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FIGURE 6 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 6. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Caudal vertebrae in lateral view. (A) proximal caudals, (B) distal caudal series and tail bend. Abbreviations: ap, anterior process; ffc, first flexural caudal vertebra; hp, hemapophysis; hs, hemapophyseal lobe; ns, neural spine. Scale bars equal 50 mm.
FIGURE 4 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 4. Cricosaurus albersdoerferi sp. nov. (BMMSBK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Close-ups of the dentition (A) and scleral ring (B). Scale bars equal 10 mm.
FIGURE 3 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 3. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Skull in lateral view with illustration of the preserved elements. Abbreviations: an, angular; art, articular; cor, coronoid; d, dentary; en, external naris; fr, frontal; hy, hyoid; jug, jugal; lac, lacrimal; mx, maxilla; ns, nasal; pmx, premaxilla; po, postorbital; pof, preorbital fenestra; prf, prefrontal;?qu, possible quadrate; sa, surangular; sdg, surangulodentary groove; sp, splenial;?sq, squamosal or squamosal-postorbital fragment. Scale bar equals 50 mm.
FIGURE 1 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 1. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Skeleton in lateral view. Scale bar equals 200 mm.
Figure 3 in Sheltered preservation in Ordovician trilobites
Figure 3. Sheltered trilobites from the ŠAErka Formation. (A) Internal mould of slightly damaged articulated exoskeleton of Placoparia sp. preserved inside of a cephalopod fragment, MBHR 21086. (B) Internal mould of a complete articulated specimen of Placoparia sp. preserved inside a fragment of an indetermined pseudorthocerid cephalopod, WBM S 05156. (C) External mould of thorax of a small trilobite?Placoparia sp. preserved inside the phragmocone chamber of the rare actinocerid cephalopod "Orthoceras" cf. bonum Barrande, 1867, GBA 2011/054/0001. (D) Seven thoracic segments of Placoparia sp. preserved within an incomplete and indeterminable orthocone cephalopod, WBM S 157. (E) Internal mould of cephalon and axial part of two anterior-most thoracic segments of the harpetid trilobite Eoharpes sp. is preserved inside of an incomplete phragmocone chamber of a middle-sized undetermined cephalopod, MBHR 337. (F) Internal mould of articulated incomplete exoskeleton of Eoharpes primus preserved under a large shield of an illaenid or asaphid trilobite, MBHR 8948. (G) Internal moulds of three articulated holaspid exoskeletons of Placoparia associated with 25 mm long thoracopygon of a holaspid specimen of Ormathops atavus (Barrande, 1872), VV285. (H) Four articulated exoskeletons of Placoparia sp. inside of a body chamber of a small, undetermined cephalopod, VV296a, b. Ar – Arachnostega gastrochaenae, c – isolated cephalon of Placoparia, e – enrolled specimen of Placoparia, h – in situ preserved hypostome, p – pygidium, s – septum. Localities: (A) and (G) Osek, (B) Cheznovice – ŠtěpAEnský rybník, (D) Mýto – highway, (F) and (H) Díly near Rokycany, (C) and (E) unknown. All specimens coated with ammonium chloride.
Figure 2 in Sheltered preservation in Ordovician trilobites
Figure 2. Stratigraphy of the Ordovician of the Prague Basin showing distribution of Eoharpes and Placoparia (modified from Fatka and Budil, 2014 and Budil and Fatka, 2021). Placoparia (P.) – Placoparia (Placoparia), Placoparia (C.) – Placoparia (Coplacoparia), Placoparia (H.) – Placoparia (Hawleia).
Figure 1 in Sheltered preservation in Ordovician trilobites
Figure 1. Geographical distribution of localities yielding Eoharpes and Placoparia preserved inside of cephalopod conchs and under large exoskeletal parts.
Fig. 3 in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)
Fig. 3 – Schematic restorations of ant-like stone beetles. A – The new fossil (based on Fig. 1); not to scale. B – Stage 2 larva of the extant species Stenomastigus longicornis (based on Jałoszyński & Kilian 2016 figs 1–4 p. 153); not to scale; note the similarities to the fossil larva. C–G – Restorations of different fossils, all to the same scale for size comparison. C–E – Fossils of adult ant-like stone beetles. C) Clidicostigus arachnipes (based on Jałoszyński et al. 2017 fig. 3A p. 114). D) Cascomastigus monstrabilis (based on Yin et al. 2017b fig. 1a p. 2). E) Cascomastigus minor (based on Yin et al. 2018b fig. 2A; width of body estimated based on the other species). F) The new fossil (same as A), but to scale. G) Estimated size of a possible stage 3 larva following the stage 2 larva which the new fossil presumably represents (by simply resizing the latter to 200%).
Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)
Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B – Detail of head, ventral. C – Colour-marked version of B. D – Detail of trunk appendage. Abbreviations: cl = claw; cx = coxa; de = distal visible element of maxillary palp; fe = femur; gl = possible galea; li = labium; lr = labrum; md = mandible; pe = proximal visible element of maxillary palp; pm = proximal region of maxilla (stipes?); ti = tibio-tarsus; tr = trochanter.
Fig. 5 in Balaenopterid Whale Specimens Preserved in Myanmar, and the First Record of Balaenoptera omurai Wada, Oishi, and Yamada 2003 from Myanmar Waters
Fig. 5. Strandings of Balaenoptera omurai were unexpectedly numerous totaling 5. Skeletons were collected 1 from Rakhine, and 4 from Tanintharyi.
Fig. 2. A in Balaenopterid Whale Specimens Preserved in Myanmar, and the First Record of Balaenoptera omurai Wada, Oishi, and Yamada 2003 from Myanmar Waters
Fig. 2. A: A whole skeleton of Balaenoptera musculus articulated for exhibit in the Natural History Museum in Yangon Zoological Garden (NHMY1). B: An almost complete skeleton of B. edeni preserved at the Department of Zoology in Mawlamyine University (MMU1). C: A broken skull of B. omurai stored at the Department of Zoology of Dawei University (DWU1). Some postcranial elements including several vertebrae and ribs are also preserved.
Fig. 4 in Balaenopterid Whale Specimens Preserved in Myanmar, and the First Record of Balaenoptera omurai Wada, Oishi, and Yamada 2003 from Myanmar Waters
Fig. 4. Skeletons of Balaenoptera edeni were collected 2 from Rakhine, 2 from Ayeyarwady, 1 from Mon, and 1 from Tanintharyi.
Fig. 1 in Balaenopterid Whale Specimens Preserved in Myanmar, and the First Record of Balaenoptera omurai Wada, Oishi, and Yamada 2003 from Myanmar Waters
Fig. 1. Six coastal administrative areas of Myanmar. Shaded area indicates the territory of Myanmar. Darker areas are six coastal administrative areas; ©: Rakhine State; ᶄ: Ayeyarwady Region; ᶅ: Yangon Division; ®: Bago Region; ᶇ: Mon State; ®: Tanintharyi Region.
Fig. 3 in Balaenopterid Whale Specimens Preserved in Myanmar, and the First Record of Balaenoptera omurai Wada, Oishi, and Yamada 2003 from Myanmar Waters
Fig. 3. Number of Balaenoptera musculus strandings in 6 administrative regions. One each specimen was secured in Rakhine, Mon, and Tanintharyi.
Fig. 13 - MSNM i28017. Slab preserving some crab trackways crossing a in Anomuran and brachyuran trackways and resting trace from the Pliocene of Valduggia (Piedmont, NW Italy): environmental, behavioural, and taphonomic implications
Fig. 13 - MSNM i28017. Slab preserving some crab trackways crossing a series of smooth ripplemarks track and two vertical subrounded burrows (?Skolithos) (× 0.4).
Linked collectors and determiners for: Occurrence and distribution of spores producing plants in Tanzania: Collection of Preserved Specimens at TAFORI herbarium.
Natural history specimen data linked to collectors and determiners held within, "Occurrence and distribution of spores producing plants in Tanzania: Collection of Preserved Specimens at TAFORI herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="http://bionomia.net/dataset/8f1f1bf0-99f8-4ee6-b02f-6c5b570203d6">https://bionomia.net/dataset/8f1f1bf0-99f8-4ee6-b02f-6c5b570203d6</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/8f1f1bf0-99f8-4ee6-b02f-6c5b570203d6">https://gbif.org/dataset/8f1f1bf0-99f8-4ee6-b02f-6c5b570203d6</a>. Formatted as a Frictionless Data package.
Wood preservatives utilizing low-value olive oil production by-products: Analysis
<p>The objective of this study was to develop and assess the efficacy of two experimental methodologies for the maleinisation of lampante oil to be used for wood protection.</p> <p>Two maleinisation techniques were used to chemically modify low-value lampante oil in an attempt to limit leaching, increase hydrophobicity, and impart some level of antimicrobial performance when impregnated in wood. Pine and beech wood specimens were treated with the modified oils and underwent leaching, accelerated weathering, and fungi tests. The following analysis assessed the efficacy of the modified oil treatments in improving these characteristics.</p>
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural. in Skeletal Adaptations of Ornitholestes, Struthiomimus, Tyrannosaurus
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural.
Process Models obtained from event logs with with different information-preserving abstractions
<p>This dataset contains results of the experiment to analyze information preservation and recovery by different event log abstractions in process mining described in: Sander J.J. Leemans, Dirk Fahland "Information-Preserving Abstractions of Event Data in Process Mining"<br> Knowledge and Information Systems, ISSN: 0219-1377 (Print) 0219-3116 (Online), accepted May 2019</p> <p>The experiment results were obtained with: https://doi.org/10.5281/zenodo.3243981</p>
Trace-Share Dataset for Evaluation of Statistical Characteristics Preservation
<p>The dataset contains all data used during the evaluation of statistical characteristics preservation. Archives are protected by password "<strong>trace-share</strong>" to avoid false detection by antivirus software.</p> <p>For more information, see the project repository at <strong><a href="https://github.com/Trace-Share">https://github.com/Trace-Share</a></strong>.</p> <p> </p> <p><strong>Selected Attack Traces</strong></p> <p>We selected 72 different traces of network attacks obtained from various internet databases. File names refer to common names of contained vulnerabilities, malware, or attack tools.</p> <p> </p> <p><strong>Background Traffic Data</strong></p> <p>Publicly available dataset <a href="https://www.unb.ca/cic/datasets/ids-2018.html">CSE-CIC-IDS-2018</a> was used as a background traffic data. The evaluation uses data from the day Thursday-01-03-2018 containing a sufficient proportion of regular traffic without any statistically significant attacks. Only traffic aimed at victim machines (range 172.31.69.0/24) is used to reduce less significant traffic.</p> <p> </p> <p><strong>Evaluation Results and Dataset Structure</strong></p> <ul> <li>Traces variants (<a href="https://zenodo.org/record/3553063/files/traces-normalized.zip">traces-normalized.zip</a>, <a href="https://zenodo.org/record/3553063/files/traces-adjusted.zip">traces-adjusted.zip</a>) <ul> <li>./traces-normalized/ — normalized PCAP files and details in YAML format;</li> <li>./traces-adjusted/ — configuration files for traces combination in YAML format.</li> </ul> </li> <li>Computed statistics (<a href="https://zenodo.org/record/3553063/files/statistics.zip">statistics.zip</a>) <ul> <li>./statistics-background/ — background traffic statistics computed by ID2T;</li> <li>./statistics-combination/ — combined traces statistics computed by ID2T for all adjust options (selected only combinations where ID2T provided all statistics files);</li> <li>./statistics-difference/ — computed mean and median differences of background and combined traffic traces.</li> </ul> </li> <li>Evaluation results <ul> <li><a href="https://zenodo.org/record/3553063/files/statistics-difference.ipynb">statistics-difference.ipynb</a> — file containing visualization of statistics differences.</li> </ul> </li> </ul>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.