Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
535
datasets available to search
ShareScore release 0.9.0
Dataset results
535 results for “Stripes”
РИС. 8. Примеры проблем с иЗображением при работе на СЭМ. А, В. Засветка раЗличных частей раковин глохидиев (А. Anodonta anatina (=Colletopterum), оЗ. Красное, ХакасиЯ. В. Inversiunio reinianus, оЗ. Бива, о-в Хонсю, ЯпониЯ). C. РаЗнаЯ скорость сканированиЯ (слева – очень быстраЯ, справа – медленнаЯ) наружной поверхности глохидиЯ (Anodonta cygnea, р. Ялма, МосковскаЯ обл.). D. Артефакты в виде гориЗонтальных полос вследствие накоплениЯ отрицательного ЗарЯда при недостаточном напылении внутренней поверхности глохидиЯ (Nodularia douglasiae, ПетровскаЯ протока, бассейн р. Амур, Хабаровский кр.). МасШтаб 50 мкм (А, В), 2 мкм (С), 5 мкм (D). Микроскопы Zeiss EVO 40 (А, С, D), Zeiss MERLIN (В), напыление углеродом (А, С), хромом (В, D). FIG. 8. Illustration of different problems with SEM images. A, B. Overall illumination of some glochidia shells parts (A. Anodonta anatina (= Colletopterum), Krasnoe Lake, Khakassia. B. Inversiunio reinianus, Biwa Lake, Honshu Island, Japan). C. Different scanning speed (faster on the left and slower on the right) of the exterior glochidia valve (Anodonta cygnea, Yalma River, Moscow Oblast). D. Artifacts as horizontal stripes because of additional accumulation of a negative charge due to insufficient coating of the interior glochidia valve (Nodularia douglasiae, Petrovskaya channel, Amur River basin, Khabarovsk Krai). Scale bars 50 μm (A, B), 2 μm (C), 5 μm (D). Zeiss EVO 40 (A, C, D) and Zeiss MERLIN (B) microscopes, sputter coating with carbon (A, C) and chromium (B, D). in Методика подготовки раковин глохидиев (Bivalvia, Unionidae) длЯ работы на сканируюЩем Электронном микроскопе
РИС. 8. Примеры проблем с иЗображением при работе на СЭМ. А, В. Засветка раЗличных частей раковин глохидиев (А. Anodonta anatina (=Colletopterum), оЗ. Красное, ХакасиЯ. В. Inversiunio reinianus, оЗ. Бива, о-в Хонсю, ЯпониЯ). C. РаЗнаЯ скорость сканированиЯ (слева – очень быстраЯ, справа – медленнаЯ) наружной поверхности глохидиЯ (Anodonta cygnea, р. Ялма, МосковскаЯ обл.). D. Артефакты в виде гориЗонтальных полос вследствие накоплениЯ отрицательного ЗарЯда при недостаточном напылении внутренней поверхности глохидиЯ (Nodularia douglasiae, ПетровскаЯ протока, бассейн р. Амур, Хабаровский кр.). МасШтаб 50 мкм (А, В), 2 мкм (С), 5 мкм (D). Микроскопы Zeiss EVO 40 (А, С, D), Zeiss MERLIN (В), напыление углеродом (А, С), хромом (В, D). FIG. 8. Illustration of different problems with SEM images. A, B. Overall illumination of some glochidia shells parts (A. Anodonta anatina (= Colletopterum), Krasnoe Lake, Khakassia. B. Inversiunio reinianus, Biwa Lake, Honshu Island, Japan). C. Different scanning speed (faster on the left and slower on the right) of the exterior glochidia valve (Anodonta cygnea, Yalma River, Moscow Oblast). D. Artifacts as horizontal stripes because of additional accumulation of a negative charge due to insufficient coating of the interior glochidia valve (Nodularia douglasiae, Petrovskaya channel, Amur River basin, Khabarovsk Krai). Scale bars 50 μm (A, B), 2 μm (C), 5 μm (D). Zeiss EVO 40 (A, C, D) and Zeiss MERLIN (B) microscopes, sputter coating with carbon (A, C) and chromium (B, D).
FIGURE 4 in A new striped species of Brachychalcinus (Ostariophysi: Characiformes) from Amapá and Pará states, northern Brazil
FIGURE 4 | Brachychalcinus species groups according to color pattern: 1. "B. copei pattern": A. B. copei, LBP 23616, 81.3 mm SL; B. B. restrospina, NUP 21577, 58.7 mm SL; C. B. nummus, LBP 28578, 48.0 mm SL; D. B. parnaibae, MZUSP 87486, 54.1 mm SL. 2. "B. signatus pattern": E. B. orbicularis, ROM 102235, 52.1 mm SL; F. B. signatus, paratype, INPA 5667, 48.4 mm SL. 3. "B. reisi pattern": G. B. reisi, LBP 24499, 54.6 mm SL; H. B. sabaji, paratype, IEPA 4980, 62.8 mm SL, lateral view, left side. Scale bar = 1 mm.
FIGURE 5 in A new striped species of Brachychalcinus (Ostariophysi: Characiformes) from Amapá and Pará states, northern Brazil
FIGURE 5 | Preanal spine of Brachychalcinus: A. B. sabaji, LBP 34043, paratype, 52.6 mm SL; B. MCP 11033, B. orbicularis, 48.2 mm SL; C. B. reisi, paratype, MZUSP 119482, 52.2 mm SL, lateral view, left side. Scale bars = 1 mm.
FIGURE 3 in A new striped species of Brachychalcinus (Ostariophysi: Characiformes) from Amapá and Pará states, northern Brazil
FIGURE 3 | Map showing the known distribution of Brachychalcinus sabaji. Red star indicates the typelocality. Symbols may represent more than one lot.
FIGURE 6 in A new striped species of Brachychalcinus (Ostariophysi: Characiformes) from Amapá and Pará states, northern Brazil
FIGURE 6 | Radiograph of the Brachychalcinus sabaji, LBP 2331523456, 62.6 mm SL, rio Tapajós, Itaituba, Pará, Brazil, lateral view, left side. Scale bar = 1 mm.
FIGURE 2 in A new striped species of Brachychalcinus (Ostariophysi: Characiformes) from Amapá and Pará states, northern Brazil
FIGURE 2 | Premaxilla, maxilla, and dentary of Brachychalcinus sabaji, LBP 34043, 52.6 mm SL, paratype, lateral view, right side. Scale bar = 1 mm.
Fig. 4 in A new striped species of Ichthyophis Fitzinger, 1826 (Amphibia: Gymnophiona: Ichthyophiidae) from Mizoram, northeast India
Fig. 4. Paratypes of Ichthyophis benjii sp. nov. in life: (A) MZMU 1462 from Chhinga Veng, (B) MZMU 1481 from Tanhril, (C) MZMU 2025 from Gosen, and (D) I. multicolor MZMU 1740 from Tuirini Bridge, Aizawl District. Photos by H.T. Lalremsanga.
Fig. 3 in A new striped species of Ichthyophis Fitzinger, 1826 (Amphibia: Gymnophiona: Ichthyophiidae) from Mizoram, northeast India
Fig. 3. Distribution of type localities of the Indo-Burman Ichthyophis species, including I. benjii sp. nov.
Fig. 2 in A new striped species of Ichthyophis Fitzinger, 1826 (Amphibia: Gymnophiona: Ichthyophiidae) from Mizoram, northeast India
Fig. 2. Preserved holotype (MZMU 1479) of Ichthyophis benjii sp. nov. (A) Dorsal view of full body. (B) Ventral view of full body. (C) Dorsal view of head. (D) Ventral view of head. (E) Left lateral view of head. (F) Ventral side of tail. Each scale bar indicates 10 mm. Photos by Ro Malsawma.
Fig. 5 in A new striped species of Ichthyophis Fitzinger, 1826 (Amphibia: Gymnophiona: Ichthyophiidae) from Mizoram, northeast India
Fig. 5. Maximum Likelihood phylogram of 16s rRNA. Numbers at internal branches are bootstrap support. Epicrionops marmoratus and Rhinatrema bivittatum were used as the out-group. The taxon name in bold denotes the sample newly sequenced in this study. Numbers preceding taxon names are GenBank accession numbers.
Fig. 3 in Relationship between fish length and otolith dimensions of Yellow striped goatfish, Upeneus vittatus (Forsskal, 1775) along the Indian coast
Fig. 3 — Otolith morphometry of U. vittatus used to study relationship with fish length. (Note: OL: Otolith Length, OH: Otolith width)
Fig. 4 in Relationship between fish length and otolith dimensions of Yellow striped goatfish, Upeneus vittatus (Forsskal, 1775) along the Indian coast
Fig. 4 — Relationship between (a – c: Mumbai): a) total length and otolith weight, b) total length and otolith width and c) total length and otolith length; (d – f: Kakinada): d) total length and otolith weight, e) total length and otolith width and f) total length and otolith length; (g – i: Odisha): g) total length and otolith weight, h) total length and otolith width and i) total length and otolith length; of U. vittatus
Рис. 2. Самец пятнистого оΛеня в ΑоΛине р. КаяΛу, 7 июΛя 2018 г. Fig. 2. Male sika deer in the valley of the Kayalu River, 7 July, 2018 in Documented Evidence Of Habitation For The Sika Deer, The Amur Leopard Cat And The Striped Field Mouse In The Bikin National Park (Russia)
Рис. 2. Самец пятнистого оΛеня в ΑоΛине р. КаяΛу, 7 июΛя 2018 г. Fig. 2. Male sika deer in the valley of the Kayalu River, 7 July, 2018
Рис. 3. Останки пятнистого оΛеня — жертвы воΛков на ΛьΑу р. Бикин в верхнем течении, 29 января 2019 г. Fig. 3. Remains of a sika deer (wolves' prey) on the ice in the upper reaches of the Bikin River, January 29, 2019 in Documented Evidence Of Habitation For The Sika Deer, The Amur Leopard Cat And The Striped Field Mouse In The Bikin National Park (Russia)
Рис. 3. Останки пятнистого оΛеня — жертвы воΛков на ΛьΑу р. Бикин в верхнем течении, 29 января 2019 г. Fig. 3. Remains of a sika deer (wolves' prey) on the ice in the upper reaches of the Bikin River, January 29, 2019
Fig. 7 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 7. Distribution of all known species of the genus Terelabrus (after Fukui 2018). Symbols represent specimen and photographic records for T. flavocephalus (black stars), T. dewapyle (black squares), T. zonalis (black circles), T. rubrovittatus (white hexagons), and Terelabrus toretore sp. n. (white square). The two new records from this study are indicated with arrows.
Fig. 1 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 1. Coloration of freshly dead specimens of Terelabrus toretore sp. nov. (A) holotype CAS-ICH 247318 (SL 58.3 mm), and (B) paratype CASICH 247319 (SL 44.3 mm).
Fig. 4 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 4. Queensland Museum specimen number QM I.41018 from the Great Barrier Reef Myrmidon Reef), Australia, identified as Terelabrus zonalis (SL 64.3 mm). Photograph by James Foster. This is the only known photograph showing the fresh coloration of this species.
Fig. 3 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 3. Underwater photographs of Terelabrus toretore (specimens not collected): (A) Tahiti at 125 m depth, photo by L.A. Rocha; (B) Moorea at 252 m depth, photo by R. Holler (Tahiti Private Expeditions).
Fig. 2 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 2. Preserved coloration and radiograph of the holotype CAS-ICH 247318 (SL 58.3 mm). Photograph and radiograph by Jon Fong.
Fig. 6 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 6. New record of Terelabrus rubrovittatus for the Marshall Islands: (A) CAS-ICH 247320 (SL 71.3 mm) collected in Majuro at 125 m depth, photo by T. Sinclair-Taylor; (B) Underwater photograph at 130 m depth in Arno Atoll; specimen not collected, photo by L.A. Rocha.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.