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Рис. 4. Поселение Константиновка-1: А – раскоп 2. Остатки полуЗемлЯнки (жилиЩе 4); В – раскоп 3. Остатки (погреб) котлована постройки № 40. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)

Рис. 4. Поселение Константиновка-1: А – раскоп 2. Остатки полуЗемлЯнки (жилиЩе 4); В – раскоп 3. Остатки (погреб) котлована постройки № 40.

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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.

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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).

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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.

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Рис. 3. Микроскульптура наружной поверхности глохидиальных створок Nodularia amurensis (А – р. РаЗдольнаЯ; B – р. Амур, Б. Уссурийский остров) и Middendorffinaia sujfunensis (С): A – участок створки ниже аддуктора; B – центральнаЯ часть створки (район аддуктора); C – у лигамента. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм. in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Рис. 3. Микроскульптура наружной поверхности глохидиальных створок Nodularia amurensis (А – р. РаЗдольнаЯ; B – р. Амур, Б. Уссурийский остров) и Middendorffinaia sujfunensis (С): A – участок створки ниже аддуктора; B – центральнаЯ часть створки (район аддуктора); C – у лигамента. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм.

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Рис. 4. Микроскульптура наружной поверхности глохидиальных створок перловиц Nodularia biwae (A, D – увеличенный фрагмент) и Lanceolaria grayana (B, C – увеличенный фрагмент) иЗ Японии, о-в Хонсю. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 1 мкм (А, В) и 2 мкм (C, D). Fig. 4. Microsculpture of external surface of glochidia of mussels Nodularia biwae (A, D – fragment) and Lanceolaria grayana (B, C – fragment) from Honshu Is., Japan. Scanning electron microscopy. Scale bar 1µm (А, В) and 2 µm (C, D). in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Рис. 4. Микроскульптура наружной поверхности глохидиальных створок перловиц Nodularia biwae (A, D – увеличенный фрагмент) и Lanceolaria grayana (B, C – увеличенный фрагмент) иЗ Японии, о-в Хонсю. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 1 мкм (А, В) и 2 мкм (C, D). Fig. 4. Microsculpture of external surface of glochidia of mussels Nodularia biwae (A, D – fragment) and Lanceolaria grayana (B, C – fragment) from Honshu Is., Japan. Scanning electron microscopy. Scale bar 1µm (А, В) and 2 µm (C, D).

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Fig. 1 in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Fig. 1. Glochidia of Nodularia amurensis from various view angles: А – Razdolnaya River; B, С – Amur River, Petrovskaya channel; D – Amur River, B. Ussuriysky Island. Abbreviations: lig – ligament; v.a – ventral angle; l.th – larval thread; v – valve of open glochidial shell. Scanning electron microscopy. Scale bar 2 µm.

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Fig. 2 in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Fig. 2. Glochidia of Middendorffinaia sujfunensis from various view angles. Abbreviations: lig – ligament; v.a – ventral angle; l.th – larval thread; v – valve of open glochidial shell. Scanning electron microscopy. Scale bar: 2 µm.

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Рис. 2. Глохидии Middendorffinaia sujfunensis с раЗных ракурсов. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм. in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Рис. 2. Глохидии Middendorffinaia sujfunensis с раЗных ракурсов. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм.

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Fig. 3 in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Fig. 3. Microsculpture of external surface of glochidia of Nodularia amurensis (А – Razdolnaya River; B – Amur River, B. Ussuriysky Island) and Middendorffinaia sujfunensis (С): A – part of valve down the adductor; B – cenral part of valve (adductor); C – near ligament. Scanning electron microscopy. Scale bar 2 µm.

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Рис. 1. Глохидии Nodularia amurensis с раЗных ракурсов: А – р. РаЗдольнаЯ; B, С – р. Амур, ПетровскаЯ протока; D – р. Амур, Б. Уссурийский остров. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм. in Morphology of glochidia of the freshwater mussels Nodularia amurensis and Middendorffinaia sujfunensis (Bivalvia: Unionidae: Nodulariinae) from the Russian Far East

Рис. 1. Глохидии Nodularia amurensis с раЗных ракурсов: А – р. РаЗдольнаЯ; B, С – р. Амур, ПетровскаЯ протока; D – р. Амур, Б. Уссурийский остров. ОбоЗначениЯ: lig – лигамент; v.a – вентральный угол; l.th – личиночнаЯ нить; v – створка открытой глохидиальной раковины. СканируюЩаЯ ЭлектроннаЯ микроскопиЯ. МасШтаб 2 мкм.

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Fig. 3. Left m1 in The first finding of Mimomys in the Russian Far East

Fig. 3. Left m1 of a vole Mimomys chandolensis sp. nov. from Primorsky Krai, Russia, Late Pleistocene (MIS 3); ZIN 101600 in root (A), occlusal (B), buccal (C), lingual (D), and anterior (E) views. T1–3, the triangles of the occlusal suface; dentine tracks and fields of lateral sides are hatched; arrows mark the anterior direction. Terminology and measurements modified from van der Meulen (1973), Rabeder (1981), Tesakov (2004), Lozano-Fernández et al. (2013).

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Fig. 4 in The first finding of Mimomys in the Russian Far East

Fig. 4. Vole Mimomys chandolensis sp. nov. (ZIN 101600) from Primorsky Krai, Russia, Late Pleistocene (MIS 3). Left m1 in occlusal (A), buccal (B), and lingual (C) views, and photographs of the enamel ultrastructures (D). Positions of D1–D6 indicated on the drawing. Abbreviations: d, dentine; L, lammelar enamel layer; r, radial enamel; t, tangential enamel.

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Fig. 2 in The first finding of Mimomys in the Russian Far East

Fig. 2. Diagrammatic picture deposits of the southwestern wall of the excavation pit in the Medvezhyi Klyk Cave. Asterisk indicates the site of Mimomys chandolensis sp. nov.

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Fig. 1 in The first finding of Mimomys in the Russian Far East

Fig. 1. Localities of fossil Mimomys in Transbaikalia, Primorye, and China. Asterisk indicates the location of the Medvezhyi Klyk Cave.

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Figs 54–57 in Millipedes (Diplopoda) From Korea, The Russian Far East, And China In The Collection Of The Hungarian Natural History Museum

Figs 54–57. Koreadesmus proprius gen. sp. n.: 54–57 = gonopod, mesal, frontal,lateral and caudal view, r – postfemoral process, d – postfemoral tooth, t – flattened outgrowth of postfemorite, lo –

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Figs 42–44 in Millipedes (Diplopoda) From Korea, The Russian Far East, And China In The Collection Of The Hungarian Natural History Museum

Figs 42–44. Ansiulus aberrans sp. n.: 42 = antenna, 43 = legpair 1, caudal view, 44 = legpair 2 and penes, caudal view. Scales in mm

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Figs 50–53 in Millipedes (Diplopoda) From Korea, The Russian Far East, And China In The Collection Of The Hungarian Natural History Museum

Figs 50–53. Koreadesmus proprius gen. sp. n.: 50 = antenna, 51–52 = somite 10, dorsal and lateral view, 53 = lamina between coxae 4. Scales in mm

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Figs 45–49 in Millipedes (Diplopoda) From Korea, The Russian Far East, And China In The Collection Of The Hungarian Natural History Museum

Figs 45–49. Ansiulus aberrans sp. n.: 45 = legpair 7, frontal view, m from Ryanggang Prov., 46 = legpair 7, frontal view, m from North Pyongan Prov., 47 = anterior gonopod, caudomesal view, 48 = posterior gonopod, lateral view, m from Ryanggang Prov., 49 = posterior gonopod, lateral view, m

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Fig. 41 in Millipedes (Diplopoda) From Korea, The Russian Far East, And China In The Collection Of The Hungarian Natural History Museum

Fig. 41. Scatterplot of vertical diameter of somite 23 to number of podous somites in various populations of Anaulaciulus golovatchi MIKHALJOVA, 1982. o = males from Russian Far East; n = males

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Allen Brain Atlas

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neuroscienceopenDocumentation, web resources, and API references are available online.
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Annotated Behaviour and Observability Dataset (ABODe)

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

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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.

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