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1,393 results for “traces”

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FIGURE 1 in Hidden subsurface garden on own faeces - the trace fossil Tubulichnium rectum (Fischer-Ooster, 1858) from the Cretaceous-Palaeogene deep-sea sediments

FIGURE 1. Location maps: 1, a part of Europe with main localities of the material studied and indication of the main study area in the Polish Carpathians; 2, the main study area in the Polish Carpathians with indication of several localities of the material studied or reported occurrences of Tubulichnium rectum.

opencc-by-4.0Aug 2017View details →
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FIGURE 2 in Hidden subsurface garden on own faeces - the trace fossil Tubulichnium rectum (Fischer-Ooster, 1858) from the Cretaceous-Palaeogene deep-sea sediments

FIGURE 2. Holotype of Tubulichnium rectum (Fischer-Ooster, 1858) and some other key specimens described by Fischer-Ooster (1858) and Książkiewicz (1977), which are housed in the Naturhistorisches Museum der Burgergemeinde Bern (NMBE) in Switzerland and in the Nature Education Centre of the Jagiellonian University – Museum of Geology, Kraków, Poland, respectively: 1, holotype, originally Halymenites rectus Fischer-Ooster and Chondrites targionii (Cht), Gurnigel Flysch (Maastrichtian), Seeligraben near Gurnigelbad (Switzerland), specimen NMBE 5017471. Detail illustrated in 2 marked by the quadrangle; 2, detail of 1; 3, original of Halymenites minor Fischer-Ooster, 1858 and Chondrites intricatus (Chi) from Gurnigel Flysch (Maastrichtian), Seeligraben near Gurnigelbad (Switzerland), specimen NMBE 5017474; 4, original of Halymenites incrassatus Fischer-Ooster, 1858, Fähnernspitz, Upper Cretaceous, E Switzerland, specimen NMBE 5017470; 5, holotype of Tubulichnium incertum Książkiewicz, 1977 (yellow arrow), other specimen of the same ichnotaxon (Tr) and Scolicia vertebralis (Sv); Ropianka Formation (Inoceramian Beds), Upper Cretaceous-Paleocene, Bachów, Skole Nappe, specimen UJTF 938; 6, detail of 5 showing the holotype.

opencc-by-4.0Aug 2017View details →
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Reference collection of combat wear traces on replicas of Bronze Age spears

<p>This Dataset comprises a collection of photographs of combat wear traces produced during various experiments focusing on the use of bronze spears in combat experiments as described in the paper <em>Gentile V., van Dijk C.J., ter Mors O., (2024): Multi-stage experiments in Bronze Age spear combat: insights on wear&nbsp;</em><em>formation, trauma, and combat contexts. Journal of Archaeological science (<a href="https://doi.org/10.1016/j.jas.2024.106044">https://doi.org/10.1016/j.jas.2024.106044</a></em><em>).</em>&nbsp;<br><br>Please read the README file for information on how to navigate the dataset.&nbsp; <br><br>This dataset is distributed under CC BY-NC 4.0 license: <a href="https://creativecommons.org/licenses/by-nc/4.0/">https://creativecommons.org/licenses/by-nc/4.0/ </a><br>For other uses, please contact the creator.</p> <p>&nbsp;</p>

opencc-by-nc-nd-4.0Aug 2024View details →
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Fig. 2. Cassids from the Korytnica Basin. A, B. Semicassis miolaevigata Sacco, 1890. A in Traces of cassid snails predation upon the echinoids from the Middle Miocene of Poland

Fig. 2. Cassids from the Korytnica Basin. A, B. Semicassis miolaevigata Sacco, 1890. A. Shell MWG/ZI/32/002 in abapertural (A1) and apertural (A2) views, Korytnica Clays. B. Internal mould MWG/ZI/32/003, Heterostegina Sands. C, D. Cassidaria cingulifera Hoernes and Auinger, 1884. C. Incomplete shell BkK−G476 in latero−apertural view, Korytnica Clays. D. Incomplete shell BkK−G475 in apical view, Korytnica Clays. E. Cypraecassis cypraeiformis (Borson, 1820), shell MWG/ZI/32/001 in abapertural (E1) and apertural (E2) views, Korytnica Clays. Scale bars 1 cm. Photographs A, B, E taken by B. Malinowska, C, D taken by B. Drozd. Specimens BkK−G475−476 were previously illustrated by Bałuk (1995).

opencc-by-4.0Sep 2003View details →
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Carbon neutrality policy can deliver disproportionately higher gains for toxic trace elements control in China

<p>The dataset of carbon neutrality policy can deliver disproportionately higher gains for toxic trace elements control in China.</p>

opencc-by-4.0Sep 2024View details →
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Etude de l'intra-variabilité et de l'intervariabilité des traces de clés à molette sur les cylindres

<p><em><strong>Etude du pouvoir discriminatoire des traces de cl&eacute;s &agrave; molette sur des cylindres</strong></em></p> <p>Jeanne Levasseur</p> <p>Travail de Master en science forensique 2024 sous la co-direction du Prof. C. Champod (ESC) et Steve Bapst (BPTS). Un projet men&eacute; au sein de la&nbsp;police cantonale de la R&eacute;publique et canton de Gen&egrave;ve au sein de la brigade de police technique et scientifique (BPTS).</p> <p>Les donn&eacute;es acquises au sein de la BPTS sont regroup&eacute;es dans 5 dossiers diff&eacute;rents.</p> <p>Le premier dossier est nomm&eacute; &laquo; <strong>Traces</strong> &raquo; et contient toutes les traces qui sont sans annotation. Il s&rsquo;agit des traces enregistr&eacute;es juste apr&egrave;s leur acquisition &agrave; l&rsquo;aide de l'instrument ToolScan (Laboratory Imaging s.r.o). <br>Les traces sont nomm&eacute;es de la mani&egrave;re suivante : D2_6_B correspond aux traces effectu&eacute;es par la deuxi&egrave;me cl&eacute; &agrave; molette Dexter apr&egrave;s 6 utilisations et avec le c&ocirc;t&eacute; B.<br>Ce dossier est contient 4 sous-dossiers:<br>-Un dossier &laquo; Dexter &raquo; (traces effectu&eacute;es avec des cl&eacute;s &agrave; molette de la marque Dexter).<br>-Un dossier &laquo; Gripwell &raquo; (traces effectu&eacute;es avec des cl&eacute;s &agrave; molette de la marque Gripwell).<br>-Un dossier &laquo; Lux-Tools &raquo; (traces effectu&eacute;es avec des cl&eacute;s &agrave; molette de la marque Lux-Tools).<br>-Un dossier &laquo; Test &agrave; l&rsquo;aveugle &raquo;. Les traces pour le test &agrave; l&rsquo;aveugle sont simplement nomm&eacute;es de A &agrave; F avec l&rsquo;indication de la m&acirc;choire.</p> <p>Le deuxi&egrave;me dossier est nomm&eacute; &laquo; <strong>Documentation des traces </strong>&raquo; et contient toutes les traces annot&eacute;es. Il s&rsquo;agit des caract&eacute;ristiques qui ont &eacute;t&eacute; observ&eacute;es sur les traces et annot&eacute;es &agrave; l&rsquo;aide du logiciel Lucia Forensic.<br>Ce dossier contient 4 sous-dossiers:<br>-Un dossier &laquo; Dexter &raquo;<br>-Un dossier &laquo; Gripwell &raquo;<br>-Un dossier &laquo; Lux-Tools &raquo;<br>-Un dossier &laquo; Test &agrave; l&rsquo;aveugle &raquo;</p> <p>Le troisi&egrave;me dossier est nomm&eacute; &laquo; <strong>Exploitation des traces</strong> &raquo; et contient toutes les comparaisons entre traces pr&eacute;c&eacute;demment annot&eacute;es qui ont &eacute;t&eacute; effectu&eacute;es au cours de ce travail. Initialement, dans le dossier &laquo; Documentation des traces &raquo;, les caract&eacute;ristiques sont annot&eacute;es en rouge. Dans ce dossier &laquo; Exploitation des traces &raquo;, les caract&eacute;ristiques qui sont communes entre deux traces suite &agrave; une comparaison sont annot&eacute;es en vert. Ce dossier contient en 7 sous-dossiers:<br>- Un dossier &laquo; Comparaisons des traces du test &agrave; l&rsquo;aveugle &raquo;.<br>- Un dossier &laquo; Comparaisons entre les traces des Dexter &raquo;. Il s&rsquo;agit des comparaisons effectu&eacute;es entre les traces r&eacute;alis&eacute;es par les 2 cl&eacute;s &agrave; molette Dexter diff&eacute;rentes.<br>- Un dossier &laquo; Comparaisons entre les traces des Gripwell &raquo;. Il s&rsquo;agit des comparaisons effectu&eacute;es entre les traces r&eacute;alis&eacute;es par les 20 cl&eacute;s &agrave; molettes Gripwell diff&eacute;rentes.<br>- Un dossier &laquo; Comparaisons entre les traces des Lux-Tools &raquo;. Il s&rsquo;agit des comparaisons effectu&eacute;es entre les traces r&eacute;alis&eacute;es par les 2 cl&eacute;s &agrave; molettes Lux-Tools diff&eacute;rentes.<br>- Un dossier &laquo; Comparaisons entre traces de la m&ecirc;me cl&eacute; &agrave; molette sur le m&ecirc;me cylindre &raquo;. A l&rsquo;int&eacute;rieur de ce dossier, les traces sont r&eacute;parties suivant les trois marques (Dexter, Gripwell et Lux-Tools) de cl&eacute;s &agrave; molette.<br>- Un dossier &laquo; Comparaisons entre traces de la m&ecirc;me cl&eacute; &agrave; molette sur plusieurs cylindres &raquo;. A l&rsquo;int&eacute;rieur de ce dossier, les traces sont r&eacute;parties suivant les trois marques de cl&eacute;s &agrave; molette. Les comparaisons sont effectu&eacute;es entre 3 traces &agrave; la fois pour observer la variabilit&eacute; entre la 1&egrave;re, la 6e et la 11e utilisation. Les caract&eacute;ristiques en vert sont les caract&eacute;ristiques qui sont communes entre les 3 traces. Les caract&eacute;ristiques en bleu fonc&eacute; sont les caract&eacute;ristiques qui sont communes entre les traces de 1&egrave;re et 6e utilisation. Les caract&eacute;ristiques en bleu clair sont les caract&eacute;ristiques qui sont communes entre les traces de 6e et 11e utilisation. Les caract&eacute;ristiques en jaune sont les caract&eacute;ristiques qui sont communes entre les traces de 1&egrave;re et 11e utilisation. Enfin, les caract&eacute;ristiques en rouge sont les caract&eacute;ristiques qui ne sont retrouv&eacute;es que sur la trace d&rsquo;int&eacute;r&ecirc;t.<br>- Un dossier &laquo; Comparaisons trace-outil &raquo;. Ce dossier contient les comparaisons effectu&eacute;es entre le scan d&rsquo;une trace et la photographie de la m&acirc;choire l&rsquo;ayant r&eacute;alis&eacute; pour les cl&eacute;s Gripwell, Lux-Tools, Dexter et celles utilis&eacute;e pour le Test &agrave; l&rsquo;Aveugle ainsi qu&rsquo;un sous-dossier nomm&eacute; &laquo; Comparaison outil-outil &raquo; qui repr&eacute;sente les comparaisons des m&acirc;choires entre elles afin d&rsquo;observer les caract&eacute;ristiques qui sont dues &agrave; la fabrication de l&rsquo;outil ou qui sont arriv&eacute;es par l&rsquo;usage de ce dernier. Dans ces comparaisons, les caract&eacute;ristiques annot&eacute;es en rouge repr&eacute;sentent les caract&eacute;ristiques qui sont li&eacute;es &agrave; l&rsquo;usage de la cl&eacute; &agrave; molette.</p> <p>Le quatri&egrave;me dossier est nomm&eacute; &laquo; <strong>Photographies cl&eacute;s &agrave; molette et m&acirc;choires</strong> &raquo; et contient toutes les photographies g&eacute;n&eacute;rales des cl&eacute;s &agrave; molettes ainsi que les photographies au macroscope des m&acirc;choires sans annotation.<br>Ce dossier contient 2 sous-dossiers :<br>- Un dossier &laquo; Cl&eacute;s &agrave; molettes &raquo; qui contient les photographies g&eacute;n&eacute;rales des cl&eacute;s &agrave; molette r&eacute;parties selon leurs marques.<br>- Un dossier &laquo; M&acirc;choires &raquo; qui contient les photos au macroscope des m&acirc;choires des cl&eacute;s &agrave; molette r&eacute;parties selon leurs marques. Pour le test &agrave; l&rsquo;aveugle, 2 cl&eacute;s non &agrave; l&rsquo;&eacute;tude ont &eacute;t&eacute; utilis&eacute;es en suppl&eacute;ment, il s&rsquo;agit des marques Aigo et Irega et ces photos sont pr&eacute;sentes dans &laquo; Test &agrave; l&rsquo;aveugle &raquo; de ce m&ecirc;me dossier.</p> <p>Le cinqui&egrave;me dossier est nomm&eacute; &laquo; <strong>Pairwise Welsh Test</strong> &raquo; et contient le code RStudio (fichier RMD) permettant d&rsquo;appliquer les tests statistique saux mesures de largeurs et des angles ainsi que de produire les six plots associ&eacute;s. Le fichier "Mesures taille et angle.xlsx" contenant des donn&eacute;es brutes est &eacute;galement &agrave; disposition pour &ecirc;tre charg&eacute; dans RStudio</p> <p>Le rapport peut &ecirc;tre mise &agrave; disposition sur demande au gestionnaire des donn&eacute;es (christophe.champod@unil.ch)</p>

opencc-by-4.0Jul 2024View details →
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Fig. 9. Other trace fossils from Nefiach, Pliocene. A in Bioerosion in shell beds from the Pliocene Roussillon Basin, France: Implications for the (macro)bioerosion ichnofacies model

Fig. 9. Other trace fossils from Nefiach, Pliocene. A. Centrichnus cf. eccentricus beside an specimen of the foraminiferan tracemaker, Dyocibicides biserialis, still attached, JMC−UB/I−0103. B. Another specimen of C. cf. eccentricus, JMC−UB/I−0103. C. Pinaceocladichnus, a bryozoan boring, in a pectinid valve, JMC−UB/I−0107. D. Oichnus simplex on an oyster shell, JMC−UB/I−0108. E. Repaired scars produced by durophagous attacks in a pectivid valve, JMC−UB/I−0102.

opencc-by-4.0Dec 2007View details →
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Fig. 6 in Palaeobiological and palaeonvironmental significance of the Pliocene trace fossil Dactyloidites peniculus

Fig. 6. Morphological details of Dactyloidites peniculus. A. Specimen INGUJ 200P2, vertical cross section of the radial structure showing light pelletal masses, tubes and dark sandy sediment; distinct coatings containing the pellets (c) are seen around some tubes. Some tubes display a meniscate fill structure (m). B. Specimen INGUJ 200P1, a clump of pellets on the surface of the radiating structure. C. Specimen INGUJ 200P3, compressed pellets in a tube showing angular contacts.

opencc-by-4.0Dec 2007View details →
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Fig. 3 in Palaeobiological and palaeonvironmental significance of the Pliocene trace fossil Dactyloidites peniculus

Fig. 3. Discontinuity surface. Dactyloidites peniculus (D) connected to the sequence boundary by steep shafts. Ophiomorpha (Oph) and Dactyloidites mutually cross−cut each other, whereas Thalassinoides (Thalassinoides boxwork) cross−cuts Dactyloidites. Field photograph (A) and its interpretation (B).

opencc-by-4.0Dec 2007View details →
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Fig. 5. Mollusc grazing traces Radulichnus inopinatus from Nefiach, Pliocene. A in Bioerosion in shell beds from the Pliocene Roussillon Basin, France: Implications for the (macro)bioerosion ichnofacies model

Fig. 5. Mollusc grazing traces Radulichnus inopinatus from Nefiach, Pliocene. A. Inner surface of a pectinid valve with areas covered by Radulichnus (A1) and detail of the specimen (A2), displaying the arrangement of scratches in groups, JMC−UB/I−0103. B. Oyster shell with dense patches of Radulichnus (B1) and sculpture resulting from pervasive, deep Radulichnus bioerosion (B2), JMC−UB/I−0098. Scale bars 1 mm.

opencc-by-4.0Dec 2007View details →
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Fig. 2 in Palaeobiological and palaeonvironmental significance of the Pliocene trace fossil Dactyloidites peniculus

Fig. 2. Schematic section showing the distribution of sediments types, body and trace fossils. Dactyloidites peniculus occurs close below the sequence boundary from 48.8 to 51.0 m. Grain size: Si, silt; Fs, fine sand; Cs, coarse sand.

opencc-by-4.0Dec 2007View details →
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Fig. 1 in Palaeobiological and palaeonvironmental significance of the Pliocene trace fossil Dactyloidites peniculus

Fig. 1. Location of the study area in the Stirone river valley close to San Nicomede (Province of Parma, Italy). Arrows "Section Stirone 0 m" and "Section Stirone 75 m" point to the base and the top of the section shown in Fig. 2.

opencc-by-4.0Dec 2007View details →
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Fig. 5 in Palaeobiological and palaeonvironmental significance of the Pliocene trace fossil Dactyloidites peniculus

Fig. 5. The radial part of Dactyloidites peniculus after preparation. A. Specimen INGUJ 200P1 after sand jet preparation, in top (A1) and bottom (A2) views. B. Specimen INGUJ 200P4, extra large vertical thin section.

opencc-by-4.0Dec 2007View details →
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Trace metals (Cd, Cu, Pb and Zn) concentrations in tissues of Pipistrellus kuhlii from NE Ukraine

<p>The dataset contains information on level of cadmium (Cd), copper (Cu), lead (Pd) and zinc (Zn) in internal and external tissues of <em>Pipistrellus kuhlii </em>from industrial (Mariupol city) and agricultural (Karlovka village). Bats were taken for analysis from Ukrainian Bat Rehabilitation Centre (Kharkiv, Ukraine) in 2021.&nbsp;</p>

opencc-zeroSep 2024View details →
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TRACMASS trajectory data traced from the Tsushima Strait

<p>We used high-resolution GLORYS12V1 reanalysis data from the E.U. Copernicus Marine Service as input for the TRACMASS model to obtain the trajectory data.</p>

opencc-by-4.0Sep 2024View details →
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Dataset: A review of methods to trace material flows into final products in dynamic material flow analysis - from industry shipments in physical units to monetary input-output tables (p

<p>Dynamic material flow analysis (dMFA) is widely used to model stock-flow dynamics. To appropriately represent material lifetimes, recycling potentials, and service provision, dMFA requires data about the allocation of economy-wide material consumption to different end-use products or sectors, that is, the different product stocks, in which material consumption accumulates. Previous estimates of this allocation only cover few years, countries, and product groups. Recently, several new methods for estimating end-use product allocation in dMFA were proposed, which so far lack systematic comparison. We review and systematize five methods for tracing material consumption into end-use products in inflow-driven dMFA and discuss their strengths and limitations. Widely used data on industry shipments in physical units have low spatio-temporal coverage, which limits their applicability across countries and years. Monetary input&ndash;output tables (MIOTs) are widely available and their economy-wide coverage makes them a valuable source to approximate material end-uses. We find four distinct MIOT-based methods: consumption-based, waste input&ndash;output MFA (WIO-MFA), Ghosh absorbing Markov chain, and partial Ghosh. We show that when applied to a given MIOT, the methods&rsquo; underlying input&ndash;output models yield the same results, with the exception of the partial Ghosh method, which involves simplifications. For practical applications, the MIOT system boundary must be aligned to those of dMFA, which involves the removal of service flows, sector (dis)aggregation, and re-defining specific intermediate outputs as final demand. Theoretically, WIO-MFA, applied to a modified MIOT, produces the most accurate results as it excludes massless and waste transactions. In part 2 of this work, we compare methods empirically and suggest improvements for aligning MIOT-dMFA system boundaries.</p>

opencc-by-4.0Jan 2023View details →
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Data underlying submission "Tracing stream flow in confluent rivers – a journey from chaos to order"

<p>These data underly the analysis presented in the manuscript "Tracing stream flow in confluent rivers &ndash; a journey from chaos to order" by Erwin Zehe, Samuel Schroers and Hubert Savenije.</p> <p>The data used for this analysis are available were taken from the globally available the HydroSHEDS data base <em>at https://www.hydrosheds.org created by Lehner et al. (2008)</em>. The extracted data for analyzing the 18 of the largest Rivers are stored as csv files sorted by river names. The metadata are provided in "HydroSHEDS_TechDoc_v1_4.pdf" and "BasinATLAS_Catalog_v10.pdf".</p> <p>The matal codes for data analysis and simulations were tested and should be self-explaining.</p> <p>&nbsp;Lehner, B., Verdin, K. &amp; Jarvis, A. New Global Hydrography Derived From Spaceborne Elevation Data. <em>Eos, Transactions American Geophysical Union</em> <strong>89</strong>, 93-94, doi:<a href="https://doi.org/10.1029/2008EO100001">https://doi.org/10.1029/2008EO100001</a> (2008).</p>

opencc-by-4.0Oct 2024View details →
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Dataset for the publication: Metallic Impurities in Electrolysis: Catalytic Effect of Pb Traces in Reductive Amination and Acetone Reduction

<p>This dataset contains the experimental data of the publication "Metallic Impurities in Electrolysis: Catalytic Effect of Pb Traces in Reductive Amination and Acetone Reduction" that is published in Angewandte Chemie International Edition. &nbsp;</p>

opencc-by-4.0Aug 2024View details →
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Trace metals (Cd, Cu, Pb and Zn) concentrations in tissues of Pipistrellus kuhlii lepidus with identified age from unpolluted area - Karlovka village NE Ukraine

<div> <p>The dataset contains information on level of cadmium (Cd), copper (Cu), lead (Pd) and zinc (Zn) in internal and external tissues of <em>Pipistrellus kuhlii lepidus </em>from agricultural area (Karlovka village). Bats were taken for analysis from Ukrainian Bat Rehabilitation Centre (Kharkiv, Ukraine) in 2021-2022. In addition, age of each individual was identified using osteochronological technique.&nbsp;</p> <p>&nbsp;</p> </div>

opencc-zeroOct 2024View details →
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XRP Ledger Consensus Protocol Debug-level Log Traces

<p>A dataset of log traces from the consensus protocol of a <a href="https://github.com/ripple/rippled">rippled server</a> instance. The traces are filtered at the debug (DBG) level. Each file contains a separate trace, representing a full round of the consensus protocol.</p>

opencc-by-4.0Jun 2021View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record

OpenNeuro

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Last verified 2026-04-29Open record