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263 results for “terminology”

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zenodo48/100

Dataset - Terminology of e-Oral Health: Consensus Report of the IADR's e-Oral Health Network Terminology Task Force.

<p>README<br>====================<br>This repository contains the data and documentation for a research project. It includes the dataset,<br>which is provided in CSV format and the original PDF with the survey answers.</p> <p>Research Information<br>====================<br>Terminology of e-Oral Health: Consensus Report of the IADR&rsquo;s e-Oral Health Network Terminology<br>Task Force. Authors reported multiple definitions of e-oral health and related terms, and used several definitions<br>interchangeably, like mhealth, teledentistry, teleoral medicine and telehealth. The International<br>Association of Dental Research e-Oral Health Network (e-OHN) aimed to establish a consensus on<br>terminology related to digital technologies used in oral healthcare.</p> <p>This dataset contains data from a survey about digital oral health. The survey asked participants to provide their definition of various terms related to digital oral health, as well as their agreement with the provided definitions. The dataset also includes three figures that the participants were asked to review.</p> <p>The purpose of this dataset is to collect data on the public's understanding of digital oral health terms and to identify areas where there may be confusion or misinterpretation. The data from this dataset could be used to develop educational materials or to improve the way that digital oral health information is communicated to the public.</p> <p>Additional notes<br>====================<br>The data is not currently cleaned or preprocessed.</p> <p>Dataset<br>====================<br>The dataset file, named "dataset.csv," is in this repository. It contains the raw anonymized data<br>collected from the participants in a structured format. Each row represents a respondent, and the<br>columns correspond to different variables.</p> <p>Codebook<br>====================<br>The codebook file, named "codebook.pdf," is also included in this repository. It provides a<br>comprehensive description of the variables present in the dataset. The codebook outlines each<br>variable's meaning, type, and possible values, allowing users to understand and analyze the data<br>effectively.</p> <p>Metadata<br>====================<br>No metadata is provided</p> <p>Files<br>====================<br>01_readme.txt this readme file<br>02_codebook.pdf The codebook of the dataset<br>03_dataset.csv The dataset in csv format<br>04_e-OHN Delphi (2023-02-03).pdf The output from the survey</p> <p>Usage<br>====================<br>To work with the dataset, you can download the "dataset.csv" file and import it into your preferred<br>software or programming language for analysis. The codebook provides valuable information about<br>the variables, allowing you to understand the data structure and make informed decisions during your<br>analysis.<br>Please note that while every effort has been made to ensure the accuracy and quality of the data, it is<br>important to review the codebook and understand the context of the research before concluding the<br>dataset.</p> <p>License<br>====================<br>The data and documentation in this repository are provided under the CC BY-SA.<br>This license enables reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use. If you remix, adapt, or build upon the material, you must license the modified material under identical terms. CC BY-SA includes the following elements:</p> <p>&nbsp;BY: credit must be given to the creator.<br>&nbsp;SA: Adaptations must be shared under the same terms.<br>&nbsp;<br>Please refer to the license file for further details on how the data can be used and shared.</p> <p>Contact Information<br>====================<br>For any questions, clarifications, or inquiries related to the dataset or research project, please contact<br>Assoc Prof Dr Sergio Uribe, sergio.uribe@rsu.lv</p>

opencc-by-4.0Jan 2024View details →
zenodo48/100

Pottery Terminology Intrinsic factors

<p>This German-English terminology is a collection of terms used to describe intrinsic factors of pottery within the field of archaeology. The division into intrinsic and extrinsic factors was proposed by Rice 2015 and adopted in order to structure the terms and aid in the identification of word pairs. Some terms were reconciled to wikidata.</p> <p>Intrinsic factors encompass material, production/technology, shape/form, surface treatment, taphonomy, size/measurements. Extrinsic factors include dating/chronology, origin/provenance/provenience, classification method, wares, evaluation methods.</p> <p>Greek vessel shapes were included here for the sake of completeness, however, the coverage by <a href="http://kerameikos.org">kerameikos.org</a> is more comprehensive.</p>

opencc-by-4.0Sep 2019View details →
zenodo44/100

A Comprehensive Dataset of Kurdish Body Part Terminology with Proto-Indo-European Roots

<p><strong>Overview</strong></p> <p>This dataset delves into the rich linguistic heritage of Kurdish body part terminology, tracing its roots back to the Proto-Indo-European (PIE) language. It comprises a comprehensive collection of 50 Kurdish body part terms, each meticulously analyzed through 24 linguistic features, uncovering their historical development and connections to other Indo-European languages.</p> <p><br><strong>Key Features</strong></p> <p>- Comprehensive Analysis: The dataset provides a detailed analysis of 1200 fundamental linguistic features, with each feature branching out to explore other related features. Additionally, it delves into the internal structure and phonetic evolution of Kurdish terminology throughout history.<br>- Categorization: The dataset categorizes the Kurdish body part terms into four distinct groups: external anatomical parts, upper torso and limbs, lower torso and limbs, and internal anatomical parts. This comprehensive categorization facilitates a nuanced exploration of the linguistic evolution and interconnections within the domain of body part terminology.<br>- Etymological Information: For each Kurdish term, the dataset provides in-depth etymological information, including its PIE root, Indo-Iranian and Indo-European cognates, and references to relevant scholarly sources.<br>- Linguistic Features: The dataset includes 24 linguistic features for each term, allowing for a comprehensive comparative analysis. These features include gender, morphological features, possessive form, etymological summary, syllabification, stress pattern, semantic field, example sentence, cultural significance, case, evolution of meaning, semantic shift, sound changes, phonetic changes, and Kurdish idiomatic proverbs.</p> <p><strong>Contact</strong><br>For any questions, please contact Marwan Hamay at marwan.hamay@rwth-aachen.de.</p>

opencc-by-4.0Oct 2024View details →
zenodo44/100

CLDF dataset accompanying Zariquiey et al.'s "Evolution of Body-Part Terminology in Pano" from 2022

<p>Cite the source of the dataset as:</p> <blockquote> <p>Zariquiey, Roberte; Vera, Javier; Greenhill, Simon; Valenzuela, Pilar; Gray, Russell; List, Johann-Mattis (2022): Untangling the evolution of body-part terminology in Pano: conservative vs. innovative traits in body-part lexicalization. Royal Society Interface Focus. DOI: https://doi.org/10.1098/rsfs.2022.0053</p> </blockquote>

opencc-by-4.0Nov 2022View details →
zenodo44/100

Data and Analyses for Defining Filler Particles: A Phonetic Account of the Terminology, Form, and Grammatical Classification of Filled Pauses.

<p>Aggregated data and analyses for the article Belz, Malte (2023): Defining Filler Particles: A Phonetic Account of the Terminology,<br> Form, and Grammatical Classification of &quot;Filled Pauses&quot;. Languages. <a href="https://www.mdpi.com/journal/languages/special_issues/Pauses_in_Speech">https://www.mdpi.com/journal/languages/special_issues/Pauses_in_Speech</a></p>

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

INDIGO Graffiti Terminology Database

<p>In the existing body of graffiti literature&mdash;both popular and scholarly&mdash;many attempts have been made to describe or structure graffiti-related terminology.&nbsp;The&nbsp;<strong>INDIGO Graffiti Terminology Database</strong> collects&nbsp;graffiti-related terms and their definitions&nbsp;as they appear in the glossaries, dictionaries and various controlled&nbsp;vocabularies consulted within&nbsp;project INDIGO.</p> <p>This dataset currently holds <strong>2134 definitions</strong>&nbsp;(1728 in English, 303 in German, 61 in French and 42 in Italian) from <strong>48 sources</strong>, made available via:</p> <ul> <li>a text-based *.txt file where all the values are tab-separated;</li> <li>a Microsoft Office Excel *.xlsx&nbsp;spreadsheet file, which also provides extra information about the sources consulted.</li> </ul> <p>Although the amalgamated terminology sources are, in one way or another, suboptimal to organise&nbsp;knowledge on graffiti terms, this dataset&nbsp;has helped shape <a href="http://vocabs.acdh.oeaw.ac.at/indigo/Thesaurus">INDIGO&#39;s Graffiti Thesaurus</a>. In addition, it can be a useful resource for anyone who wants to compare how different authors define the same term. Future expanded versions of this dataset will also be incorporated into an <a href="https://www.sqlite.org/index.html">SQLite database</a>&nbsp;to enable easier interaction with&mdash;and control of&mdash;all the data.&nbsp;</p> <p>More information about the INDIGO Graffiti Thesaurus and the different ways to organise&nbsp;terms can be found in the paper:&nbsp;Schlegel, J., Carloni, M., Wogrin, S., Graff, A.M., Verhoeven, G.J., 2023. <em>Making a mark&mdash;Towards a graffiti thesaurus</em>, in: document | archive | disseminate graffiti-scapes. Proceedings of the goINDIGO2022 international graffiti symposium, Vienna, Austria. 11-13 May 2022. Urban Creativity, Lisbon, pp. 203&ndash;219. DOI:&nbsp;<a href="https://journals.ap2.pt/index.php/indigo/article/view/710">10.48619/indigo.v0i0.710</a>.</p>

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

Science Communication Terminology

<p>You may have already encountered the terms &ldquo;public engagement&rdquo;, &ldquo;knowledge transfer&rdquo; or &ldquo;outreach&rdquo;. Watch this video with Dr. Luiza Bengtsson to get a better understanding of what these terms mean and what the difference between science communication and public engagement is.</p>

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

Fig. 2. Shell terminology. A. D. regularis Fulton, 1901. B. D in The genus Diplommatina Benson, 1849 (Gastropoda: Caenogastropoda: Diplommatinidae) in Nepal, with the description of seven new species

Fig. 2. Shell terminology. A. D. regularis Fulton, 1901. B. D. folliculus (L. Pfeiffer, 1846). C. General outline of the lower part of a shell from Diplommatina species. Abbreviations: Prt = Parietalis (Prt1 = inner parietalis, Prt2 = outer parietalis); Pt = Palatalis; Hpt = Horizontal palatalis (Hpt1 = lower, Hpt2 = upper in case of two); Vpt = Vertical palatalis (Vpt1 = left side, Vpt2 = right side in case of two).

opencc-by-3.0Jul 2017View details →
zenodo40/100

Fig. 8. Gonopod telopodite terminology. — A in A mountain of millipedes I: An endemic species-group of the genus Chaleponcus Attems, 1914, from the Udzungwa Mountains, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)

Fig. 8. Gonopod telopodite terminology. — A. Left telopodite of Chaleponcus termini sp. nov., posterior view. White oval = basomere, blue oval = torsotope, red oval = telomere, yellow = solenomere (slm), green = proximal spine of solenomere (ps), pxl = proximal lobe of telomere, st = main stem of telomere, st' = shallow lobe of st. B–C. Torsotope (left gonopod) with torsotope process (tp). B. C. vilici sp. nov., mesal-anterior view. C. C. netus sp. nov., posterior view. D. Solenomere (C. dabagaensis) to show longitudinal fluting. E. Tip of solenomere (C. netus sp. nov.) to show spinulation. Scales: 0.1 mm (A–D), 0.01 mm (E).

opencc-by-3.0Oct 2014View details →
zenodo40/100

Fig. 14. Scaphite terminology. A in Scaphites Of The ''Nodosus Group'' From The Upper Cretaceous (Campanian) Of The Western Interior Of North America

Fig. 14. Scaphite terminology. A. Macroconch, right lateral view. The shell is oriented in the probable floating position when the body was withdrawn into the body chamber. The umbilical seam of the shaft in

opencc-by-4.0Sep 2010View details →
zenodo40/100

Fig. 1. Seta shape terminologies. 1. Fine. 2–3. Stout and truncated. 4–5. Plank-like. 6–7. Acicular. 8. Narrowly elliptic. 9. Elliptic. 10. Linear. 11 in Further additions to the knowledge of Strumigenys (Formicidae: Myrmicinae) within South East Asia, with the descriptions of 20 new species

Fig. 1. Seta shape terminologies. 1. Fine. 2–3. Stout and truncated. 4–5. Plank-like. 6–7. Acicular. 8. Narrowly elliptic. 9. Elliptic. 10. Linear. 11. Short linear or short subspatulate. 12–13. Subspatulate. 14–15. Spatulate. 16–17. Oblanceolate. 18–19. Small obovate. 20. Large obovate. 21. Suborbicular / orbicular. 22. Orbicular. 23. Remiform. 24. Remiform / narrowly claviform (red arrow). 25–26. Claviform. 27. Shoehorn-shaped. 28. Spoon-shaped.

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

OMOP2OBO: Semantic Integration of Standardized Clinical Terminologies to Power Translational Digital Medicine Across Health Systems (Recorded Introduction)

<p>This entry contains the&nbsp;recorded introduction that was presented at the 2020 Observational Health Data Science Initiative Symposium (<a href="https://www.ohdsi.org/events/2020-ohdsi-symposium/">https://www.ohdsi.org/events/2020-ohdsi-symposium/</a>).</p>

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

Fig. 1. Megaxyela Ashmead, 1898, morphological terminology. A. M in Big and beautiful: the Megaxyela species (Hymenoptera, Xyelidae) of East Asia and North America

Fig. 1. Megaxyela Ashmead, 1898, morphological terminology. A. M. major (Cresson, 1880) (♀, paralectotype, DEI-GISHym 30823, ANSP), wings. B. M. parki Shinohara, 1992 (♀, 18509, NSMT), section of fore wing. C. M. euchroma Blank, Shinohara &amp; Wei sp. nov. (♂, paratype, 22513, NSMT), penis valve. D. M. parki (♂, 710, NSMT), antenna. E. M. gigantea Mocsáry, 1909 (♀, holotype of M. mikado Sato, 1930, 22350, NSMT), ovipositor and ovipositor sheath, with indication of measurement of length of valvifer 2 (blue), valvula 3 (white), and width of valvula 3 (yellow). F. M. euchroma sp. nov. (♀, paratype, 22558, CSCS), section of ovipositor, white arrow heads indicating teeth of ctenidia on valvulae 1 and 2.

opencc-by-4.0Sep 2017View details →
zenodo40/100

Fig. 2. Ungulate left proximal tarsal terminology. A in Postcranial remains of basal typotherian notoungulates from the Eocene of northwestern Argentina

Fig. 2. Ungulate left proximal tarsal terminology. A. Calcaneum; orientation used for description (A1), dorsal (A2), plantar (A3), lateral (A4), and medial (A5) views. B. Astragalus; orientation used for description (B1), dorsal (B2), plantar (B3), medial (B4), and lateral (B5) views. Abbreviations: acf, astragalocalcaneal facet; aflig, attachment for the fibuloastragalar ligament; ampt; astragalar medial plantar tuberosity; asth, astragalar head; astn, astragalar neck; atlig, attachment for the tibioastragalar ligament; be, "beak" (Cifelli 1983, 1993); cub, cuboidal facet; dfor, dorsal astragalar foramen; ect, ectal facet; epro, ectal protuberance; fib, fibular facet; gfhl, groove for the tendon of the flexor hallucis longus muscle (groove for deep digital flexor tendon in Cifelli 1983; groove for the tendon of muscle flexor fibularis in Szalay 1985); ifor, inferior astragalar foramen; ints, interarticular sulcus; lcre, lateral crest; mcre, medial crest; mfdb; muscle flexor digitorum brevis (attachment of flexor digitorum superficialis muscle in Cifelli 1983); mmt, facet for the medial malleolus of the tibia; nav, navicular facet; odc, oblique dorsal crest (nuchal crest or tibial stop); pfo, peroneal fossa; plt, plantar tubercle; psh, peroneal shelf; ptub, peroneal tubercle; qpm, attachment of the quadratus plantae muscle (Cifelli 1983); st, sustentaculum; sus, sustentacular facet; tg, tendinous groove (for the attachment of calcaneocuboid ligaments; Muizon et al. 1998); tr, tibial trochlea; trf, fossa trochlear; tub, tuber calcis; tubn, tuber neck.

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

Figure 11 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 11. (a) Ventral shields of Bispira porifera (stained with methylene blue) and Branchiomma bairdi highlighted red. (b) Opercula of (left to right, respectively) Hydroides heteroceros, H. longispinosus and H. sanctaecrucis; red arrows indicate verticil; outlined arrows indicate verticil spines. All scales in mm.

opencc-by-4.0Dec 2014View details →
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Figure 8 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 8. (a) Radiolar crowns in (left to right, respectively) Branchiomma bairdi, Spirobranchus kraussii and Euchone variabilis. (b) Radioles of Bispira serrata and Bispira manicata; arrows indicate radiolar eyes. (c) Arrow indicates radiolar flange on Bispira serrata. (d) Radiolar crown of Bispira manicata, consisting of 2 radiolar lobes (arrows). (e) Radiole filaments of Sabellastarte australiensis and Bispira porifera. (f) Single radius highlighted red in Hydroides brachyacanthus and Serpula jukesii. (g) SEM image of rasp-shaped posterior abdominal uncini in Serpula columbiana. (h) Recurved spines in posterior notopodia of Boccardiella bihamata (on left, stained with methyl green) and Polydora uncinata (on right). (i) SEM image of saw-shaped thoracic uncini on Serpula columbiana. All scales in mm.

opencc-by-4.0Dec 2014View details →
zenodo40/100

Figure 9 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 9. (a) Single segments of Branchiomma bairdi (left 2 images) and Polydora haswelli (stained with methyl green) highlighted red. (b) Arrows indicate spinules on opercula of (left to right, respectively) Hydroides elegans, H. heteroceros and H. tambalagamensis. (c) Spirobranchus- type collar chaetae from Spirobranchus tetraceros (stained with methyl green). (d) Radioles of Branchiomma galei and Branchiomma bairdi; arrows indicate stylodes (palmate in B. galei and simple in B. bairdi). (e) Arrow indicates thoracic membrane of Spirobranchus cariniferus, stained with methylene blue. (f) Thorax regions (highlighted red) of (left to right, respectively) Bispira manicata, Spirobranchus cariniferus (stained with methylene blue) and Branchiomma bairdi. (g) Arrow indicates tonguelet of Spirobranchus cariniferus (stained with methylene blue), partially covered by collar. All scales in mm.

opencc-by-4.0Dec 2014View details →
zenodo40/100

Figure 10 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 10. (a) Tori of Branchiomma bairdi and Sabella spallanzanii highlighted red. (b) Triangular depression in Spirobranchus tetraceros (stained with methylene blue) highlighted red. (c) SEM image of true trumpet-shaped chaetae of Spirobranchus giganteus. (d) Tubes of (left to right, respectively) Spirobranchus taeniatus, Bispira serrata and Pseudopolydora paucibranchiata: calcareous in Serpulidae (S. taeniatus) and muddy in Sabellidae (B. serrata) and Spionidae (P. paucibranchiata). (e) Uncini of (left to right, respectively) Branchiomma bairdi, Spirobranchus cariniferus (stained with methylene blue), and close-up in Bispira manicata (stained with methyl green). (f) Arrow indicates ventral lip in live specimen of Branchiomma arctica (photo: © Alexander Semenov). (g) Collar region of Bispira serrata and Sabella spallanzanii; arrows indicate ventral sacs. All scales in mm.

opencc-by-4.0Dec 2014View details →
zenodo40/100

Figure 7 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 7. (a) Operculum of Spirobranchus minutus (above) and Spirobranchus kraussii (below); arrows indicate opercular endplate. (b) Paleate collar chaetae of Laonome triangularis. (c) Arrows indicate palps of Polydora haswelli (stained with methyl green) and Boccardia proboscidea (live specimen). (d) Parapodia highlighted red in (left to right, respectively) Sabellastarte australiensis, Boccardiella bihamata (stained with methyl green) and Spirobranchus cariniferus (stained with methylene blue). (e) Arrows indicate peduncle of Hydroides norvegicus (stained with methylene blue) and Spirobranchus cariniferus. (f) Tubes of Ficopomatus enigmaticus and Ficopomatus uschakovi; arrows indicate peristomes. (g) Collar region/base of radiolar crown in Myxicola infundibulum stained with methylene blue; peristomium highlighted red. (h) Radioles of Bispira serrata and Bispira porifera; arrows indicate individual pinnules. (i) Anterior end of Hydroides norvegicus (stained with methylene blue); arrow indicates pseudoperculum. (j) Arrows indicate pygidium of Bispira serrata and Boccardia polybranchia (stained with methyl green). All scales in mm.

opencc-by-4.0Dec 2014View details →
zenodo40/100

Figure 5 in A graphically illustrated glossary of polychaete terminology: invasive species of Sabellidae, Serpulidae and Spionidae

Figure 5. (a) Arrows indicate hood on collar chaetae of Laonome triangularis (left 2 images), Laonome calida and thoracic chaetae of Crucigera websteri (SEM image). (b) Arrow indicates hood in neuropodial hooks of Polydora uncinata. (c) Hooks in posterior neuropodia of Polydora uncinata. (d) Radioles proximally connected by inter-radiolar membranes (arrows) in Sabella spallanzanii and Spirobranchus cariniferus (stained with methylene blue). (e) Inter-ramal eyes (arrows) located between notopodia and neuropodia of Branchiomma galei and Branchiomma bairdi. (f) Calcareous tubes of Spirobranchus cariniferus (left) and Spirobranchus kraussii (right); arrows indicate keels on tube. (g) Falcate spines in notopodia of chaetiger 5 of Polydora uncinata; arrow indicates lateral flange. (h) Lobate condition in collars of (left to right, respectively) Spirobranchus cariniferus (stained with methylene blue), Sabella spallanzanii and pygidium of Polydora ciliata (stained with methyl green). Lobes highlighted red. All scales in mm.

opencc-by-4.0Dec 2014View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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Last verified 2026-04-30Open record

International Brain Laboratory public data

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OpenNeuro

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Last verified 2026-04-29Open record