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396 results for “Archaeology”
FIGURE 3. A in DigApp and TaphonomApp: Two new open-access palaeontological and archaeological mobile apps
FIGURE 3. A, TaphonomApp "Taphonomical Analysis" screen. B, TaphonomApp "New Specimen" scrollable screen.
Fig. 9 in Mollusks from the archaeological site Chernyatino-2 in Primorye
Fig. 9. The largest sample of Middendorffinaia sujfunensis shells found in the excavation area 3 (pit dwelling 3, cesspit N 12 and N 31): the left (A) and right (B) valves.
Рис. 2. Вид на долину р. РаЗдольнаЯ с востока (А) и юга (В): А – терраса с поселением ЧернЯтино-2 на фото слева; В – терраса с поселением ЧернЯтино-2 на переднем плане. in Mollusks from the archaeological site Chernyatino-2 in Primorye
Рис. 2. Вид на долину р. РаЗдольнаЯ с востока (А) и юга (В): А – терраса с поселением ЧернЯтино-2 на фото слева; В – терраса с поселением ЧернЯтино-2 на переднем плане.
FIGURE 4 in An osteometric approach to reconstruct the length and weight of Lutjanus argentiventris (Perciformes: Lujtanidae) for archaeological and ecological purposes
FIGURE 4 | Examples of Lutjanus argentiventris graphs modelling the regression formulae. A. Dentary (Dn1); B. Maxilla (M1); C. Premaxilla (Pmx1); D. Hyomandibula (Hm2); E. Preopercle (Pop1) and F. Quadrate (Qd3).
FIGURE 3 in An osteometric approach to reconstruct the length and weight of Lutjanus argentiventris (Perciformes: Lujtanidae) for archaeological and ecological purposes
FIGURE 3 | Total length (TL) to weight relationship of the modern sample of Lutjanus argentiventris.
FIGURE 1 in An osteometric approach to reconstruct the length and weight of Lutjanus argentiventris (Perciformes: Lujtanidae) for archaeological and ecological purposes
FIGURE 1 | Lutjanus argentiventris geographical distribution (Map adapted from Robertson, Allen, 2015; Image represents a 645 mm TL individual).
Archaeological data from the 1955 excavation in Haristoy-Oxocelhaya cave by Georges Laplace, José Miguel de Barandiáran, and Pierre Boucher
<p>This table includes data from Georges Laplace's field booknotes about the excavation he carried out in 1955-1956 with José Miguel de Barandiáran and Pierre Boucher at the Haristoy-Oxocelhaya cave (Isturits and Saint-Martin-d'Arberoue, France).</p> <h2>Variables</h2> <ul> <li><em>id</em>: unique identifier attributed by the transcriber</li> <li><em>square_y</em>: label of the square on the Y axis</li> <li><em>square_x</em>: label of the square on the X axis</li> <li><em>layer</em>: layer as given in the notebook</li> <li>layer.<em>deduced</em>: layer deduced when not given in the notebook (assuming that the lines bellow a line with a layer information are about the same layer)</li> <li><em>n</em>: object's identifying number attributed by Laplace (objects are numbered by grid square)</li> <li><em>zmin</em>: minimal depth</li> <li><em>zmax</em>: maximal depth (if applicable)</li> <li><em>xmin</em>: minimal X coordinate in the square</li> <li><em>xmax</em>: maximal X coordinate in the square (if applicable)</li> <li><em>ymin</em>: minimal Y coordinate in the square</li> <li><em>ymax</em>: maximal Y coordinate in the square (if applicable)</li> <li><em>object_type</em>: remain category</li> <li><em>object_lithic-type</em>: type of lithic implement</li> <li><em>object_lithic-material</em>: lithic raw material</li> <li><em>object_anatomy</em>: anatomical part, for faunal remains</li> <li><em>object_fauna-order</em>: taxonomic order, for faunal remains</li> <li><em>object_fauna-genus</em>: taxonomic genus, for faunal remains</li> <li><em>object_decription</em>: the description given in the excavation notebook</li> <li><em>bloc_dimensions</em>: dimensions for stone blocks</li> <li><em>note_laplace</em>: note by Laplace as written in the notebook</li> <li><em>note</em>: note by the transcriber</li> </ul> <h2>About stone blocks dimension</h2> <p>Stone blocks are written as “B10.20.20” or as “B10”. This information was recorded in the “bloc_dimensions” columns and the “object_type” column was filled with a “bloc” or “bloc stalagmité” value.</p> <ul> <li>About the first form, the three numerical values are interpreted as the dimensions of the block in centimeters and are noted with separating dots in the “bloc_dimensions” column. E.g. “B10.20.20” is recorded as “10.20.20”.</li> <li>The second form is interpreted as referring to cubic blocs, only one value is useful. This value was copied in the “bloc_dimensions” column. E.g. “B10” is recorded “ 10”. The two other lengths can be deduced when processing the dataset.</li> </ul> <h2>Line multiplication</h2> <p>Generally speaking, one line in the notebook corresponds to one object. This is sometimes not the case, when two objects are noted with a “+” sign (e.g. “B10 + fo”) or when a multiplier is applied to the description of an object (e.g. “7 B10”, for seven blocks of size 10). <br>In this case, a line in the table was created for each object and, if the line contained an object number, this number was copied in each new line in the “n” column.</p> <p> </p> <p> </p>
Рис. 1. Карта РеспубΛики Саха (Якутия) с обозначением места распоΛожения археоΛогических памятников Àжампа, Кузнец I, II Àабан-Юрях, Буор-Хая I, II, III. Fig. 1. Map of the Republic of Sakha (Yakutia) indicating the location of the archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III in New data on the Holocene vertebrate fauna of the Middle Lena and Aldan Rivers basins (Yakutia) based on the materials from archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III
Рис. 1. Карта РеспубΛики Саха (Якутия) с обозначением места распоΛожения археоΛогических памятников Àжампа, Кузнец I, II Àабан-Юрях, Буор-Хая I, II, III. Fig. 1. Map of the Republic of Sakha (Yakutia) indicating the location of the archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III
Рис. 2. НижнечеΛюстные кости из шурфа Ш-1, кв. Б-3: А — собоΛь (Martes zibellina); Б — заяц-беΛяк (Lepus timidus); В — пищухи (Ochotona sp.) Fig. 2. Mandibular bones from D-1, sq. B-3: A — sable (Martes zibellina); Б — white hare (Lepus timidus); В — pikas (Ochotona sp.) in New data on the Holocene vertebrate fauna of the Middle Lena and Aldan Rivers basins (Yakutia) based on the materials from archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III
Рис. 2. НижнечеΛюстные кости из шурфа Ш-1, кв. Б-3: А — собоΛь (Martes zibellina); Б — заяц-беΛяк (Lepus timidus); В — пищухи (Ochotona sp.) Fig. 2. Mandibular bones from D-1, sq. B-3: A — sable (Martes zibellina); Б — white hare (Lepus timidus); В — pikas (Ochotona sp.)
BRAIN Journal-Participative Teaching with Mobile Devices and Social Networks for K-12 Children-Figure 3. Augmented Reality with archaeological stratigraphy (a prehistoric house and a Roman villa reconstructed in 3D)
<p>The third stage was represented by the 3D virtual reconstruction process of the historical contexts, in our case a prehistoric village and a complete Roman villa rustica, with the help of students from the Design Department, NUA, coordinated by Professor Arch. Andreea Hasnaş. The AR application was created and tested on two commercial AR platforms, Layar and Junaio, and recently moved on the Aurasma platform (https://www.aurasma.com/). The POIs were augmented with the 3D virtual reconstructions, and also with 2D images and videos representing 3D virtual tours and technological processes (Figures 3, 4, 5). The AR application was connected to teachers’ emails and to Twitter, Facebook and Google+ project’s pages. </p>
MALDI-TOF spectra of archaeological (Oncorhynchus) and modern (Salmo salar) bone collagen
<p>SPECIES INFORMATION<br> csv containing information about the samples that links the information about the species and files</p> <p><br> MALDI TOF-MS</p> <p>MALDI Spectra from a Bruker Ultraflex II range m/z 800-3500<br> Three technical replicates were averaged in mMass<br> Each of these spectra a tab delimited .txt file are uploaded</p> <p><br> SEQUENCE DATA<br> An aligned FASTA file containing the bovine reference collagen sequence and both versions of S. salar and O. mykiss sequences. The sequences are concatenated with COL1A1, COL1A2, and COL1A3 for the two fish and COL1A1, COL1A2, COL1A1 for bovine.</p> <p>Three annotated gff files containing the sequence from version 1 of S. salar annotated with the locations of the published mammal markers and the biomarkers presented in this paper. Each gff file corresponds to one of the three collagen proteins COL1A1, COL1A2, and COL1A3.</p>
Archaeology Vocabulary DEU-ENG
<p>This collection of German-English archaeology vocabulary was created in the course of translating archaeological, art historical, historical academic scholarship from German to English for a variety of German and Austrian archaeological institutes and museums. All words underwent extensive research to make sure the words are correct and in some cases references are also included. Not all words have a direct translations.</p> <p>Subjects covered include field archaeology, architecture, pottery, methods, fortification, and many more.</p> <p>The collections archaeology_terminology and term_list_archaeology were originally created in SDL Multiterm 2015 and 2017 and then combined to create archaeology_terminology_complete which was also cleaned in OpenRefine 3.1</p> <p>File formats uploaded here include xlsx and MultiTerm Termbase.</p>
Modeling An Archaeological Site - Göbekli Tepe v.1.0
<p>This is Version 1.0 of an ontoterminology (i.e. 'a terminology whose conceptual system is a formal ontology' Roche 2007 ) that defines and represents the archaeological finds of T-Pillars in Göbekli Tepe, SE Turkey (-10000 to -8300 BCE) , in a machine-tractable way.</p> <p>This dataset was created by Antonia Lourentzaki (Department of Archaeology, University of Crete), under the supervision of Dr. Maria Papadopoulou (Department of Philology, University of Crete) and Prof. Christophe Roche (TALOS ERA Chair Professor, University of Crete).</p> <p>We gratefully acknowledge the generous funding of the European Commission under the ERA Chair Project TALOS AI for SSH (Grant agreement ID: 101087269).</p> <p>Contact: tonialouren@gmail.com</p>
Figure 28. - Dorsal scutes. A in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 28. - Dorsal scutes. A: Complete dorsal scute row and dorsal fin fulcrum from a modern A. sturio (NHM 2015.2.18.1, 160.5 cm); B: Archaeological dorsal scutes; C: Possible measurements on the dorsal scutes for size reconstruction: M1: B-D; M2: F = A-C; M3: A = F-E; M4: B-E; M5: B-C; M6: B-F = A; M7: D-E; M8: D-C; M9: D-F = A. Scale bars: A = 10 cm; B = 1 cm.
Figure 31. - Alveolar ornamentation type. A in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 31. - Alveolar ornamentation type. A: Alveolar pattern with tubercular characteristics at the edge in A. oxyrinchus (NRM 60821, 4th dorsal scute, 99 cm TL); B: Alveolar pattern in a large A. oxyrinchus (MHNNZ 19558, 6th left lateral scute, 276 cm TL); C: Lacrimale-suborbitale from Trigla lucerna (RBINS 23663; 47.5 cm SL). Note the alveolar-like ornamentation. Scale bars = 1 cm.
Figure 20 in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 20. - Isolated elements of the branchial arches or the hyoid (with the exclusion of the hyomandibula). A: Modern A. oxyrinchus (RBINS 24792); B: Archaeological remains of the hyoid or branchial arches. Scale bars = 1 cm.
Figure 27. - Lateral scutes. A in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 27. - Lateral scutes. A: Complete right lateral row from a modern A. sturio (NHM 2015.2.18.1, 160.5 cm TL); B: Archaeological right lateral scutes from the back of the row; C, D: Right and left lateral scute from the front or middle of the row; E: Right lateral scute with the possible measurements for size reconstruction: M1: B-D; M2: F-C; M3: A-E; M4: B-E; M5: B-C; M6: B-F (caudal edge of the dorsal part); M7: D-E; M8: D-C; M9: D-F (caudal edge of the ventral part). Arrow 1: caudal point; arrow 2: frontal edge of the ridge; Arrow 3: dorsally pointed thickened fold. Scale bars: A = 10 cm; B, C, D = 1 cm.
Figure 19. - Hyomandibula. A in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 19. - Hyomandibula. A: Hyomandibula from A. oxyrinchus (RBINS 24792), lateral view and perpendicular view of the proximal end; B: Archaeological hyomandibula, lateral view and perpendicular view of the distal and proximal end (latter two not to scale). Note the shape differences between the distal, triangular end and the proximal, oval, squatted ends of the bone. Scale bars = 1 cm.
Figure 30 in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 30. - Scutes behind the dorsal fin of A. oxyrinchus (NRM 35438; 154 cm TL). Scale bar = 1 cm.
Figure 15. - Dermopalatine. A in Guide for the identification of archaeological sea sturgeon (Acipenser sturio and A. oxyrinchus) remains
Figure 15. - Dermopalatine. A: Dorsal and ventral view of left dermopalatine from A. oxyrinchus (RBINS 24792); B: Dorsal and ventral view of an archaeological right dermopalatine from A. oxyrinchus; C: Dorsal and ventral view of an archaeological right dermopalatine from A. sturio; D: Measurements on the dermopalatine as defined by Desse-Berset (2011b). Arrows: fossa. Scale bars = 1 cm.
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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.
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.