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.
463
datasets available to search
ShareScore release 0.9.0
Dataset results
463 results for “Abdomen”
Abb. 320-333 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 320-333: Aedoeagus (bzw. vordere Partie) von Stenus laboriosus nov.sp. (HT, 320), S. mediocris PUTHZ (HT, 321), S. metallescens BERNHAUER (Argentinien, Isla Martin Garcia, 322), S. parae SHARP (Brasilien, Para, 323), S. pseudojunceus PUTHZ (HT, ohne Innenkörper, 324), S. quipu nov.sp. (HT, 325), S. rectipunctus nov.sp. (HT, 326), S. sagittarius PUTHZ (HT, 327), S. sharkeyi nov.sp. (HT, 328), S. similigenus nov.sp. (HT, 329), S. subcoeruleus L. BENICK (HT, 330), S. surinamus nov.sp. (HT, 331), S. tabascensis BERNHAUER (HT, 332), S. traversifrons PUTHZ (HT, 333). Massstab = 0,1mm.
Abb. 73-92 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 73-92: 3. Tergit (73) und 7. Tergit (94-92) von Stenus extensus SHARP (Bolivien, Ayacucho, 73), S. ariolus ERICHSON (PLT, 74), S. parae SHARP (HT, 75), S. acupictus nov.sp. (HT, 76), S. struyvei nov.sp. (HT, 77), S. balzani nov.sp. (HT, 78), S. chiriquensis SHARP (Argentinien, 79; HT, 80), S. dilativentris nov.sp. (HT, 81), S. herbaceus L. BENICK (Costa Rica, Guapiles, 82), S. igarapecola nov.sp. (HT, 83), S. incisiventris nov.sp. (HT, 84), S. laboriosus nov.sp. (HT, 85), S. lapsus nov.sp. (HT, 86), S. lindemanni nov.sp. (HT, 87), S. ocrearius nov.sp. (HT, 88), S. panamensis L. BENICK (Panama, Cerro Campana, 89), S. pilosivestis nov, sp. HT, 90), S. quipu nov.sp. (HT, 91), S. repentinus nov.sp. (HT, 92).
Abb. 49-64 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 49-64: Elytren von Stenus exulans SHARP (HT, 49), S. lavinia nov.sp. (HT, 50), S. nigratus nov.sp. (HT, 51), S. absconditus nov.sp. (HT, 52), S. parae SHARP (HT, 53), S. acupictus nov.sp. (HT, 54), S. graciliformis nov.sp. (HT, 55), S. lapsus nov.sp. (HT, 56), S. dilativentris nov.sp. (PT, 57), S. sharkeyi nov.sp. (HT, 58), S. vexabilis nov.sp. (HT, 59), S. pilosivestis nov.sp. (HT, 60), S. rectipunctus nov.sp. (HT, 61), S. surinamus nov.sp. (HT, 62). S. interpolator nov.sp. (HT, 63), S. brevivestis nov.sp. (PT, 64).
Abb. 28-38 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 28-38: Köpfe (28-35), Kopf und Pronotum (36), Pronotum (37, 38) von Stenus similigenus nov.sp. (HT, 28), S. struyvei nov.sp. (HT, 29), S. surinamus nov.sp. (PT, 30), S. tim nov.sp. (HT, 31), S. vexabilis nov.sp. (HT, 32), S. flinti PUTHZ (Brasilien, Barro Tapirape, 33), S. anatipenis nov.sp. (HT, 34), S. interpolator nov.sp. (HT, 35), S. ariolus ERICHSON (PT, 36), S. exulans SHARP (HT, 37), S. denticollis FAUVEL (Kolumbien, Caldas, 38).
Abb. 39-48 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 39-48: Pronotum bzw. Vorderkörper (46) von Stenus macrophallus PUTHZ (PT, 39), S. podagricus SHARP (Guatemala, Los Amates, 40), S. parae SHARP (HT, 41), S. acupictus nov.sp. (HT, 42), S. fulgurans nov.sp. (HT, 43), S. vexabilis nov.sp. (HT, 44), S. surinamus nov.sp. (HT, 45), S. balzani nov.sp. (HT, 46), S. actephilus L. BENICK (Costa Rica, Rio Turrialba, 47), S. ariolus ERICHSON (PLT, 48).
Abb. 13-27 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 13-27: Köpfe von Stenus parae SHARP (HT, 13), S. acupictus nov.sp. (HT, 14), S. rectipunctus nov.sp. (HT, 15), S. chiriquensis SHARP (HT, 16), S. dilativentris nov.sp. (PT, 17), S. graciliformis nov.sp. (HT, 18), S. igarapecola nov.sp. (HT, 19), S. incisiventris nov.sp. (HT, 20), S. sharkeyi nov.sp. (HT, 21), S. laboriosus nov.sp. (HT, 22), S. lapsus nov.sp. (HT, 23), S. lavinia nov.sp. (HT, 24), S. ocrearius nov.sp. (HT, 25), S. lindemanni nov.sp. (HT, 26), S. quipu nov.sp. (HT, 27).
Karte 1 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Karte 1: Verbreitung der Stenus-Arten der Welt (Stand XII. 2016 inkl. diese Arbeit). Die erste Zahl gibt den Artenbestand der jeweiligen Region an, wobei die holarktischen Arten zu denen der (Nearktis + Palaearktis) hinzugezählt werden müssen. Die Zahlen der Neuen Welt enthalten jeweils auch Arten, die sowohl in Nord- als auch in Südamerika vorkommen. Die eingeklammerten Zahlen sind folgendermassen zu verstehen: (a) Arten mit ungerandetem Abdomen und gelappten Tarsen, (b) Arten mit ungerandetem Abdomen und einfachen Tarsen, (c) Arten mit seitlich gerandetem Abdomen und gelappten Tarsen. Da die Übergänge zwischen den Arten mit seitlich gerandetem Abdomen zu denen mit daselbst ungerandetem Abdomen fliessend sind, kann man sich die Zahl (a) auf Kosten von Zahl (c) noch deutlich höher vorstellen.
Abb. 149-168 in Übersicht über die neotropischen Arten der Gattung Stenus LATREILLE mit seitlich ungerandetem Abdomen und gelappten Tarsen (Coleoptera, Staphylinidae) 351. Beitrag zur Kenntnis der Steninen
Abb. 149-168: 10. Tergit (149-159, 161-164) und 9. Sternit (bzw. hintere Partie) des? (160, 165- 168) von Stenus mantiqueira PUTHZ (PT, 149), S. plaumanni L. BENICK (Brasilien, Isla Martin Garcia, 150), S. plaumanniellus PUTHZ (PTT,?, 151; /, 155), S. ventralis SHARP (Brasilien, Belem, 152), S. brasiliensis SCHEERPELTZ (HT, 153), S. sagittarius PUTHZ (PT, 154), S. shepardi nov.sp. (HT, 156), S. lindemanni nov.sp. (HT, 157), S. panamensis L. BENICK (Panama, Cerro Campana, 158), S. struyvei nov.sp. (HT, 159), S. fulgurans nov.sp. (HT, 160), S. quipu nov.sp. (HT, 161), S. tim nov.sp. (PTT,?, 162; /, 163; /, Soberania, 164), S. balzani nov.sp. (HT, 165), S. dilativentris nov.sp. (PT, 166), S. guagua nov.sp. (HT, 167), S. igarapecola nov.sp. (HT, 168). Massstab = 0,1mm
Figs. 119–126. Brignolia dasysterna, new species. 119. Male abdomen, anterior view. 120. Left male palp, dorsal view. 121. Left male embolus, ventral view. 122. Same, prolateral view. 123. Same, retrolateral view. 124. Female carapace, posterior view. 125 in The Goblin Spider Genus Brignolia (Araneae, Oonopidae)
Figs. 119–126. Brignolia dasysterna, new species. 119. Male abdomen, anterior view. 120. Left male palp, dorsal view. 121. Left male embolus, ventral view. 122. Same, prolateral view. 123. Same, retrolateral view. 124. Female carapace, posterior view. 125. Female carapace, posterior margin, dorsal view. 126. Female abdomen, anterior view.
Figures 43–50. Male abdomen, segment A8. 43 in Moths of the tribe Pseudoterpnini (Geometridae: Geometrinae): a review of the genera
Figures 43–50. Male abdomen, segment A8. 43, Absala dorcada; 44, Calleremites subornata; 45, Crypsiphona melanosema; 46, Cyneoterpna wilsoni; 47, Herochroma mansfieldi; 48, Orthorisma netunaria; 49, Paraterpna harrisoni; 50, Aeolochroma acanthina.
DICOM images of abdomen CT phantom in axial, helicoid, iterative and dual energy scans.
<p>The two ZIP files contain the images of a CT phantom of abdomen. DualEnergy.zip contains files of acquisition at 80 kVp and 140 kVp. The second file HelicalAxialIterative.zip contains acquisition done in axial, helicoidal (aka spiral) and iterative reconstruction (Saphire) modes. Axial images have AbdSeq in the name, Helicoidal have Abdomen and B in the filter name, Iterative have Abdomen and I in the filter name. You can compare Exposure in mAs for each acquisition modality, how it diminishes from sequential/helicoidal/axial through helicoidal/spiral to iterative. This scanner if programmed with iterative acquisition can still reduce exposure from helicoidal scan. The acquisition was done on Siemens-Healthineers Somatom Confidence CT scanner. </p> <p>Antonio Ortiz Lora antonio.ortiz.lora.sspa@juntadeandalucia.es</p> <p>Marcin Balcerzyk mbalcerzyk@us.es</p> <div class="ms-editor-squiggler"> </div>
Figure 8. - Palaemonyuna sp. n. Figures i and m holotype; figures a–e, g, h, j–l paratype (CCDB 4866, male, CL 5.5 mm); figure f paratype (CCDB 4866, female, CL 5.5 mm). a left third pereiopod, lateral view b left fourth pereiopod, lateral view c distal portion of the left fifth pereiopod, lateral view d left fifth pereiopod, lateral view e left first pleopod, posterior view f left first pleopod, posterior view g left second pleopod, posterior view h left appendix masculina and appendix interna, posterior view i right posterior part of the abdomen, lateral view j pre-anal fig, ventral view k telson and uropods, dorsal view l distal part of the telson, dorsal view m left distal portion of the exopod of the uropod, dorsal view. Scale bar: a, b, d–g, i, k equal to 1 mm; c, j, m equal to 0.5 mm; h, l equal to 0.25 mm.
Figure 8. - Palaemonyuna sp. n. Figures i and m holotype; figures a–e, g, h, j–l paratype (CCDB 4866, male, CL 5.5 mm); figure f paratype (CCDB 4866, female, CL 5.5 mm). a left third pereiopod, lateral view b left fourth pereiopod, lateral view c distal portion of the left fifth pereiopod, lateral view d left fifth pereiopod, lateral view e left first pleopod, posterior view f left first pleopod, posterior view g left second pleopod, posterior view h left appendix masculina and appendix interna, posterior view i right posterior part of the abdomen, lateral view j pre-anal fig, ventral view k telson and uropods, dorsal view l distal part of the telson, dorsal view m left distal portion of the exopod of the uropod, dorsal view. Scale bar: a, b, d–g, i, k equal to 1 mm; c, j, m equal to 0.5 mm; h, l equal to 0.25 mm.
Figs 57–60. Abdomen morphology. 57 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY
Figs 57–60. Abdomen morphology. 57 – Rhabdocupes rostratus; 58 – Conexicoxa
Micro-CT abdominal reconstruction of a worker honeybee abdomen
<p><strong>Micro-CT abdominal reconstruction of worker honeybees.</strong><em> </em></p> <p>The samples were obtained from a honeybee colony located in Cortijo Tinajas (Lecrín, Granada, Spain; coordinates: 36°55'25.1"N 3°31'42.9"W; 36.923645,-3.528575) and kindly provided by Apinevada S. L. Micro-CT scans were carried out at the Centro de Instrumentación Científica (University of Granada, Granada, UGR), using a Xradia 510 VERSA (ZEISS) (Xradia 510 VERSA (ZEISS). The following settings were established to get the same resolution of all samples: 4X magnification, 6.1515 μm pixel size, 200.021 mm mm source-sample distance, 20 mm detector-sample distance, and 2034 images.</p>
Video 2. Whole honeybee abdomen Micro-CT
<p>Videos of the whole bee abdomen using a collection of<strong> </strong> 2D images for 3D stacking. Micro-CT scans were carried out at the Centro de Instrumentación Científica (University of Granada, Granada, UGR), using a Xradia 510 VERSA (ZEISS) (Xradia 510 VERSA (ZEISS). The following settings were established to get the same resolution of all samples: 4X magnification, 6.1515 μm voxel size, 200.021 mm mm source-sample distance, 20 mm detector-sample distance, BIN 1 (2048x2048 pixels on CCD), and 2034 projections for whole bee abdomen. Voltage, current, filter and exposure time were adjusted according to features of the samples as follows: bee whole abdomen: 60 kV accelerating voltage (a.v.), 83 μA beam current (b.c.), 40 s exposure time (e.t.) and LE2 source filter (s.f.).</p>
NMR metabolomic analysis of Drosophila extracts: 3 genotypes (control, RNAi Opa1 in muscle, RNAi Marf in muscle), 3 body regions (head, thorax, abdomen), 2 ages (30 days, 65 days)
<p>RNAi of the Drosophila mitochondrial fusion genes Opa1 and Marf (Mitofusin 2) in the muscle results in an extended lifespan. In order to unravel the metabolic changes in the long-living flies we analysed the metabolome by NMR spectroscopy, comparing the two knock-down genotypes to a wild type control at two ages: 30 days (young flies) and 65 days (old flies). In order to detect autonomous and non-autonomous changes, we also divided the samples in three anatomical regions: head (mostly neural tissue) thorax (mostly muscle), and abdomen (visceral, reproductive, metabolic control)</p>
MICCAI FLARE22 Challenge Dataset (50 Labeled Abdomen CT Scans)
<p>This dataset was used as the labeled training set in MICCAI FLARE 2022 Challenge https://flare22.grand-challenge.org/.</p> <p>The CT images and pancreas annotations are from http://medicaldecathlon.com/</p> <p>The other organ annotations are from AbdomenCT-1K (research purpose only).</p> <p>If this dataset is useful in your research, please give credit to the following two papers:</p> <p>A large annotated medical image dataset for the development and evaluation of segmentation algorithms</p> <p>https://arxiv.org/abs/1902.09063</p> <p>AbdomenCT-1K: Is Abdominal Organ Segmentation a Solved Problem?</p> <p>https://ieeexplore.ieee.org/document/9497733</p>
Trim II for Noninvasive Lipolysis and Circumference Reduction of Abdomen.
ClinicalTrials.gov study NCT05398159. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Open Abdomen Study Comparing ABThera™ Open Abdomen Negative Pressure Therapy System and Barker's Vacuum Packing Technique
ClinicalTrials.gov study NCT01016353. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Seprafilm in Open Abdomens: a Study of Wound and Adhesion Characteristics in Trauma Damage Control Patients
ClinicalTrials.gov study NCT01594385. IPD Sharing: NO. Countries: 1. Publications: 1.
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.