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Fig. 7 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 7 Buckladia sp. A - inventory no. 27719 (field no. 1107). a-i: Radial section - d-g: - scalariform thickenings of Zamia type on tracheids, with reticular aspect; g-i: - araucarioid cross-fields with alternate in 2-3 superposed rows.

opencc-by-4.0Sep 2021View details →
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Fig. 2 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 2 Protojuniperoxylon holbavicum sp. nov. (inventory no. 27706). a-c: Cross section - tracheids polygonal with rounded corners, and linear rays; d-f: Tangential section - uniseriate rays with biseriate storeys with polygonal ray-cells, with lateral empty spaces; unpitted tracheids; g-j: Radial section –uniseriate radial pitting on tracheids as hexagonal pits; araucarioid cross-fields with vertical pairs of pits or slightly irregular; end-wall with juniperoid thickenings (see arrow).

opencc-by-4.0Sep 2021View details →
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Fig. 3 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 3 Brachyoxylon holbavicum Iamandei, Iamandei and Grădinaru, 2018. (inventory no. 27711). a-c: Cross section - tracheids polygonal with rounded corners, and linear rays; d-f: Tangential section - pitting on tracheids - absent; rays uniseriate; g-i: Radial section – radial pitting of mixed type on tracheids, pits hexagonal and, when biseriate, alternate; cross-fields with 2-3(4) cupressoid to araucarioid in 1 row or, when more numerous, in 2-3 superposed rows.

opencc-by-4.0Sep 2021View details →
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Fig. 5 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 5 Palaeoginkgoxylon sp. - inventory no. 27674 (field no. 1032). a-c: Cross section - tracheids polygonal with rounded corners; disperse mucilaginous cells; linear rays with mucilaginous ray-cells; d-f: Tangential section - unpitted tracheids; uniseriate rays with inflated secretory ray-cells; g-i: Radial section - radial pitting on tracheids usually uniseriate, of mixed type, with hexagonal pits or rounded; cupressoid cross-fields with 2-3 superposed rows of 1- 3 pits.

opencc-by-4.0Sep 2021View details →
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Fig. 8 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 8 Bucklandia sp. B - inventory no. 27676 and 27677 (field no. 1037 a-f, 1038g-i). a-f: Cross section – b: - tracheids polygonal with rounded corners, and linear rays; primary ray in contact with xylem; c: - mucilaginous canals lined by secretory epithelial cells; d-e: - phloem cells with idioblasts bearing mucillages; f: - or crystals (f); g: Tangential section - uniseriate rays with biseriate storeys with polygonal ray-cells; unpitted tracheids; h-i: Radial section – mucilaginous canal (h); araucarian radial pitting on tracheids with uniseriate hexagonal pits (i), cross-fields with 2-3 superposed rows of hexagonal pits (h-i).

opencc-by-4.0Sep 2021View details →
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Fig. 4 in Contributions To The Study Of The Early Jurassic Petrified Forest Of Holbav And Cristian Areas (Brașov Region, South Carpathians, Romania), 2 Part.

Fig. 4 Brachyoxylon cristianicum Iamandei, Iamandei and Grădinaru, 2018 - inventory no. 27690(field no. 1113b). a-c: Cross section - thick-walled tracheids, polygonal, with rounded corners and curled walls; dispersed parenchyma cells; linear rays; d-f: Tangential section - uniseriate rays with polygonal ray-cells and biseriate storeys; unpitted tracheids; parenchyma with end-walls smooth or nodular and resin content inside; g-i: Radial section - radial pitting on tracheids of mixed type; cross-fields with 2-3 cupressoid or araucarioid in a single row or, when more numerous, in 2-3 superposed rows.

opencc-by-4.0Sep 2021View details →
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Fig. 11 in A new polyphysacean alga from the Miocene of Romania and its biomineralization

Fig. 11. Scheme of intracellular mineralization in polyphysaceans (gametophores are sketched in cross section). A. Gametangia and intergametangial space not mineralized. B. Gametangia unmineralized, intergametangial space mineralized. C. Gametangia mineralized, intergametangial space not mineralized. D. Gametangia and intergametangial space mineralized.

opencc-by-4.0Jan 2019View details →
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Vulnerability tools - Southern Romanian Carpathian mountains (Romania)

<p><span>The MOVING project has developed accessible <strong>tools </strong>designed to assess susceptibility and vulnerability within the region, ready to be used by both experts and the general audience. This document synthesises crucial information for the Southern Romanian Carpathian mountains Region, particularly focusing on the Participatory Vulnerability Matrix and the Spatial Vulnerability Map. Furthermore, it includes <strong>supplementary maps and figures </strong>detailing various aspects such as the delineation of Reference Landscape, distribution of land systems, areas affected by wildfires, susceptibility to floods across different return periods, severity of forest disturbances, rainfall erosivity, and more.</span></p>

opencc-by-4.0Apr 2024View details →
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Fig. 5 in A new polyphysacean alga from the Miocene of Romania and its biomineralization

Fig. 5. Polyphysacean alga Acetabularia moldavica sp. nov. early Sarmatian, Pătrăuți (Suceava County, Romania). A. Paratype, MP-UAIC 8228/PD.1/10, → fertile cap in lower view (A1) and detail (lower side) of fertile rays (A2). B. Paratype, MP-UAIC 8228/PD.3/8, fertile cap in upper view with an extracellular mineralized thin layer preserved (lower side). C. Paratype, MP-UAIC 8228/PD.1/3, detail of the fertile cap showing the upper coronae (see also Fig. 4G). D. Holotype, MP-UAIC 8228/PD.1/6, detail of the fertile cap showing lower coronae, notice the extracellular mineralization preserved between spicules (see also Fig. 4F). E. Paratype, MP-UAIC 8228/PD.1/12, detail of a fertile cap in upper view showing the upper coronae and aggregates of compacted mineralized cysts. F. Paratype, MP-UAIC 8228/PD.2/14, detail of two spicules with broken cysts.

opencc-by-4.0Jan 2019View details →
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Fig. 4 in A new polyphysacean alga from the Miocene of Romania and its biomineralization

Fig. 4. Polyphysacean alga Acetabularia moldavica sp. nov. (A–H) and Patruliuspora sp. (I), early Sarmatian, Pătrăuți (Suceava County, Romania). → A. Paratype, MP-UAIC 8228/PD.1/15, fertile cap in upper view. B. Paratype, MP-UAIC 8228/PD.2/17, fertile cap in lower view. C. Paratype, MPUAIC 8228/PD.1/1, fertile cap in lower view. D. Paratype, MP-UAIC 8228/PD.2/25, fertile cap in upper view. E. Paratype, MP-UAIC 8228/PD.1/16, fertile cap in lower view. F. Holotype, MP-UAIC 8228/PD.1/6, fertile cap in lower view. G. Paratype, MP-UAIC 8228/PD.1/3, fertile cap in upper view. H. Paratype, MP-UAIC 8228/PD.2/21, an isolated spicule in the matrix. I. Group of five cysts in the matrix, MP-UAIC 8228/PD.3/22.

opencc-by-4.0Jan 2019View details →
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National Checklists: Romania Species List

Data from: GBIF.org (23 January 2025) GBIF Occurrence Download <a href="https://doi.org/10.15468/dl.vd2ajk" target="_blank" rel="noopener">https://doi.org/10.15468/dl.vd2ajk</a>

opencc-zeroAug 2024View details →
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Results from the monitoring of veterinary medicinal product residues and other substances in live animals and animal products - Romania

<div> <p>This dataset contains the monitoring results of veterinary medicinal product residues and other substances measured in live animals and animal products analysed by the national competent authority of Romania. The presence of unauthorised substances, residues of veterinary medicinal products in food may pose a risk factor for public health.</p> <p>For this reason and in order to ensure a high level of consumer protection, a comprehensive legislative framework has been established in the European Union (EU) which defines maximum limits permitted in food and monitoring programmes for the control of the presence of these substances in the food chain. Regulation (EU) No 37/2010 establishes maximum limits for residues of veterinary medicinal products in food-producing animals and animal products. Maximum residue levels for pesticides in or on food and feed of plant and animal origin are laid down in Regulation (EC) No 396/2005. &nbsp;Commission Implementing Regulation (EU) 2022/1646 lays down practical arrangements for and specific content of official controls of the use of veterinary medicinal products in live animals and products of animal origin through three different official national control plans: a national risk-based control plan for production in the Member States, a national randomised surveillance plan for production in the Member States and a national risk-based control plan for third-country imports. Additionally, Commission Delegated Regulation (EU) 2022/1644 lays down the range of samples and stage of production, processing and distribution at which the samples are to be taken.</p> <p>Since 2018 until 2022, the data on the national residue monitoring plan were reported to EFSA in accordance with Council Directive 96/23/EC.</p> <p>The dataset contains the results of laboratory tests from samples taken from bovines, pigs, sheep, goats, horses, poultry, rabbits, farmed game, wild game aquaculture, milk, eggs and honey, and from 2023 also samples from casings, insects and reptiles.</p> <p>Targeted samples are taken with the aim of detecting illegal treatment or controlling compliance with the maximum levels laid down in the relevant legislation. This means that, in their national plans Member States target the groups of animals (species, gender, age) where the probability of finding residues is the highest. Conversely, the objective of random sampling is to collect significant data to evaluate, for example, consumer exposure to a specific substance.</p> <p>Suspect samples are taken as a consequence of i) non-compliant results on samples taken in accordance with the control plans, ii) possession or presence of prohibited substances at any point during manufacture, storage, distribution or sale through the food and feed production chain, or iii) suspicion or evidence of illegal treatment or non-compliance with the withdrawal period for an authorised medicinal veterinary product.</p> <p>Residues of pharmacologically active substances mean active substances, excipients or degradation products and their metabolites, which remain in food.</p> <p>Unauthorised substances mean substances that are not authorised as veterinary medicinal products or as a feed additive under European Union legislation.</p> <p>Prohibited substances mean substances which are prohibited for use in food producing animals according to the European Union legislation.</p> <p>Non-compliant sample is a sample that has been analysed for the presence of one or more substances and failed to comply with the legal provisions for at least one substance. Thus, a sample can be non-compliant for one or more substances.</p> <p><strong>REPORTING AUTHORITIES CONTRIBUTING TO EACH DATA COLLECTION:</strong></p> <p>VMPR_2023 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2022 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2021 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2020 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2019 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2018 &ndash; Institute of Hygiene and Veterinary Public Health</p> <p>VMPR_2017 &ndash; Institute of Hygiene and Veterinary Public Health</p> </div>

opencc-by-4.0May 2019View details →
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Dataset of the AVIRIS-NG methane campaign in Romania in 2021

<p>The dataset contains CH4 emission data from the AVIRIS-NG campaign conducted in Romania in July 2021.</p>

opencc-by-4.0Jul 2024View details →
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Figs 17–20 in Species Of The Genus Trachytes Michael, 1894 (Acari: Uropodina: Trachytidae) Of Romania

Figs 17–20. New occurrences of the Trachytes species in Romania: 17 = T. aegrota, 18 = T. carpathicus, 19 = T. romanica, 20. = T. baloghi (circle), T. adrianaea (triangular), T. irenae (diamond), T. mahunkai (star).

opencc-by-4.0Nov 2013View details →
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Figs 10–14 in Species Of The Genus Trachytes Michael, 1894 (Acari: Uropodina: Trachytidae) Of Romania

Figs 10–14. Trachytes mahunkai sp. n., female, holotype: 10 = palp, 11 = leg I, 12 = leg II, 13 = leg III, 14 = leg IV (ventral view).

opencc-by-4.0Nov 2013View details →
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Figs 6–13 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology

Figs 6–13. Genital slide of Euphydryas maturna and E. cynthia spp.: 6–7 = E. m. opulenta RÁKOSY et VARGA, ssp. n. (male, paratypes), 8–9 = E. m. partiensis VARGA et SÁNTHA, 1973 (male, paratypes), 10 = E. m. idunides (FRUHSTORFER, 1917) (male), 11 = E. m. maturna (LINNAEUS, 1758) (male), 12 = E. cynthia leonhardi (FRUHSTORFER, 1917), Rila Mts (male), 13 = E. cynthia drenovskyi (RÖBER,

opencc-by-4.0Jun 2012View details →
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Fig. 15 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology

Fig. 15. Variability in shape of processus posterior of Euphydryas maturna spp.: A–C = E. m. opulenta ssp. n. (Dobrogea); D–H = E. m. partiensis (E Hungary, Guthi forest); I–L = E. m. idunides

opencc-by-4.0Jun 2012View details →
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Fig. 18 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology

Fig. 18. The results of PCA. The points represent the samples; polygons indicate those samples that originate from the same population. The first two axes explained 43.2% of the total genetic variation

opencc-by-4.0Jun 2012View details →
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CH4 isotopic signatures of emissions from oil and gas extraction sites in Romania

<p>Dataset linked to the manuscript &quot;CH4 isotopic signatures of emissions from oil and gas extraction sites in Romania&quot;,&nbsp;submitted to Elementa: Science of the Anthropocene.</p> <p>Abstract:&nbsp;Methane (CH4) emissions to the atmosphere from the oil and gas sector in Romania&nbsp;remain highly uncertain, despite their relevance for the European Union&rsquo;s goals to&nbsp;reduce greenhouse gas emissions. Measurements of the isotopic composition of CH4&nbsp;can be used for source attribution, which is important in top-down studies of emissions&nbsp;from extended areas.&nbsp;We performed isotope measurements of CH4 in atmospheric air samples collected&nbsp;from an aircraft (24 locations) and ground vehicles (83 locations), around oil and gas&nbsp;production sites in Romania, with focus on the Romanian Plain. Ethane to methane&nbsp;ratios (C2:C1) were derived at 412 locations of the same fossil fuel activity clusters.&nbsp;The resulting isotopic signals (&delta;13C and &delta;2H in CH4) covered a wide range of values,&nbsp;indicating mainly thermogenic gas sources (associated with oil production) in the&nbsp;Romanian Plain, mostly in Prahova county (&delta;13C from -67.8 to -22.4 per mille V-PDB;&nbsp;&delta;2H from -255 to -138 per mille V-SMOW) but also the presence of some natural gas&nbsp;reservoirs of microbial origin in Dolj, Ialomia, Prahova and likely Teleorman counties.&nbsp;The classification based on C2:C1 ratios was generally in agreement with the one&nbsp;based on CH4 isotopic composition, and confirmed the characterisation of the gas&nbsp;origin.&nbsp;In several cases, the CH4 enhancements sampled from the aircraft could directly be&nbsp;linked to the underlying production clusters using wind data. The combination of&nbsp;&delta;13C and &delta;2H signals determined on these samples confirm that the oil and gas&nbsp;production sector is the main source of CH4 emissions in the target areas.</p>

opencc-by-4.0Oct 2021View details →
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Fig. 3 in Observation Of Eurasian Otter'S Diel Activity Using Camera Trapping In Central-Eastern Romania

Fig. 3. The activity pattern of the otter in the three protected areas, based on the number of otter recordings at the observation sites during March 2011–April 2016.

opencc-by-4.0Jan 2019View details →

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Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

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