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478 results for “Micrograph”
FIGURE 7. SEM micrograph. A in How many species of genus Lernaeopoda Blainville, 1822 (Siphonostomatoida: Lernaeopodidae) are there in the southwestern Atlantic?
FIGURE 7. SEM micrograph. A—armature on the antennule endopod of specimen X6, B—armature on the antennule endopod of specimen X9, C—other view of the antennule of specimen X9. D—partial view of maxillule of specimen X5, E—Maxilliped of specimen X9, F—claw of the specimen X9 showing the annexed barb, denticle and row of denticles, G—myxal area with spine in specimen X9. H—myxal area in specimen X5, Abbreviations: Ab = Annexed barb, Cl = Claw, D = Denticles, E = Endite, Rd = Rod denticles, s = Spine, Se = Spinules, in Sp = Spines on maxilliped, 1, 2, 3, 4, 5, 6, Armature.
Ethyl Chloride Spray to Reduce Pain From Local Anesthesia During Mohs Micrographic Surgery
ClinicalTrials.gov study NCT06920381. IPD Sharing: Not stated. Countries: 1. Publications: 8.
Use of Tranexamic Acid in Reduction of Post-Op Complications in Mohs Micrographic Surgery
ClinicalTrials.gov study NCT04630886. IPD Sharing: NO. Countries: 1. Publications: 2.
Pinch Grafting Versus Second Intention Wound Healing for Mohs Micrographic Surgery Defects on the Scalp
ClinicalTrials.gov study NCT06287866. IPD Sharing: Not stated. Countries: 1. Publications: 6.
Meloxicam in Mohs Micrographic Surgery
ClinicalTrials.gov study NCT07200544. IPD Sharing: NO. Countries: 1. Publications: 6.
Assessing Patient Anxiety During Mohs Micrographic Surgery
ClinicalTrials.gov study NCT03756792. IPD Sharing: NO. Countries: 1. Publications: 9.
Complications and Recurrences After Mohs Micrographic Surgery and Slow Mohs
ClinicalTrials.gov study NCT06014619. IPD Sharing: UNDECIDED. Countries: 1. Publications: 12.
Micrographs of strains with MultiduBE before and after induction
Open the record for dataset details and reuse information.
Figure 3. Scanning electron micrographs A Sania marjoriae Mason, 1983 in Revision of Khoikhoiinae (Hymenoptera, Braconidae)
Figure 3. Scanning electron micrographs A Sania marjoriae Mason, 1983, female, head lateral view B Sania masoni Sharkey, sp. n., female, head, lateral view C Khoikhoia anthelion Sharkey, sp. n., female, antennal scape (showing apical flange) and details of antennal scrobe, lateral view D Khoikhoia anthelion Sharkey, sp. n., female, subalar region, lateral view E Sania marjoriae Mason, 1983, female, subalar region, lateral view F Sania masoni Sharkey, sp. n., female, subalar region, lateral view.
Figure 2. Scanning electron micrographs A in Revision of Khoikhoiinae (Hymenoptera, Braconidae)
Figure 2. Scanning electron micrographs A Khoikhoia anthelion Sharkey, sp. n., female, mesosoma and first two metasomal tergites, dorsal view B Sania browni Sharkey, sp. n., female, propodeum and first three metasomal tergites, dorsal view C Sania marjoriae Mason, 1983, female, propodeum and laterotergites, lateral view D Sania masneri Sharkey, sp. n., male, genitalia E Sania masoni Sharkey, sp. n., male, metasoma, lateral view, showing genitalia F Khoikhoia anthelion Sharkey, sp. n., female, ovipositor, lateral view.
Fig. 13. Cistenides hyperborea Malmgren, 1866. SEM micrographs from a in Taxonomy and distribution of Pectinariidae (Annelida) from Iceland with a comparative analysis of uncinal morphology
Fig. 13. Cistenides hyperborea Malmgren, 1866. SEM micrographs from a small specimen (BIOICE sample 2041, IINH-40470). A. Anterior end, ventral view. B. Unciniger 2, median uncini. C–E. Unciniger 10, dorsal, median and ventral uncini, respectively. F. Scaphal hooks.
Fig. 3. Cobbionema acrocerca Filipjev, 1922. Light micrographs. A in Revision of the genus Cobbionema Filipjev, 1922 (Nematoda, Chromadorida, Selachinematidae)
Fig. 3. Cobbionema acrocerca Filipjev, 1922. Light micrographs. A. Female stoma showing stoma armament, arrow pointing to the left ventrosublateral tine (SMNH-179217). B. Anterior part of a female with arrow pointing to the sphincter muscle surrounding the anterior stoma chamber (SMNH-179217). C. Anterior part of a female with arrow showing the ampulla of the secretory-excretory system (SMNH-179218). D. Caudal region a male showing spicule. E. Caudal region of a male showing the crura (arrow) (SMNH-179218). F. Cuticle showing lateral ala (SMNH-179223). G. Nematode prey inside a female (arrow) (SMNH-179216). H. Male caudal region (SMNH-179217). I. Female caudal region (SMNH-179223).
Dataset for "MicrographCleaner: A python package for cryo-EM micrograph cleaning using deep learning"
<div></div> <div><a href="https://zenodo.org/api/records/17093439/draft/files/micrographCleaner_dataset.tar.gz/content" target="_blank" rel="noopener noreferrer">micrographCleaner_dataset.tar.gz</a>: </div> <p>The dataset used for the Publicaton "MicrographCleaner: A python package for cryo-EM micrograph cleaning using deep learning" <a href="https://doi.org/10.1016/j.jsb.2020.107498">https://doi.org/10.1016/j.jsb.2020.107498</a></p> <div> </div> <div></div> <div><a href="https://zenodo.org/api/records/17093439/draft/files/deepMicrographCleaner.tgz/content" target="_blank" rel="noopener noreferrer">deepMicrographCleaner.tgz</a>: the tensorflow-2-compatible model checkpoint</div> <p> </p>
Рис. 2. Фотографии Metadesmolaimus longicaudatus sp. nov., гоΛотип самца (a, c, d, g, h) и паратип самки (b, e, f, j). a, b — общий виΔ; c — переΔний конец теΛа; d, e — гоΛова; f — теΛо в обΛасти вуΛьвы; g — теΛо в обΛасти кΛоаки; h, j — заΔний конец теΛа. Масштаб: a, b — 100 мкм; c — 50 мкм; f, h, j — 20 мкм; d, e, g — 10 мкм Fig. 2. Light micrograph of Metadesmolaimus longicaudatus sp. nov., male holotype (a, c, d, g, h) and female paratype (b, e, f, j), a, b — general view; c — anterior body end; d, e — head; f — vulvar region; g — cloaca region; h, j — posterior body end;. Scale bars: a, b — 100 μm; c — 50 μm; h, j — 20 μm; d, e, g — 10 μm in Two New Species Of The Family Xyalidae Chitwood, 1951 (Nematoda, Monhysterida) From The Water Bodies Of Vietnam
Рис. 2. Фотографии Metadesmolaimus longicaudatus sp. nov., гоΛотип самца (a, c, d, g, h) и паратип самки (b, e, f, j). a, b — общий виΔ; c — переΔний конец теΛа; d, e — гоΛова; f — теΛо в обΛасти вуΛьвы; g — теΛо в обΛасти кΛоаки; h, j — заΔний конец теΛа. Масштаб: a, b — 100 мкм; c — 50 мкм; f, h, j — 20 мкм; d, e, g — 10 мкм Fig. 2. Light micrograph of Metadesmolaimus longicaudatus sp. nov., male holotype (a, c, d, g, h) and female paratype (b, e, f, j), a, b — general view; c — anterior body end; d, e — head; f — vulvar region; g — cloaca region; h, j — posterior body end;. Scale bars: a, b — 100 μm; c — 50 μm; h, j — 20 μm; d, e, g — 10 μm
Text-fig. 2. Rhinoppioides quadrituberculatus MIKO gen. et sp. nov. A – rostrum; B – variation of sensillus; C – ventral view on lateral part of epimeral region; D – laterodorsal view on bothridial and sejugal area; E – ventral spines Va (drawing and micrograph of the part of ventral plate of paratype). Bars indicating 50 µm. For explanation of acronyms see page 31. in Oribatid Mite Fossils From Quaternary And Pre-Quaternary Sediments In Slovenian Caves I.Two New Genera And Two New Species Of The Family Oppiidae From The Early Pleistocene
Text-fig. 2. Rhinoppioides quadrituberculatus MIKO gen. et sp. nov. A – rostrum; B – variation of sensillus; C – ventral view on lateral part of epimeral region; D – laterodorsal view on bothridial and sejugal area; E – ventral spines Va (drawing and micrograph of the part of ventral plate of paratype). Bars indicating 50 µm. For explanation of acronyms see page 31.
Buccal dental microwear micrographs from different Late Prehistory farming groups obtained with optical microscopy
<p><strong>Buccal dental microwear images and database from different Late prehistory farming groups from the Iberian Peninsula analyzed with the Optical Microscope at 100 magnifications.</strong></p> <p>Groups analyzed: Cova de l´Avi (Vallirana, Barcelona), Can Sadurní (Begues, Barcelona), Cova de la Guineu (Font-Rubí, Barcelona), Cova Foradada (Calafell, Tarragona), Cova del Trader (Cubelles, Barcelona), Roc de les Orenetes (Ripollès, Girona), Cova del Gegant (Sitges, Barcelona), Cova dels Galls Carboners (Mont-ral, Tarragona).</p> <p>Methodology explained in: Hernando, R., Fernández-Marchena, J. L., Willman, J. C., Ollé, A., Vergès, J. M., & Lozano, M. (2020). Exploring the utility of optical microscopy versus scanning electron microscopy for the quantification of dental microwear. <em>Quaternary International</em>, <em>569</em>, 5-14.</p> <p>Related paper: Hernando, R; Moreno-Ibáñez, M.Á., Carbonell, E., Cebrià, A., Daura, J., Díez-Canseco, C., Edo, M., Fullola, J., Morales, J.I., Oms, F.X., Ramírez-Pedraza, I., Sanz, M., Subirà, M.E., Tornero, C., Vergès, J.M., Lozano, M. (2024). Eating through time: Understanding dietary practices across late Prehistory in the northeastern Iberian Peninsula. Am. J. Biol. Anthropol. e24950. DOI:10.1002/ajpa.24950</p>
FIGURES J19–J25 in The morphological diversity of Mymaridae (Hymenoptera): an atlas of scanning electron micrographs. Part 3. Structure of the metasoma
FIGURES J19–J25. Mymaridae, apex of gaster, posterior (males).
FIGURES I22–J6 in The morphological diversity of Mymaridae (Hymenoptera): an atlas of scanning electron micrographs. Part 3. Structure of the metasoma
FIGURES I22–J6. Mymaridae, apex of gaster, ventral (I22–I25), posteriors (J1–J6) (males).
FIGURES H15–H25 in The morphological diversity of Mymaridae (Hymenoptera): an atlas of scanning electron micrographs. Part 3. Structure of the metasoma
FIGURES H15–H25. Mymaridae, apex of gaster, lateral (males).
FIGURES H4–H14 in The morphological diversity of Mymaridae (Hymenoptera): an atlas of scanning electron micrographs. Part 3. Structure of the metasoma
FIGURES H4–H14. Mymaridae, apex of gaster, lateral (males).
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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.