (v 5? and V 5 /), AMNH 144085 5 UADZ 3272 (3, assigned to the hybrid group as indicated by Walker et al., 1990), OMNH 35109 (1, assigned to the hybrid group as suspected by B.E. Leuck), and 26 A. tesselata C (n) from Conchas Lake, San Miguel County, New Mexico. Ellipses represent the 95% confidence limits of each group.
Fig. 14 in Hybridization Between Parthenogenetic Lizards (Aspidoscelis neomexicana) and Gonochoristic Lizards (Aspidoscelis sexlineata viridis) in New Mexico: Ecological, Morphological, Cytological, and Molecular Context
Fig. 14. Comparison of mesoptychial scale size in parental forms and their hybrids. A. UADZ 7318 /, SVL 80 mm, small scales in Aspidoscelis neomexicana. B. UADZ 7464 /, SVL 68 mm, small scales in A. neomexicana. C. UADZ 7396 /, SVL 63 mm, greatly enlarged scales in A. sexlineata viridis. D. UADZ 7553?, SVL 72 mm, enlarged scales in A. neomexicana 3 A. sexlineata viridis. E. UADZ 7554 /, SVL 79 mm, enlarged scales in A. neomexicana 3 A. sexlineata viridis.
Fig. 6 in Hybridization Between Parthenogenetic Lizards (Aspidoscelis neomexicana) and Gonochoristic Lizards (Aspidoscelis sexlineata viridis) in New Mexico: Ecological, Morphological, Cytological, and Molecular Context
Fig. 6. An example of extreme habitat degradation resulting from the activities of man south of Conchas Lake in South Recreation Area (CL2*), San Miguel County, New Mexico. Looking northeast across the Juniper Campground Component (CL2J*) from which individuals of Aspidoscelis neomexicana, A. tesselata C and D, A. exsanguis, A. sexlineata viridis, and A. neomexicana 3 A. sexlineata viridis (including AMNH R151739 used in karyotypic and electrophoretic analyses in this study) have been collected.
Cytological and histological images of breast cancer
<p>Data set of cytological and histological images of breast cancer.</p> <p><strong>Data set structure</strong>:</p> <ol> <li>Cytological image files (size 3264x2448 px, microscope with x40 lens used). The name of each folder contains the name of the diagnosis.</li> <li>Files of histological and corresponding immunohistochemical images of breast tissue sections (size 2048x1536 px). The name of each folder contains the name of the diagnosis. Each folder contains 1 H&E histological image and 4 folders with IHC images for 4 biomarkers: estrogen receptor (ER), progesterone receptor (PR), Ki-67 Biomarker (KI67), human epidermal growth factor receptor-2 (HER2NEU).</li> </ol>
Comparison Between Combined Scoring of Bethesda Cytology and TIRADS Ultrasound With Histopathology in Thyroid Nodule
ClinicalTrials.gov study NCT06391021. IPD Sharing: NO. Countries: 1. Publications: 1.
Optimal Strategy for the Management of ASCUS Cytology in Health Care Services of Medellin, Colombia
ClinicalTrials.gov study NCT02067468. IPD Sharing: Not stated. Countries: 1. Publications: 23.
Multiparametric Magnetic Resonance Imaging Versus Fine Needle Aspiration Cytology for Parotid Gland Neoplasms
ClinicalTrials.gov study NCT03849482. IPD Sharing: NO. Countries: 1. Publications: 4.
FDG-PET/CT in Evaluation of Cytological Indeterminate Thyroid Nodules to Prevent Unnecessary Surgery (EfFECTS)
ClinicalTrials.gov study NCT02208544. IPD Sharing: YES. Countries: 1. Publications: 8.
Feasibility of Delphi Screener for Cervical Cytology
ClinicalTrials.gov study NCT00702208. IPD Sharing: Not stated. Countries: 1. Publications: 1.
The Ultracyt Study - is EU-TIRADS Useful in Selecting Nodules for Fine Needle Aspiration Cytology?
ClinicalTrials.gov study NCT05583097. IPD Sharing: YES. Countries: 1. Publications: 2.
Heated Intraperitoneal Chemotherapy and Gastrectomy for Gastric Cancer With Positive Peritoneal Cytology
ClinicalTrials.gov study NCT03092518. IPD Sharing: YES. Countries: 1. Publications: 3.
UroCAD Assay Combined With Computed Tomography Urography and Urine Cytology for UTUC Diagnosis.
ClinicalTrials.gov study NCT05043662. IPD Sharing: NO. Countries: 1. Publications: 3.
Supplementary material 1 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Taxon, voucher information and GenBank accession number of the samples used in the phylogenetic analyses.
TF Cytology
<p>Data from research grant funded by the National Science Centre of Poland (SONATA BIS)</p>
FIGURE 4 in Begonia ×dinglensis, a natural hybrid of Philippine Begonia section Baryandra, as evidenced by morphological, phylogenetic and cytological data
FIGURE 4. Begonia ×dinglensis. A. habit. B. inflorescence. C. staminate flower. D. pistillate flower. E. developing capsule. F. leaf, abaxial view. G. rhizome. Scale bars for A is 10 cm, B and G are 1 cm, C–E are 0.5 cm, F is 3 cm. [All photos from Ching-I Peng 23859 (HAST).]
FIGURE 1 in Begonia ×dinglensis, a natural hybrid of Philippine Begonia section Baryandra, as evidenced by morphological, phylogenetic and cytological data
FIGURE 1. Map of the Philippines indicating the location of Bulabog Puti-an National Park (star) in Panay Island, where the hybrid Begonia ×dinglensis and its parental species occur. Known localities of B. camiguinensis (square) and B. nigritarum (circle) are shown.
FIGURE 3. Begonia nigritarum. A. habit. B. inflorescence. C. staminate flower. D. pistillate flower. E. developing capsule. F. leaf, abaxial view. G. rhizome. Scale bars for A in Begonia ×dinglensis, a natural hybrid of Philippine Begonia section Baryandra, as evidenced by morphological, phylogenetic and cytological data
FIGURE 3. Begonia nigritarum. A. habit. B. inflorescence. C. staminate flower. D. pistillate flower. E. developing capsule. F. leaf, abaxial view. G. rhizome. Scale bars for A is 10 cm, B and G are 1 cm, C–E are 0.5 cm, F is 3 cm. [All photos from Ching-I Peng 23858 (HAST).]
FIGURE 6 in Begonia ×dinglensis, a natural hybrid of Philippine Begonia section Baryandra, as evidenced by morphological, phylogenetic and cytological data
FIGURE 6. Somatic chromosomes at metaphase. A. B. ×dinglensis (2n = 29: Ching-I Peng 23859). B. Begonia camiguinensis (2n = 28: Ching-I Peng 23853). C. B. nigritarum (2n = 30: Ching-I Peng 23858).
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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.