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.

20

datasets available to search

ShareScore release 0.7.1

Reset

Dataset results

20 results for “LOI”

Learn how ShareScore rates datasets ↗
zenodo40/100

TGA and LOI measurements within the thermal degradation study of a SRF prepared for an aluminium scrap pre-heating system (REVaMP project)

<p>Underlying data (related to Figure 2) for the publication Acha, E.; Lopez-Urionabarrenechea, A.;Delgado, C.; et al. Combustion of a Solid Recovered Fuel (SRF) Produced from the Polymeric Fraction of Automotive Shredder Residue (ASR). Polymers <strong>2021</strong>, 13, 3807. <a href="https://doi.org/10.3390/polym13213807">https://doi.org/10.3390/polym13213807</a></p> <p>Experimental data generated by the REVaMP project (GA 869882, Horizon 2020, European Union) along the research of the combustion of a SRF, prepared from ASR, to be used as alternative fuel in a scrap pre-heater at an aluminium refinery plant. Research pertaining to Task 1.1 (WP1), Deliverable D1.&nbsp;</p> <p>Subject: Thermal degradation study performed in air to measure the mass loss of SRF samples with time and temperature during a continuous heating process (two TGA measurements and determination of variation of LOI with T). The results indicate the different stages in the thermal decomposition of the prepared SRF and the temperature range of its combustion. Useful information for designing the operation conditions of the SRF combustion chamber of the scrap pre-heater.</p> <p>&nbsp;</p>

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

Summary data to support Hall (2019), '(e) in Normandy: The sociolinguistics, phonology and phonetics of the "Loi de Position"'

<p>Article abstract:</p> <p>This article uses the pronunciation of stressed Intonational Phrase-final /&epsilon;/ and /e/ in two communities in Normandy, France, to illustrate the convergence of two sociolinguistic processes on the same phonological result: increasing application of the <em>Loi de Position</em>. In both communities (one rural and further from Paris, one urban and closer to Paris), there is now no consistent community-wide phonetic distinction between the two phonemes in that environment. It is suggested that the <em>Loi de Position</em> is already widely applied in the rural site, but speakers are still conscious of the formal norm whereby it is not applied; for the urban site, apparent-time changes for this variable reflect changes in Parisian speech. The theoretical implications of the study concerning speakers&rsquo; organisation of their vowel-space, and concerning the increasing application of the <em>Loi de Position</em> in the French of France, are examined. These conclusions are reached by per-speaker analysis of F1 and F2 separately from each other (rare in French linguistics). As a measure of community cohesion, the article introduces to linguistics the coefficient of variation (more common in biology and medicine).</p>

opencc-by-nc-nd-4.0Nov 2017View details →
zenodo40/100

Fig. 1 in EEMIS Corte 2009 - Systèmes d'information et évaluation de la loi de santé publique

Fig. 1. Cyrtocrinid columnals from Lejowa Valley in Tatra Mountains, Poland. A–D. Rhaetian, Upper Triassic. A. Latera, GIUS 7−3474/1. B. Latera, GIUS 7−3474/2. C. Facet, GIUS 7−3474/3. D. Latera, GIUS 7−3474/4. E, F. Hettangian, Lower Jurassic. E. Facet, GIUS 8−3472/1. F. Latera, GIUS 7−3472/2. Scale bars 1 mm.

opencc-by-4.0Dec 2009View details →
zenodo40/100

Linked collectors and determiners for: Arizona State University Lois B. O'Brien Collection.

Natural history specimen data linked to collectors and determiners held within, "Arizona State University Lois B. O'Brien Collection". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/78a151c6-19aa-4840-86a7-6fbd84acccce">https://bionomia.net/dataset/78a151c6-19aa-4840-86a7-6fbd84acccce</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/78a151c6-19aa-4840-86a7-6fbd84acccce">https://gbif.org/dataset/78a151c6-19aa-4840-86a7-6fbd84acccce</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Tutoriels audio - HAL et Loi Pour une République numérique

<p>Ces trois tutoriels audio ont &eacute;t&eacute; con&ccedil;us pour accompagner une formation r&eacute;gionale d&#39;accompagnement au d&eacute;p&ocirc;t dans HAL.</p> <p>1) pr&eacute;sentation g&eacute;n&eacute;rale de HAL</p> <p>2) les principes de la loi Pour une R&eacute;publique num&eacute;rique</p> <p>3) Bibliographie et m&eacute;tadonn&eacute;es</p>

opencc-by-4.0Oct 2021View details →
zenodo32/100

Chang'e 5 RF recording at 8471.2 MHz with Allen Telescope Array during LOI-2

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before and during the LOI-2 (lunar orbit injection 2) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used external 10 MHz reference and PPS coming from the observatory distribution system. The IQ&nbsp; sample rate of the USRP was 30.72 Msps and a GNU Radio flowgraph was used to channelize four frequencies from the spacecraft (8463.7, 8471.2, 8478.6 and 8486.2 MHz), using an IQ sample rate of 240 ksps for each channel.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 32-bit floats in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the channel at 8471.2 MHz, which corresponds to the orbiter, in SigMF format. Each polarization is in a different file. The original metadata headers are also provided.</p> <p><strong>Note:</strong> during the observation, the frequency of the RFCB LO was lowered by exactly 30 kHz in two occasions to prevent the signals from drifting out of the channel passband due to Doppler. The two LO jumps can be easily seen in the residual carrier of the signals and corrected.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF recording at 8478.6 MHz with Allen Telescope Array during LOI-2

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before and during the LOI-2 (lunar orbit injection 2) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used external 10 MHz reference and PPS coming from the observatory distribution system. The IQ&nbsp; sample rate of the USRP was 30.72 Msps and a GNU Radio flowgraph was used to channelize four frequencies from the spacecraft (8463.7, 8471.2, 8478.6 and 8486.2 MHz), using an IQ sample rate of 240 ksps for each channel.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 32-bit floats in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the channel at 8478.6 MHz, which corresponds to the lander, in SigMF format. Each polarization is in a different file. The original metadata headers are also provided.</p> <p><strong>Note:</strong> during the observation, the frequency of the RFCB LO was lowered by exactly 30 kHz in two occasions to prevent the signals from drifting out of the channel passband due to Doppler. The two LO jumps can be easily seen in the residual carrier of the signals and corrected.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF recording at 8486.2 MHz with Allen Telescope Array during LOI-2

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before and during the LOI-2 (lunar orbit injection 2) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used external 10 MHz reference and PPS coming from the observatory distribution system. The IQ&nbsp; sample rate of the USRP was 30.72 Msps and a GNU Radio flowgraph was used to channelize four frequencies from the spacecraft (8463.7, 8471.2, 8478.6 and 8486.2 MHz), using an IQ sample rate of 240 ksps for each channel.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 32-bit floats in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the channel at 8486.2 MHz, which corresponds to the orbiter, in SigMF format. Each polarization is in a different file. The original metadata headers are also provided.</p> <p><strong>Note:</strong> during the observation, the frequency of the RFCB LO was lowered by exactly 30 kHz in two occasions to prevent the signals from drifting out of the channel passband due to Doppler. The two LO jumps can be easily seen in the residual carrier of the signals and corrected.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF recording at 8463.7 MHz with Allen Telescope Array before LOI-1 (Y polarization)

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-28 before the LOI-1 (lunar orbit injection 1) manoeuvre that inserted the spacecraft into an elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8463.7 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used an external 10 MHz reference and PPS coming from the observatory distribution system. The IQ sample rate of the USRP was 1.92 Msps. A GNU Radio flowgraph was used to record IQ samples to disk.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 16-bit integers in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the Y polarization. The original metadata headers are also provided. The X polarization can be found in <a href="https://zenodo.org/record/4315066">this dataset</a>.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF recording at 8463.7 MHz with Allen Telescope Array before LOI-1 (X polarization)

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-28 before the LOI-1 (lunar orbit injection 1) manoeuvre that inserted the spacecraft into an elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8463.7 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used an external 10 MHz reference and PPS coming from the observatory distribution system. The IQ sample rate of the USRP was 1.92 Msps. A GNU Radio flowgraph was used to record IQ samples to disk.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 16-bit integers in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the X polarization. The original metadata headers are also provided. The Y polarization can be found in <a href="https://zenodo.org/record/4317087">this dataset</a>.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF wideband recording with Allen Telescope Array before LOI-2 (Y polarization)

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before the LOI-2 (lunar orbit injection 1) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used an external 10 MHz reference and PPS coming from the observatory distribution system. The IQ sample rate of the USRP was 40.96 Msps. A GNU Radio flowgraph was used to record IQ samples to disk.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 16-bit integers in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the Y polarization. The original metadata headers are also provided. The X polarization can be found in &quot;<a href="https://zenodo.org/record/4317366">Chang&#39;e 5 RF wideband recording with Allen Telescope Array before LOI-2 (X polarization)</a>&quot;.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Chang'e 5 RF wideband recording with Allen Telescope Array before LOI-2 (X polarization)

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before the LOI-2 (lunar orbit injection 1) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antenna 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used an external 10 MHz reference and PPS coming from the observatory distribution system. The IQ sample rate of the USRP was 40.96 Msps. A GNU Radio flowgraph was used to record IQ samples to disk.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 16-bit integers in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the X polarization. The original metadata headers are also provided. The Y polarization can be found in &quot;<a href="https://zenodo.org/record/4323363">Chang&#39;e 5 RF wideband recording with Allen Telescope Array before LOI-2 (Y polarization)</a>&quot;.</p>

opencc-by-4.0Dec 2020View details →
zenodo32/100

Compiled bulk rock uranium, thorium and loss on ignition (LOI) concentrations in serpentinites and altered oceanic crust

<p>The dataset includes a compilation of published uranium, thorium and loss on ignition (LOI) concentrations for bulk rock serpentinite samples organized by tectonic setting. All references are included in the file.</p>

opencc-by-4.0Jun 2024View details →
zenodo32/100

On following pages: 390. Greater Red White-toothed Shrew (Crocidura flavescens); 391. Lesser Red White-toothed (Crocidura nigricans); 394. Goliath White-toothed Shrew (Crocidura goliath); 395. Somali White-toothed Shrew (Crocidura Shrew (Crocidura viaria); 398. Savanna White-toothed Shrew (Crocidura fulvastra); 399. Ugandan White-toothed Shrew toothed Shrew (Crocidura cinderella); 402. loi White-toothed Shrew (Crocidura voi); 403. Yankari White-toothed Shrew toothed Shrew (Crocidura tarella); 406. Jackson's White-toothed Shrew (Crocidura jackson); 407. Kivu Long-haired White-toothed White-toothed Shrew (Crocidura dolichura): 410. Savanna White-toothed Swamp Shrew (Crocidura longipes); 411. Cameroon 413. Eisentraut's White-toothed Shrew (Crocidura eisentrauti); 414. Upemba White-toothed Shrew (Crocidura zimmeri (Crocidura caliginea); 417. Congo White-toothed Shrew (Crocidura congobelgica); 418. Latona's White-toothed Shrew (Crocidura ansellorum); 421. Pitman''s White-toothed Shrew (Crocidura pitmani); 422. Makwassie White-toothed Shrew Shrew (Crocidura hirta); 392. Heather White-toothed Shrew (Crocidura erica); 393. Blackish White-toothed Shrew somalica); 396. African Giant White-toothed Shrew (Crocidura olivieri); 397. Savanna Path White-toothed (Crocidura mutesae); 400. Small-footed White-toothed Shrew (Crocidura parvipes); 401. Cinderella White-(Crocidura yankariensis); 404. Kahuzi White-toothed Swamp Shrew (Crocidura stenocephala); 405. Tarella White-Shrew (Crocidura lanosa); 408. Dramatic White-toothed Shrew (Crocidura ludia); 409. Long-tailed White-toothed Shrew (Crocidura picea); 412. Manenguba White-toothed Shrew (Crocidura manengubae);); 415. Misotshi-Kabogo White-toothed Shrew (Crocidura Iwiroensis); 416. African Dusky White-toothed Shrew (Crocidura latona); 419. Polia's White-toothed Shrew (Crocidura polia); 420. Ansell's White-toothed Shrew (Crocidura maquassiensis); 423. Turbo White-toothed Shrew (Crocidura turba). in Soricidae

On following pages: 390. Greater Red White-toothed Shrew (Crocidura flavescens); 391. Lesser Red White-toothed (Crocidura nigricans); 394. Goliath White-toothed Shrew (Crocidura goliath); 395. Somali White-toothed Shrew (Crocidura Shrew (Crocidura viaria); 398. Savanna White-toothed Shrew (Crocidura fulvastra); 399. Ugandan White-toothed Shrew toothed Shrew (Crocidura cinderella); 402. loi White-toothed Shrew (Crocidura voi); 403. Yankari White-toothed Shrew toothed Shrew (Crocidura tarella); 406. Jackson's White-toothed Shrew (Crocidura jackson); 407. Kivu Long-haired White-toothed White-toothed Shrew (Crocidura dolichura): 410. Savanna White-toothed Swamp Shrew (Crocidura longipes); 411. Cameroon 413. Eisentraut's White-toothed Shrew (Crocidura eisentrauti); 414. Upemba White-toothed Shrew (Crocidura zimmeri (Crocidura caliginea); 417. Congo White-toothed Shrew (Crocidura congobelgica); 418. Latona's White-toothed Shrew (Crocidura ansellorum); 421. Pitman''s White-toothed Shrew (Crocidura pitmani); 422. Makwassie White-toothed Shrew Shrew (Crocidura hirta); 392. Heather White-toothed Shrew (Crocidura erica); 393. Blackish White-toothed Shrew somalica); 396. African Giant White-toothed Shrew (Crocidura olivieri); 397. Savanna Path White-toothed (Crocidura mutesae); 400. Small-footed White-toothed Shrew (Crocidura parvipes); 401. Cinderella White-(Crocidura yankariensis); 404. Kahuzi White-toothed Swamp Shrew (Crocidura stenocephala); 405. Tarella White-Shrew (Crocidura lanosa); 408. Dramatic White-toothed Shrew (Crocidura ludia); 409. Long-tailed White-toothed Shrew (Crocidura picea); 412. Manenguba White-toothed Shrew (Crocidura manengubae);); 415. Misotshi-Kabogo White-toothed Shrew (Crocidura Iwiroensis); 416. African Dusky White-toothed Shrew (Crocidura latona); 419. Polia's White-toothed Shrew (Crocidura polia); 420. Ansell's White-toothed Shrew (Crocidura maquassiensis); 423. Turbo White-toothed Shrew (Crocidura turba).

opennotspecifiedJul 2018View details →
zenodo32/100

First Day Loi Krathong

this is a krathong for loi krathong festival. Source: Objaverse 1.0 / Sketchfab

opencc-byNov 2019View details →
ClinicalTrials.gov32/100

LOIS: Long-Term Follow-Up in INSITE/SIFI

ClinicalTrials.gov study NCT02270203. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.

restrictedIPD-UNDECIDEDFeb 2026View details →
zenodo28/100

Supplementary material 1 from: Galasso G, Domina G, Andreatta S, Argenti C, Astuti G, Bacaro G, Bacchetta G, Bagella S, Banfi E, Barberis D, Bartolucci F, Bernardo L, Bonari G, Brundu G, Buccomino G, Calvia G, Cancellieri L, Capuano A, Celesti-Grapow L, Conti F, Cuena-Lombraña A, D'Amico FS, De Fine G, de Simone L, Del Guacchio E, Emili F, Fanfarillo E, Fascetti S, Fiaschi T, Fois M, Fortini P, Gentili R, Giardini M, Hussain AN, Iamonico D, Laface VLA, Lallai A, Lazzaro L, Lecis AP, Ligato E, Loi G, Lonati M, Lozano V, Maccherini S, Mainetti A, Mascia F, Mei G, Menini F, Merli M, Montesano A, Mugnai M, Musarella CM, Nota G, Olivieri N, Passalacqua NG, Pinzani L, Pisano A, Pittarello M, Podda L, Posillipo G, Potenza G, Probo M, Prosser F, Quaglini LA, Ravetto Enri S, Rivieccio G, Roma-Marzio F, Rosati L, Selvaggi A, Soldano A, Stinca A, Tasinazzo S, Tassone S, Terzi M, Vallariello R, Vangelisti R, Verloove F, Lastrucci L (2022) Notulae to the Italian alien vascular flora: 14. Italian Botanist 14: 99-118. https://doi.org/10.3897/italianbotanist.14.97758

Supplementary data

opencc-zeroDec 2022View details →
zenodo24/100

Chang'e 5 RF recording at 8463.7 MHz with Allen Telescope Array during LOI-2

<p>This dataset contains a recording of X-band telemetry signals from the Chinese lunar sample retrieve mission Chang&#39;e 5 done on 2020-11-29 before and during the LOI-2 (lunar orbit injection 2) manoeuvre that circularized the spacecraft&#39;s elliptical lunar orbit. The recording was done at Allen Telescope Array using antenna 1h in dual XY (linear) polarization.</p> <p>The hardware configuration was as follows: antennas 1h was connected to RFCB LO d, which was tuned to a frequency of 8475 MHz and used an output IF of 512 MHz. A USRP N321 was connected to the IF output of the RFCB and digitized both polarizations. The USRP used external 10 MHz reference and PPS coming from the observatory distribution system. The IQ&nbsp; sample rate of the USRP was 30.72 Msps and a GNU Radio flowgraph was used to channelize four frequencies from the spacecraft (8463.7, 8471.2, 8478.6 and 8486.2 MHz), using an IQ sample rate of 240 ksps for each channel.</p> <p>The GNU Radio flowgraph stored the IQ data for each channel as 32-bit floats in the <a href="https://wiki.gnuradio.org/index.php/Metadata_Information">GNU Radio metatata file format</a>, with detached headers. After recording, the data was converted to <a href="https://github.com/gnuradio/SigMF">SigMF</a> format.</p> <p>This dataset contains the IQ data for the channel at 8463.7 MHz, which corresponds to the lander, in SigMF format. Each polarization is in a different file. The original metadata headers are also provided.</p> <p><strong>Note:</strong> during the observation, the frequency of the RFCB LO was lowered by exactly 30 kHz in two occasions to prevent the signals from drifting out of the channel passband due to Doppler. The two LO jumps can be easily seen in the residual carrier of the signals and corrected.</p>

opencc-by-4.0Dec 2020View details →
zenodo24/100

Loi Krathong

Loi Krathong is a Siamese festival celebrated annually throughout the Kingdom of Thailand and in nearby countries with significant southwestern Tai cultures (Laos, Shan, Mon, Tanintharyi, Kelantan, Kedah and Xishuangbanna). The name could be translated as "to float a basket," and comes from the tradition of making krathong or buoyant, decorated baskets, which are then floated on a river. Source: Objaverse 1.0 / Sketchfab

opencc-byOct 2019View details →
zenodo12/100

Data set from De Carlo M, Testa L, Leoncini M, Nicolini E, Varbella F, Cortese B, Ribichini F, Bartorelli AL, Calabria P, Indolfi C, Tomai F, Loi B, Fischietti D, Tarantini G, Bedogni F, Petronio AS. Two-year clinical outcomes of the "Italian diffuse/multivessel disease absorb prospective registry" (IT-DISAPPEARS). Int J Cardiol. 2019 Sep 1;290:21-26. doi: 10.1016/j.ijcard.2019.04.095. Epub 2019 May 3. PMID: 31104821.

<p>Data set from De Carlo M, Testa L, Leoncini M, Nicolini E, Varbella F, Cortese B, Ribichini F, Bartorelli AL, Calabria P, Indolfi C, Tomai F, Loi B, Fischietti D, Tarantini G, Bedogni F, Petronio AS. Two-year clinical outcomes of the &quot;Italian diffuse/multivessel disease absorb prospective registry&quot; (IT-DISAPPEARS). Int J Cardiol. 2019 Sep 1;290:21-26. doi: 10.1016/j.ijcard.2019.04.095. Epub 2019 May 3. PMID: 31104821.</p> <p>&nbsp;</p> <p>This is the abstract:</p> <p><strong>Background:&nbsp;</strong>Large prospective studies on the use of bioresorbable vascular scaffolds (BVS) for diffuse coronary artery disease are lacking. IT DISAPPEARS is a large multicentre prospective registry investigating the short and long-term outcomes of everolimus-eluting BVS in patients with long coronary lesions and/or multivessel coronary artery disease (ClinicalTrials.gov:&nbsp;<a href="http://clinicaltrials.gov/show/NCT02004730">NCT02004730</a>). We hereby report the 2-year outcomes of the registry.</p> <p><strong>Methods:&nbsp;</strong>We enrolled 1002 patients with complex lesions undergoing implantation of 2040 BVS with a prespecified technique including predilation, correct sizing, and postdilation with non-compliant balloons. The primary endpoint was the rate of device-oriented composite endpoint (DOCE), consisting of cardiac death, target vessel-related myocardial infarction (MI), and ischaemia-driven target lesion revascularization (TLR). Secondary endpoints included: 1) patient-oriented composite endpoint (POCE), consisting of all-cause mortality, all infarctions and all revascularisations; 2) definite/probable scaffold thrombosis.</p> <p><strong>Results:&nbsp;</strong>Clinical presentation was an acute coronary syndrome in 59.8% of patients. Total BVS length implanted was 47 &plusmn; 22 mm. Postdilation of all scaffolds per patient was performed in 96.8%, while optimal implantation as per study guidelines was applied in 71.4%. Through 2-year follow-up, DOCE occurred in 9.5% of patients (cardiac death 0.6%, target vessel-related MI 5.3%, TLR 6.6%). The rate of POCE was 16.6% and of scaffold thrombosis 1.1%. Female gender, total length of coronary lesions, treatment of bifurcation lesions and use of 2.5 mm scaffolds were independent predictors of DOCE.</p> <p><strong>Conclusions:&nbsp;</strong>The 2-year results of IT-DISAPPEARS show that BVS may yield acceptable clinical outcomes in patients with complex coronary lesions when the implantation technique is appropriate.</p> <p>&nbsp;</p>

restrictedSep 2020View 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