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85 results for “Archaeological site”
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm.
Рис. 3. План поселениЯ Константиновка-1 (составлен А.Л. Ивлиевым). Fig. 3. A scheme of the Konstantinovka-1 archaeological site (a courtesy by A.L. Ivliev). in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 3. План поселениЯ Константиновка-1 (составлен А.Л. Ивлиевым). Fig. 3. A scheme of the Konstantinovka-1 archaeological site (a courtesy by A.L. Ivliev).
Рис. 1. Схема расположениЯ поселениЯ Константиновка-1 на карте ПриморьЯ. Fig. 1. A location map of the Konstantinovka-1 archaeological site in Primorye. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 1. Схема расположениЯ поселениЯ Константиновка-1 на карте ПриморьЯ. Fig. 1. A location map of the Konstantinovka-1 archaeological site in Primorye.
Рис. 4. Пресноводные двустворчатые моллюски иЗ раскопа 2 поселениЯ ЧернЯтино-2: А, B – фрагменты жемчужниц Dahurinaia dahurica, C–G – створки перловиц Middendorffinaia mongolica. Масштабные линейки 1 см. in Additional data on mollusks of the archaeological site Chernyatino-2 (Primorye)
Рис. 4. Пресноводные двустворчатые моллюски иЗ раскопа 2 поселениЯ ЧернЯтино-2: А, B – фрагменты жемчужниц Dahurinaia dahurica, C–G – створки перловиц Middendorffinaia mongolica. Масштабные линейки 1 см.
Рис. 3. Фрагменты раковин брюхоногих Cipangopaludina иЗ раскопа 2 поселениЯ ЧернЯтино-2. МасштабнаЯ линейка 1 см. in Additional data on mollusks of the archaeological site Chernyatino-2 (Primorye)
Рис. 3. Фрагменты раковин брюхоногих Cipangopaludina иЗ раскопа 2 поселениЯ ЧернЯтино-2. МасштабнаЯ линейка 1 см.
Рис. 2. Брюхоногие моллюски иЗ раскопа 2 поселениЯ ЧернЯтино-2: A–C – Discus perspectivus, D, E – Juga tegulata, F – Juga amurensis. Масштабные линейки 1 мм (A–C) и 5 мм (D–F). in Additional data on mollusks of the archaeological site Chernyatino-2 (Primorye)
Рис. 2. Брюхоногие моллюски иЗ раскопа 2 поселениЯ ЧернЯтино-2: A–C – Discus perspectivus, D, E – Juga tegulata, F – Juga amurensis. Масштабные линейки 1 мм (A–C) и 5 мм (D–F).
Fig. 1 in Additional data on mollusks of the archaeological site Chernyatino-2 (Primorye)
Fig. 1. Plan-scheme of the ancient settlement Chernyatino-2: A – plan of the north-eastern part of the settlement; В – situational plan of the excavations.
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.
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.)
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>
Fig. 4 in Identification Of Pomadasys Species (Pisces, Haemulidae) From An Archaeological Midden Site In Nankuanli East (Taiwan), Based On Otolith Morphology
Fig. 4. Relationships between fish total length and fish weight (a), otolith length and fish total length (b), and otolith length and fish weight (c) of Pomadasys argenteus.
Fig. 3 in Identification Of Pomadasys Species (Pisces, Haemulidae) From An Archaeological Midden Site In Nankuanli East (Taiwan), Based On Otolith Morphology
Fig. 3. Medial surfaces of the right sagittae of Pomadasys argenteus, NMMBOL00223 (a); P. kaakan, NMMBOL01952 (b); P. maculatus, NMMBOL00719 (c); P. quadrilineatus, NMMBOL00799 (d). Scale bar = 1 mm.
Fig. 2 in Identification Of Pomadasys Species (Pisces, Haemulidae) From An Archaeological Midden Site In Nankuanli East (Taiwan), Based On Otolith Morphology
Fig. 2. Medial view (a) and dorsal view (b) of the otolith illustrating the features described and their measurements. The grey area is the sulcus. OH, otolith height; OL, otolith length; OT, otolith thickness; OsH, ostium height; OsL, ostium length.
Fig. 1 in Identification Of Pomadasys Species (Pisces, Haemulidae) From An Archaeological Midden Site In Nankuanli East (Taiwan), Based On Otolith Morphology
Fig. 1. Location of the sampling sites for the modern (a) and archaeological (b) Pomadasys otoliths. NKLE (Nankuanli East) archaeological site.
Archaeological sites in the area of the Iron Age city of Edeta -Valencia, Spain-
<p>Archaeological sites in the area of the Iron Age city of Edeta.</p>
Database of northeastern African archaeological and heritage sites
<p>This dataset contains archaeological and heritage sites of the Marmarica region (NE-Libya/NW-Egypt) ranging from the Late Bronze to the Roman times. It has been developed in the framework of the PERAIA project, which aims to analyse the long-term history and interaction patterns along the harsh environments of north-eastern Africa. The records contain accurate geographic location of sites, including place names, typology, chronology, and metadata of documented remains, along with information regarding the environmental and ecological context. Additionally, the dataset accounts for the specificities of the region’s varying environmental conditions and their potential impact on archaeological heritage. All this information associated with each archaeological site was collected from published field data surveys, maps, archaeological reports, and it was subsequently cross-checked with historical aerial photographs and satellite imagery to detect, and to register known and unknown sites within the study area.</p>
Drone orthomosaic and digital elevation model of the Atanikerluk archaeological site in NW Greenland
<p>This dataset consists of a digital elevation model (DEM) and an orthomosaic of the Atanikerluk archaeological site (NKAH 1724), located on the Nuussuaq Peninsula in NW Greenland near the settlement of Saqqaq. The DEM and orthomosaic were produced from 612 aerial images that were acquired by a DJI Phantom 3 drone. The images were processed using Agisoft Metashape Professional (version 1.7.1) following protocols established by the United States Geological Survey (USGS) for drone surveys of coastal regions (Over et al., 2021). Five ground control points were distributed throughout the survey area. The drone survey of the Atanikerluk site was conducted as part of the Vaigat Iceberg-Microbial Oil Degradation and Archaeological Heritage Investigation (VIMOA) project, which was funded by the Danish Centre for Marine Research and supported by the Arctic Research Centre at Aarhus University, in affiliation with the National Museum of Denmark, the Greenland Institute of Natural Resources, and The Greenland National Museum and Archives in Nuuk. Proper archaeological permits for the survey were obtained in advance from the Greenland National Museum and Archives in Nuuk. Walsh et al. (2020) provide an overview of the archaeological surveys conducted during the VIMOA project.</p> <p>Over et al. (2021) Processing Coastal Imagery With Agisoft Metashape Professional Edition, Version 1.6—Structure From Motion Workflow Documentation. USGS Open File Report 2021-1039. doi:10.3133/ofr20211039. <a href="https://pubs.er.usgs.gov/publication/ofr20211039">https://pubs.er.usgs.gov/publication/ofr20211039</a></p> <p>Walsh et al. (2020) The VIMOA project and archaeological heritage in the Nuussuaq Peninsula of north-west Greenland. Antiquity 94:e6 doi:10.15184/aqy.2019.230</p>
Drone orthomosaic and DEM of the Nuusaq archaeological site in NW Greenland
<p>This dataset consists of a digital elevation model (DEM) and an orthomosaic of the Nuusaq archaeological site, located on the Nuussuaq Peninsula in NW Greenland. The DEM and orthomosaic were produced from 2143 aerial images that were acquired by a DJI Phantom 3 drone. The images were processed using Agisoft Metashape Professional (version 1.7.1) following protocols established by the United States Geological Survey (USGS) for drone surveys of coastal regions (Over et al., 2021). The drone survey of the Nuusaq site was conducted as part of the Vaigat Iceberg-Microbial Oil Degradation and Archaeological Heritage Investigation (VIMOA) project, which was funded by the Danish Centre for Marine Research and supported by the Arctic Research Centre at Aarhus University, in affiliation with the National Museum of Denmark, the Greenland Institute of Natural Resources, and The Greenland National Museum and Archives in Nuuk. Archaeological permits for the survey were obtained in advance from the Greenland National Museum and Archives in Nuuk. Walsh et al. (2020) provide an overview of the archaeological surveys conducted during the VIMOA project.</p> <p>Over et al. (2021) Processing Coastal Imagery With Agisoft Metashape Professional Edition, Version 1.6—Structure From Motion Workflow Documentation. USGS Open File Report 2021-1039. doi:10.3133/ofr20211039. <a href="https://pubs.er.usgs.gov/publication/ofr20211039">https://pubs.er.usgs.gov/publication/ofr20211039</a></p> <p>Walsh et al. (2020) The VIMOA project and archaeological heritage in the Nuussuaq Peninsula of north-west Greenland. Antiquity 94:e6 doi:10.15184/aqy.2019.230</p>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.