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Рис. 2. Раскоп 1: А – сектор 5, профиль бровки по линии меЖду квадратами 20–21; В – северная стенка, квадраты 21–22. Fig. 2. Excavation 1: A – sector 5, the profile of the edge along the line between the squares 20–21; B – the northern wall, squares 21–22. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 2. Раскоп 1: А – сектор 5, профиль бровки по линии меЖду квадратами 20–21; В – северная стенка, квадраты 21–22. Fig. 2. Excavation 1: A – sector 5, the profile of the edge along the line between the squares 20–21; B – the northern wall, squares 21–22.

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Рис. 1. Карты Приморского края (А) и юЖного Приморья (В) с укаЗанием располоЖения стоянки Теляковского 2 и фотография побереЖья б. Теляковского (С); оранЖевая стрелка укаЗывает на располоЖение стоянки). Fig. 1. Maps of Primorsky Krai (Territory) (A) and its southern area (south Primorye) (B) showing location of Telyakobskogo 2 site and a photograph of the coast of Telyakovskogo Bay (C); orange arrow shows location of the site). in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 1. Карты Приморского края (А) и юЖного Приморья (В) с укаЗанием располоЖения стоянки Теляковского 2 и фотография побереЖья б. Теляковского (С); оранЖевая стрелка укаЗывает на располоЖение стоянки). Fig. 1. Maps of Primorsky Krai (Territory) (A) and its southern area (south Primorye) (B) showing location of Telyakobskogo 2 site and a photograph of the coast of Telyakovskogo Bay (C); orange arrow shows location of the site).

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Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay.

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Рис. 15. ПляЖи и пляЖевые танатоценоЗы б. Теляковского (июнь 2015 г.): А – северная часть бухты: пляЖ и валунно-глыбовая литораль; В – срединная часть бухты; С – массовые выбросы устриц (Crassostrea gigas), мидий (Crenomytilus grayanus) и модиолусов (Modiolus kurilensis) в северной части бухты; D – выбросы спиЗулы (Spisula sachalinensis) в срединной части бухты. Fig. 15. Beaches and beach thanatocoenoses of Telyakovskogo Bay (June 2015): A – northern part of the bay: a beach and rocky intertidal zone; B – middle part of the bay; C – abundant strandings of oysters (Crassostrea gigas), mussels (Crenomytilus grayanus and Modiolus kurilensis) in the northern part; D – strandings of Spisula sachalinensis in the middle part. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 15. ПляЖи и пляЖевые танатоценоЗы б. Теляковского (июнь 2015 г.): А – северная часть бухты: пляЖ и валунно-глыбовая литораль; В – срединная часть бухты; С – массовые выбросы устриц (Crassostrea gigas), мидий (Crenomytilus grayanus) и модиолусов (Modiolus kurilensis) в северной части бухты; D – выбросы спиЗулы (Spisula sachalinensis) в срединной части бухты. Fig. 15. Beaches and beach thanatocoenoses of Telyakovskogo Bay (June 2015): A – northern part of the bay: a beach and rocky intertidal zone; B – middle part of the bay; C – abundant strandings of oysters (Crassostrea gigas), mussels (Crenomytilus grayanus and Modiolus kurilensis) in the northern part; D – strandings of Spisula sachalinensis in the middle part.

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Рис. 12. Характер фрагментации и повреЖдений створок спиЗулы сахалинской Spisula sachalinensis иЗ раскопа 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 12. Характер фрагментации и повреЖдений створок спиЗулы сахалинской Spisula sachalinensis иЗ раскопа 1.

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Рис. 16. Выброшенная друЗа мидий (Crenomytilus grayanus) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 16. Выброшенная друЗа мидий (Crenomytilus grayanus) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей.

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Рис. 9. Частотно-раЗмерное распределение створок устрицы (Crassostrea gigas) иЗ раковинной кучи (все выборки). in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 9. Частотно-раЗмерное распределение створок устрицы (Crassostrea gigas) иЗ раковинной кучи (все выборки).

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Рис. 8. Характер фрагментации и сохранности створок устрицы (Crassostrea gigas) иЗ раскопа 2 (фракция крупных фагментов). in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 8. Характер фрагментации и сохранности створок устрицы (Crassostrea gigas) иЗ раскопа 2 (фракция крупных фагментов).

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Рис. 14. Характер повреЖдений раковин рапан (Rapana venosa) иЗ раскопа 2. Fig. 14. Fracture patterns of the veined rapa whelk shells (Rapana venosa) from excavation 2. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 14. Характер повреЖдений раковин рапан (Rapana venosa) иЗ раскопа 2. Fig. 14. Fracture patterns of the veined rapa whelk shells (Rapana venosa) from excavation 2.

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Рис. 6. Характер фрагментации створок мидии Грея (Crenomytilus grayanus) иЗ раскопа 1. Fig. 6. Fragmentation patterns of valves of the giant mussel ((Crenomytilus grayanus) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 6. Характер фрагментации створок мидии Грея (Crenomytilus grayanus) иЗ раскопа 1. Fig. 6. Fragmentation patterns of valves of the giant mussel ((Crenomytilus grayanus) from excavation 1.

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Рис. 7. Целые створки устрицы (Crassostrea gigas) иЗ раскопа 2. Fig. 7. Intact valves of the giant oyster (Crassostrea gigas) from excavation 2. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 7. Целые створки устрицы (Crassostrea gigas) иЗ раскопа 2. Fig. 7. Intact valves of the giant oyster (Crassostrea gigas) from excavation 2.

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Рис. 4. РаЗведочный шурф, виден слой раковин (раковинная куча) и масса створок спиЗулы сахалинской (Spisula sachalinensis) (Желтая стрелка). in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 4. РаЗведочный шурф, виден слой раковин (раковинная куча) и масса створок спиЗулы сахалинской (Spisula sachalinensis) (Желтая стрелка).

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Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1.

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Рис. 13. Частотно-раЗмерное распределение створок спиЗулы сахалинской (Spisula sachalinensis) иЗ раковинной кучи (все выборки). in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy

Рис. 13. Частотно-раЗмерное распределение створок спиЗулы сахалинской (Spisula sachalinensis) иЗ раковинной кучи (все выборки).

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Fig. 9 in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 9. Preservation (in situ) of brachiopods within massive to bedded barite blocks at Clipper Mine (Famennian, Nevada). A. Details of preservation showing costae and internal features such as the septalium and septum in sample above the scale bar. B. Typical block with dense, subparallel accumulation as seen by molds.

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Fig. 5. A in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 5. A. The distribution of the Roberts Mountains Allochthon with key mines cited in this study. B. Stratigraphy of the Roberts Mountains Allochthon. Note exact position of Dzieduszyckia within the Slaven Chert is unknown due to intense faulting within the allochthon. Base map modified from Holm-Denoma et al. (2017). Stratigraphic chart based on Ketner (2013).

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Fig. 8 in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 8. Slaven brachiopod sediments in thin-section from Famennian, Nevada. A. Void of brachiopod shells surrounded by poikilotopic barite. Note that the barite has no preferred orientation to the shells. B. Intergrowth of coarse twinned calcite and subhedral barite. Use of retardation plate causes barite (ba) to show as bright colors against the calcite (c). C. Poor preservation of layered brachiopod shells within coarse calcite.

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Fig. 6. A in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 6. A typical Slaven Chert exposed in open pit mines from Famennian, Nevada. A. Interbedded dark chert and light grey barite. Beds above fault approximately 10 cm thick. B. Exposure of in situ brachiopod molds in floor of Mountain Springs Mine (Pit A).

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Fig. 11 in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 11. External molds of dimerelloid brachiopod Dzieduszyckia spp., Famennian, Nevada, USA. A. USNM PAL 794576, block showing dense concentration of shells from in situ deposit, Mountain Springs Mine. B. USNM PAL 794577, cast showing typical triangular outline and deep sulcus. C. USNM PAL 794578, shell fragment showing relatively large costae and sulcus. D. USNM PAL 794579, specimen showing thinner costae and asymmetry about the midline. Note the rare bifurcation to left of midline. E. USMN PAL 794580, fragment of a more rounded shell with rounded costae. F. USNM PAL 794581, portion of shell showing radially divergent costae. G. USNM PAL 794582, external mold emphasizing strong biconvexity of shell.

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Fig. 3 in Dimerelloid brachiopod Dzieduszyckia from Famennian hydrocarbon seep deposits of Slaven Chert, Nevada, USA, with insights into systematics and paleoecology of the Dimerelloidea

Fig. 3. Field photograph showing two clearly distinguished dimerelloid brachiopod species, Dzieduszyckia tenuicostata (left) and Dzieduszyckia crassicostata (right), together in an allochthononous limestone boulder. Famennian (Upper Devonian), Sidi Amar, Western Meseta, Morocco.

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
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DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

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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.

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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.

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neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record