Skip to main content
Powered by ShareScore

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.

955

datasets available to search

ShareScore release 0.9.0

Reset

Dataset results

955 results for “APS”

Learn how ShareScore rates datasets ↗
zenodo48/100

KSR inhibitor APS-2-79 sensitivity test in JURKAT and ALL-SIL T-cell acute lymphoblastic leukemia cell lines measured by Cell Counting Kit 8

<p>APS-2-79 compound was purchased from MedChemExpress (Monmoutyh Junction, NJ, USA). The 20 mg/ml stock solution was prepared in DMSO. To calculate the IC50, JURKAT and ALL-SIL cells were cultured for 72h with a range of APS-2-79 concentrations (5-15 µM) added as equal volumes. Cells treated with 0.5% DMSO (vehicle) were used as negative control. Cells treated with 10% DMSO were used as positive control. The viability of cells was measured using Cell Counting Kit 8 (Sigma Aldrich) and GloMax Microplate Reader system (Promega) with 450 nm wavelength and 600 nm as reference wavelength. The relevant reads are made from following wells: 2A-2D (15 µM APS-2-79), 3A-3D (12.5 µM APS-2-79), 4A-4D (10 µM APS-2-79), 5A-5D (7.5 µM APS-2-79), 6A-6D (5 µM APS-2-79), 7A-7D (vehicle), 8A-8D (positive control).</p>

opencc-by-4.0Oct 2023View details →
zenodo44/100

Sparsification of AP firing in adult-born hippocampal granule cells via voltage-dependent alpha5-GABAA receptors

<p>The ZIP file consists of folders, containing RAW data used for analysis and used to prepare the Figures 1-6 of the paper published in Cell Reports 2021, with the title mentioned above.</p> <p>All recordings were made from acute hippocampal brain slices, obtained from adult C57BL6 mice. Whole-cell voltage-clamp and current-clamp recordings of mature and adult-born young hippocampal granule cells were performed as outlined in methods and recordings were digitized using a power1401 interface from CED (Cambridge Electronic Design, UK), and saved to file using the CFS library support from CED. The contents of the different files is described in File_Description.pdf.</p>

opencc-by-4.0Dec 2020View details →
zenodo40/100

aps_linear_patches

<div> <div> <div> <div> <div> <div> <div> <p dir="auto">just use the command: aps_linear_patches('y',0, 'hgt', 'lonlat', 'phuw', [101.5 102.3], [ 29.34 39.92], isosata_parameter)</p> </div> </div> </div> </div> </div> </div> </div> <div> <div> <div> <div> <div>&nbsp;</div> </div> </div> </div> </div>

opencc-by-4.0Mar 2024View details →
zenodo40/100

Madrid Retiro Weather Dataset Compliant with NGSI-LD and DCAT-AP

<h2>Description</h2> <p>Dataset that presents the NGSI-LD entity of Madrid Weather Station adapted to the NGSI-LD standard and the automatic generated metadata compliant with DCAT-AP v2 generated by the&nbsp;<a href="https://github.com/ging/fiware-draco/blob/master/docs/processors_catalogue/ngsi_ckan_sink.md">NGSIToCKAN</a> and <a href="https://github.com/ging/fiware-draco/blob/master/docs/processors_catalogue/update_ckan_metadata.md">UpdateCKANMetadata</a> Nifi processors and the&nbsp; <a href="https://github.com/YourOpenDAta/ckanext-dcatapedp">ckanext-dcatapedp CKAN extension</a></p> <h2>Paper</h2> <ul> <li>Paper: <a href="https://arxiv.org/abs/2402.06693">Fostering the integration of European Open Data into Data Spaces through High-Quality Metadata</a></li> <li>Cite:</li> </ul> <p><code>@misc{conde2024fostering,</code><br><code>&nbsp; &nbsp; &nbsp; title={Fostering the integration of European Open Data into Data Spaces through High-Quality Metadata},&nbsp;</code><br><code>&nbsp; &nbsp; &nbsp; author={Javier Conde and Alejandro Pozo and Andr&eacute;s Munoz-Arcentales and Johnny Choque and &Aacute;lvaro Alonso},</code><br><code>&nbsp; &nbsp; &nbsp; year={2024},</code><br><code>&nbsp; &nbsp; &nbsp; eprint={2402.06693},</code><br><code>&nbsp; &nbsp; &nbsp; archivePrefix={arXiv},</code><br><code>&nbsp; &nbsp; &nbsp; primaryClass={cs.DB}</code><br><code>}</code></p>

opencc-by-4.0Feb 2024View details →
zenodo40/100

Fig.ç1.M aps and photograph showing the sampling locality for Echinoderes ohtsukai sp. nov. A, Map of eastern Asia; B, enlargement of the rectangle in A; C, enlargement of the area indicated by the black circle in B; D, photograph of the sampling locality; white arrow indicates the Kamogawa River and dotted circle indicates the sampling site. in A New Brackish-water Species of Echinoderes (Kinorhyncha: Cyclorhagida) from the Seto Inland Sea, Japan

Fig.ç1.M aps and photograph showing the sampling locality for Echinoderes ohtsukai sp. nov. A, Map of eastern Asia; B, enlargement of the rectangle in A; C, enlargement of the area indicated by the black circle in B; D, photograph of the sampling locality; white arrow indicates the Kamogawa River and dotted circle indicates the sampling site.

opencc-by-4.0May 2012View details →
zenodo40/100

Figs. 16-23 in Pseudofilamentous desmids (Zygnematophyceae) from an Amazonian floodplain lake (Macapá, AP, Brazil)

Figs. 16-23. Pseudofilamentous desmids of Curralinho Lake, Macapá, Amapá, Brazil. 16 A-B. Hyalotheca dissiliens var. dissiliens. A. fungi in the cell wall of the algae, B. detailed cells; 17 A-B. H. javanica. A. detailed pseudofilament, B. detailed cells; 18. Mateola curvata; 19 A-B. Phymatodocis nordstedtiana var. nordstedtiana f. minor. A. pseudofilament frontal view, B. pseudofilament lateral view; 20. Spondylosium desmidiiforme; 21. S. pulchrum var. pulchrum; 22. S. rectangulare var. rectangulare; 23 A-B. S. rectangulare var. goyazense, detailed cells and pseudofilaments. Scale bars = 10 µm.

opencc-by-4.0Jul 2020View details →
zenodo40/100

Figs. 3-15 in Pseudofilamentous desmids (Zygnematophyceae) from an Amazonian floodplain lake (Macapá, AP, Brazil)

Figs. 3-15. Pseudofilamentous desmids of Curralinho Lake, Macapá, Amapá, Brazil. 3 A-C. Bambusina borreri. A, B. detailed cells; C. detailed pseudofilament; 4. B. borreri var. brasiliensis; 5 A-B. B. borreri var. majus, detailed cells and pseudofilaments; 6. Desmidium baileyi var. baileyi f. bailey; 7 A-B. D. elegans. A. detailed pseudofilament, B. detailed cell; 8 A-B. D. graciliceps var. graciliceps. A. frontal view of the pseudofilament, B. slight modification of the pseudofilament frontal view; 9. D. graciliceps var. groenbladii; 10 A-C. D. longatum. A. pseudofilament frontal view, B. formation of the elongate conjugation tube, C. zygospore; 11 A-B. D. quadratum var. quadratum. A. detailed pseudofilament, B. detailed cells; 12. D. quadratum var. constrictum; 13 A-B. Groenbladia neglecta var. neglecta. A. detailed pseudofilament, B. detailed cells; 14 A-B. G. neglecta var. elongata. A. detailed pseudofilament, B. detailed cells; 15. Haplozyga armata var. armata. Scale bars = 10 µm.

opencc-by-4.0Jul 2020View details →
zenodo40/100

Figs. 2 A-B in Pseudofilamentous desmids (Zygnematophyceae) from an Amazonian floodplain lake (Macapá, AP, Brazil)

Figs. 2 A-B. Sampling station at Curralinho Lake. A. The dry season or less rainy period; B. The rainy season or flood period.

opencc-by-4.0Jul 2020View details →
zenodo40/100

Figs. 1 A-C in Pseudofilamentous desmids (Zygnematophyceae) from an Amazonian floodplain lake (Macapá, AP, Brazil)

Figs. 1 A-C. Geographic localization of the Curralinho Lake, "Ressaca" area, Macapá, Amapá, Brazil. A. Localization of the Amapá state (AP) in Brazil (green color); B. Curiaú River basin, located in the Curiaú Enviroment Protection Area is highlighted in black; C. The sampling station at Curralinho Lake is a red circle.

opencc-by-4.0Jul 2020View details →
zenodo40/100

PSM-AP Comparative document analysis data: Priorities and challenges in the policy and digital strategies of ten PSM

<p>The document consists of a list of 61 key policy and strategy documents analysed as part of the comparative work conducted in WP1 of the project Public Service Media in the Age of Platforms (PSM-AP). It also contains a series of selected quotes supporting the three key areas prioritised by the policies and PSM digital strategies: People (reaching audiences), Personalisation (developing the video-on-demand portal), and Prominence (of PSM services and content). The data was collected and analysed in 2023, from documents concerning 10 PSM organisations in seven media markets: Belgium-Flanders (VRT), Belgium-Wallonia Brussels (RTBF), Canada (CBC/Radio-Canada), Denmark (DR, TV 2) Italy (RAI), Poland (TVP), and the UK (BBC, Channel 4, ITV). All quotes were translated to English by the authors.</p>

opencc-by-4.0Dec 2023View details →
zenodo40/100

AP-4-mediated axonal transport controls endocannabinoid production in neurons - Imaging data 3

<p>Imaging data associated with Fig. 6c,e,f, 7e-h, S5a,b, S6b-d and S7 from the article &quot;AP-4-mediated axonal transport controls endocannabinoid production in neurons&quot;, published in Nature Communications by Davies et al.</p> <p>DAGLB_Axon_iPSC_derived_neurons:&nbsp;High-throughput confocal imaging was used to assay the density of DAGLB puncta in axons of iPSC neurons from a patient with AP-4 deficiency syndrome (patient 1) and their matched control, labelled with anti-DAGLB, the axonal marker antibody cocktail SMI312 and DAPI.</p> <p>DAGLB_Soma_iPSC_derived_neurons: High-throughput confocal imaging was used to assay the distribution of DAGLB in iPSC-derived neurons from two patients with AP-4 deficiency syndrome (LoF/LoF) and their matched unaffected controls (WT/LoF). Neurons in 96-well plates were labelled with antibodies against DAGLB, GOLGA1 (a TGN marker) and TUJ1, and DAPI. The ratio between the area of high intensity (HI; overlaps with TGN) and low intensity (LI) DAGLB labelling was quantified from three differentiations per cell line.</p> <p>iPSC_derived_neurons_neurite_outgrowth: Neurite outgrowth was assayed in iPSC-derived cortical neurons from two patients with AP4B1-associated AP-4 deficiency syndrome (SPG47) and their unaffected same sex heterozygous parents (control), using automated live cell imaging. Neurons were cultured in the presence of DMSO (vehicle control) or the MGLL inhibitor ABX-1431 at 10, 50, 100 or 500 nM (the highest two doses were administered only to the patient neurons). Neurons were monitored from 4 h post-plating, with images captured every 3 h until 25 h post-plating.</p> <p>See article for methods and further detail.</p>

opencc-by-4.0Nov 2021View details →
zenodo40/100

AP-4-mediated axonal transport controls endocannabinoid production in neurons - Imaging data 2

<p>Imaging data from the article &quot;AP-4-mediated axonal transport controls endocannabinoid production in neurons&quot;, published in Nature Communications by Davies et al., from Fig. 5 and S4.</p> <p>Super resolution structured illumination microscopy (SR-SIM) was used to image HeLa cells expressing endogenously-tagged SERINC1-Clover or SERINC3-Clover, treated with siRNA to knock down AP-4 or non-targeting control siRNA, and labelled with anti-GFP and either anti-ATG9A or anti-DAGLB.</p> <p>SR-SIM was performed on a Zeiss Elyra PS.1 microscope equipped with a 63x/1.46 oil objective (alpha Plan-Apochromat 63x/1.46 Oil Korr M27) and a PCO pco.edge 4.2 sCMOS Camera, and controlled with Zeiss ZEN 2 software with the SR-SIM module. Imaging was performed sequentially, with SERINC1 or SERINC3 (labelled with Alexa Fluor Plus 488) imaged first and DAGLB or ATG9A (labelled with Alexa Fluor 568) imaged second, using 3 rotations of the grid pattern and 5 phases for each rotation. Experiments were performed in biological duplicate, from separate dishes of cells, and with immunofluorescence and microscopy performed independently for each replicate. 20 cells were imaged per condition per replicate, and cell selection and manual focus were performed on the first acquired channel only, without viewing the second channel. For channel alignment, slides with multi-coloured fluorescent beads were imaged before and after each experiment using the same acquisition settings. The data were processed using the SIM module in Zen 2 software in manual mode, using default settings and a theoretical PSF model, except for the following settings: Noise filter -1; SR frequency weighting 2; Max.Isotrop on; Baseline shifted on; Raw scale on. Channel alignment fit parameters were calculated in Zen 2 software using a multi-coloured bead image as input, in affine mode. The resulting parameters were tested on further bead images and then applied to the experimental images. The channel-aligned images were used for colocalisation analysis (see methods of article for details).</p> <p>This dataset includes the raw unprocessed data and the processed and channel aligned input data used for the colocalisation analysis.</p> <p>See article for methods and further detail.</p>

opencc-by-4.0Nov 2021View details →
zenodo40/100

AP-4-mediated axonal transport controls endocannabinoid production in neurons - Imaging data 1

<p>Imaging data from the article &quot;AP-4-mediated axonal transport controls endocannabinoid production in neurons&quot;, published in Nature Communications by Davies et al., from Fig. 2, 3, 4, 6 and S2.</p> <p>Widefield images were captured on a Leica DMi8 inverted microscope equipped with an iTK LMT200 motorised stage, a 63x/1.47 oil objective (HC PL APO 63x/1.47 OIL) and a Leica DFC9000 GTC Camera, and controlled with LAS X (Leica Application Software X).</p> <p>HeLa_HADAGL_RUSC2_Fig_4:&nbsp;Widefield imaging of wild-type HeLa and HeLa cells stably expressing GFP-RUSC2, transiently expressing HA-DAGLB or HA-DAGLA, and labelled with anti-HA (Alexa Fluor 680), anti-ATG9A (Alexa Fluor 568) and DAPI.</p> <p>HeLa_KD_DAGLB_TGN_Fig_S2a,b:&nbsp;Widefield imaging of immunofluorescence double labelling of DAGLB (Alexa Fluor 568) and TGN46 (Alexa Fluor 680) in HeLa cells transfected with a non-targeting siRNA (control) or with siRNA to knock down AP-4. DAPI labelling of the nucleus is also shown. Note, the antibody used to label AP4E1 (Alexa Fluor 488) in replicate 1 had high non-specific background and so was not used in the analysis.</p> <p>HeLa_KO_DAGLB_TGN_Fig_2a,b:&nbsp;Widefield imaging of immunofluorescence double labelling of DAGLB (Alexa Fluor 568) and TGN46 (Alexa Fluor 680) in wild-type, AP4B1 knockout, and AP4B1 knockout HeLa cells stably expressing AP4B1 (functional rescue). DAPI labelling of the nucleus is also shown.</p> <p>HeLa_RUSC2_DAGLB_Fig_3:&nbsp;Widefield imaging of DAGLB (Alexa Fluor 568) labelling in wild-type and AP-4 knockout (AP4B1 KO or AP4E1 KO) HeLa cells, stably expressing GFP-tagged RUSC2. AP4B1 knockout HeLa expressing RUSC2-GFP were also transiently transfected with AP4B1 (rescue) or mock transfected without DNA as a negative control. DAPI labelling of the nucleus is also shown.</p> <p>iPSC_Neurons_DAGLB_TGN_Fig_6a,b:&nbsp;Widefield imaging of immunofluorescence triple labelling of DAGLB (Alexa Fluor 568), TGN46 (Alexa Fluor 680) and TUJ1 (Alexa Fluor 488; a marker to distinguish neurons from co-cultured astrocytes) in iPSC neurons from a patient with AP-4 deficiency syndrome (patient 1) and their matched control.</p> <p>SHSY5Y_DAGLB_TGN_Fig_2c,d_Fig_S2c,d:&nbsp;Widefield imaging of immunofluorescence double labelling of DAGLB (Alexa Fluor 568) and TGN46 (Alexa Fluor 680) in control (parental Cas9-expressing), AP4B1-depleted (BKO) and AP4E1-depleted (EKO) undifferentiated and neuronally-differentiated SH-SY5Y cells. DAPI labelling of the nucleus is also shown.</p> <p>See article for methods and further detail.</p>

opencc-by-4.0Nov 2021View details →
zenodo40/100

Text-fig. 9. Paramblypterus cf. rohani. Scale bars 5 mm. a, b: drawing and photograph of the skull in lateral view, locality Otovice "Stěnava", DP 4529; c, d: photograph and drawing of the skull in lateral view, locality Otovice "Chmelnice", P 64673; e: bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 64656; f: bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 30945; g, h: drawing and photograph (whitened) of the bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 64658. Abbreviations: ap – anterior pit line, Cl – cleithrum, Cor – coronoid, Dhy – dermohyal, Dpt – dermopterotic, Dsph – dermosphenotic, Extl – extrascapular lateral, Extm – extrascapular medial, Fr – frontal, Gul – lateral gular, Gum – medial gular, ioc – infraorbital canal, Ios – infraorbital superior, Ju – jugal, mc – mandibular canal, Md – mandible, Mx – maxila, mp – medial pit line, Na – nasal, Op – operculum, Pa – parietal, Pop – preoperculum, pp – posterior pit line, Psp – postspiracular, Pt – posttemporal, Ptr – postrostral, Qu – quadratum, Rbr – branchiostegaly rays, Sbo – suborbital, soc – supraorbital canal, Sop – suboperculum, Spi – spiracular. in Actinopterygians Of The Broumov Formation (Permian) In The Czech Part Of The Intra-Sudetic Basin (The Czech Republic)

Text-fig. 9. Paramblypterus cf. rohani. Scale bars 5 mm. a, b: drawing and photograph of the skull in lateral view, locality Otovice "Stěnava", DP 4529; c, d: photograph and drawing of the skull in lateral view, locality Otovice "Chmelnice", P 64673; e: bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 64656; f: bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 30945; g, h: drawing and photograph (whitened) of the bones of the skull roof in dorsal view, locality Otovice "Chmelnice", P 64658. Abbreviations: ap – anterior pit line, Cl – cleithrum, Cor – coronoid, Dhy – dermohyal, Dpt – dermopterotic, Dsph – dermosphenotic, Extl – extrascapular lateral, Extm – extrascapular medial, Fr – frontal, Gul – lateral gular, Gum – medial gular, ioc – infraorbital canal, Ios – infraorbital superior, Ju – jugal, mc – mandibular canal, Md – mandible, Mx – maxila, mp – medial pit line, Na – nasal, Op – operculum, Pa – parietal, Pop – preoperculum, pp – posterior pit line, Psp – postspiracular, Pt – posttemporal, Ptr – postrostral, Qu – quadratum, Rbr – branchiostegaly rays, Sbo – suborbital, soc – supraorbital canal, Sop – suboperculum, Spi – spiracular.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 5. Paramblypterus vratislaviensis (AGASSIZ, 1833). Scale bars 5 mm. a: drawing of the skull roof in dorsal view, locality Olivětín, NM-M 2213; b, c: photograph and drawing of the left maxila in lateral view, locality Ruprechtice, NM-M 64696; d: right parietal in dorsal view, locality Ruprechtice "Pod Světlinou", P 64741; e: left maxilla in lateral view, locality Ruprechtice "Pod Světlinou", P 64738; f, g: photograph and drawing of the left mandible in medial view, locality Ruprechtice "Pod Světlinou", P 64738. Abbreviations: ap – anterior pit line, Dpt – dermopterotic, Dsph – dermosphenotic, eo – edge overlapped by surrounding bones, Fr – frontal, mp – medial pit line, Na – nasal, Pa – parietal, pp – posterior pit line, Ptr – postrostral, soc – supraorbital canal, socp – pores of the supraorbital canal. in Actinopterygians Of The Broumov Formation (Permian) In The Czech Part Of The Intra-Sudetic Basin (The Czech Republic)

Text-fig. 5. Paramblypterus vratislaviensis (AGASSIZ, 1833). Scale bars 5 mm. a: drawing of the skull roof in dorsal view, locality Olivětín, NM-M 2213; b, c: photograph and drawing of the left maxila in lateral view, locality Ruprechtice, NM-M 64696; d: right parietal in dorsal view, locality Ruprechtice "Pod Světlinou", P 64741; e: left maxilla in lateral view, locality Ruprechtice "Pod Světlinou", P 64738; f, g: photograph and drawing of the left mandible in medial view, locality Ruprechtice "Pod Světlinou", P 64738. Abbreviations: ap – anterior pit line, Dpt – dermopterotic, Dsph – dermosphenotic, eo – edge overlapped by surrounding bones, Fr – frontal, mp – medial pit line, Na – nasal, Pa – parietal, pp – posterior pit line, Ptr – postrostral, soc – supraorbital canal, socp – pores of the supraorbital canal.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Рис. 1. Bibio clavipes Meigen, 1818, генитаΛии самца:1 — генитаΛии ΔорсаΛьно;2 — вершина стернита 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — гоностиΛь; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры; 7 — раΔиаΛьный сектор крыΛа. УсΛовные обозначения: аed — эΔеагус; с — церки; ej. ap — апоΔема эΔеагуса; gcx — гонококсит; gst — гоностиΛь; gcx. ap — гонококсаΛьная апоΔема; hp — гипопрокт; pm — парамеры; br, rm — поперечные раΔиаΛьные жиΛки;mcu — меΔио-кубитаΛьная поперечная жиΛка;s — отрезок раΔиаΛьной жиΛки переΔ гΛазком; st — крыΛовой гΛазок Fig. 1. Bibio clavipes Meigen, 1818, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — gonostylus; 5 — cerci and hypoproct; 6 — aedeagus and paramers; 7 — radial section of wing. Abbreviations: аed — aedeagus; с — cerci; ej. ap — aedeagal apodeme; gcx — gonocoxite; gst — gonostylus; gcx. ap — gonocoxal apodeme; hp — hypoproct; pm — paramers; br, rm — transverse radial veins; mcu — medio-cubital vein; s — part of radial vein in front of stigma; st — stigma of wing in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 1. Bibio clavipes Meigen, 1818, генитаΛии самца:1 — генитаΛии ΔорсаΛьно;2 — вершина стернита 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — гоностиΛь; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры; 7 — раΔиаΛьный сектор крыΛа. УсΛовные обозначения: аed — эΔеагус; с — церки; ej. ap — апоΔема эΔеагуса; gcx — гонококсит; gst — гоностиΛь; gcx. ap — гонококсаΛьная апоΔема; hp — гипопрокт; pm — парамеры; br, rm — поперечные раΔиаΛьные жиΛки;mcu — меΔио-кубитаΛьная поперечная жиΛка;s — отрезок раΔиаΛьной жиΛки переΔ гΛазком; st — крыΛовой гΛазок Fig. 1. Bibio clavipes Meigen, 1818, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — gonostylus; 5 — cerci and hypoproct; 6 — aedeagus and paramers; 7 — radial section of wing. Abbreviations: аed — aedeagus; с — cerci; ej. ap — aedeagal apodeme; gcx — gonocoxite; gst — gonostylus; gcx. ap — gonocoxal apodeme; hp — hypoproct; pm — paramers; br, rm — transverse radial veins; mcu — medio-cubital vein; s — part of radial vein in front of stigma; st — stigma of wing

opencc-by-4.0Dec 2022View details →
zenodo40/100

Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)

Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain

opencc-by-4.0Jul 2024View details →
zenodo40/100

Text-fig. 14. Schema of transversal section of Manilkaroxylon sp. (sample DR2). ap – axial parenchyma, grb – growth ring boundaries, r – rays, v – vessels. in New Fossil Woods From The Paleogene Of Doupovské Hory And České Středohoří Mts. (Bohemian Massif, Czech Republic)

Text-fig. 14. Schema of transversal section of Manilkaroxylon sp. (sample DR2). ap – axial parenchyma, grb – growth ring boundaries, r – rays, v – vessels.

opencc-by-4.0Dec 2015View details →
zenodo40/100

Рис. 1. Схематическое ΑеΛение АзербайΑжана: ZQ, SH, KU, AP – БоΛьшой Кавказ; AR – Куро-Араксинская низменность; GN, KB, NH – МаΛый Кавказ; LK – ТаΛыш (вкΛючая ЗуванΑ и Αенкоранскую низменность). Fig. 1. Schematic division of Azerbaijan:ZQ, SH, KU, AP – the Greater Caucasus; AR – the Kura-Aras lowland; GN, KB, NH – the Lesser Caucasus; LK – Talysh (including Zuvand and the Lenkoran lowland). in The fauna of lamellicorn beetles (Coleoptera: Scarabaeoidea) of Azerbaijan

Рис. 1. Схематическое ΑеΛение АзербайΑжана: ZQ, SH, KU, AP – БоΛьшой Кавказ; AR – Куро-Араксинская низменность; GN, KB, NH – МаΛый Кавказ; LK – ТаΛыш (вкΛючая ЗуванΑ и Αенкоранскую низменность). Fig. 1. Schematic division of Azerbaijan:ZQ, SH, KU, AP – the Greater Caucasus; AR – the Kura-Aras lowland; GN, KB, NH – the Lesser Caucasus; LK – Talysh (including Zuvand and the Lenkoran lowland).

opencc-by-4.0Dec 2019View details →
zenodo40/100

Asteroseismology and Interferometry: a powerful combination to understand Ap stars

<p>Ultra-precise, 2-min cadence, photometric data is now available on over one thousand Ap stars, thanks to the NASA Transiting Exoplanet Survey Satellite (TESS) mission. These data is enabling the first unbiased search for pulsations among Ap stars, which, in turn, will impose stringent tests on current theoretical models for the driving of pulsations in these stars. To be successful, these tests require also that the global parameters of the stars are determined with great accuracy. In this talk we will present recent results from an ongoing interferometric programme on Ap stars aimed at establishing their radii and effective temperatures in a quasi model-independent way. We will then show how these accurate parameter determinations are enabling us to test the driving of pulsations in Ap stars, in combination with the asteroseismic data. Finally, we will show how the small cohort of stars in reach of interferometry is being used to test other methods for the computation of stellar parameters that are applicable to a vaster number of Ap stars and how this may, in turn, allow us to check the evolution of their magnetic properties.</p>

opencc-by-4.0Sep 2021View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated 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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record