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zenodo28/100

Figure 7 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 7 Opimaphora blattereri Albano, Bakker & Sabelli, sp. nov., dive site "Islands", Dahab, Sinai, Egypt A–J holotype, NHMW-MO-113283: front (A, B), side (C, D) and back (E) views, nucleus (F), protoconch (G, H) and peristome (I, J) K–M paratype 1, LIEV 2019/70/2: front (K), side (L) and back (M) views. Scale bars: 0.5 mm (A–E, K–M), 0.1 mm (F); 0.2 mm (G, H); 0.3 mm (I, J).

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zenodo28/100

Figure 44 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 44 Semelidae sp., Palmachim, Israel, Shafdan project (sample 29(A)): left valve outer view (A, B), right valve inner view (D, E), hinge (C, F) and outer view (G, H), left valve inner view (J–K) and hinge (I, L). The pink hue is due to staining with eosin solution. Scale bars: 1 mm (A, B, D, E, G, H, J, K); 0.5 mm (F, L); 0.3 mm (C, I).

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Figure 30 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 30 Cylichna collyra Melvill, 1906, Palmachim, Israel, Shafdan project (sample 22(A)): front (A, B), side (C) and back (D) views, and apical (E) and anterior (F) microsculpture. Scale bars: 1 mm (A–D); 0.2 mm (E, F).

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zenodo28/100

Figure 41 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 41 Scintilla cf. violescens Kuroda & Taki, 1961, Haifa, Israel: right (A) and left (B) valve outer views, left (C) and right (D) valve inner views, hinge of left (E, G) and right (F, H) valve. Scale bars: 2 mm (A–D); 0.5 mm (E–H).

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zenodo28/100

Figure 15 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 15 Hypermastus sp., Tel Aviv, Israel, HELM project (sample S67_3F): front (A, B), side (C, D) and back (E) views, apex with optical microscope (F) and SEM (G) showing the protoconch-teleoconch transition (the shell had a different orientation in images F and G). The arrow marks the constriction between protoconch and teleoconch that is a diagnostic character for this species. Scale bars: 0.5 mm (A–E); 0.2 mm (F, G).

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zenodo28/100

Figure 14 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 14 Vitrinella aff. Vitrinella sp. 1 (sensu Blatterer 2019), Ashdod, Israel, APM DAN project (sample 10B): apical (A, B), umbilical (C, D), front (E) and side (F) views, protoconch (G) and back view (H). Scale bars: 0.3 mm (A–F, H); 0.1 mm (G).

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zenodo28/100

Figure 13 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 13 Iravadia aff. elongata (Hornung & Mermod, 1928) A–F Ashqelon, Israel, HELM project (sample S58_2F): front (A, B) and back (C, D) views, protoconch (E) and detail of sculpture on the body whorl (F) G, H Arusa (near Port Sudan), Sudan: front view of an adult (G) and juvenile (H) shell. Scale bars: 1 mm (A–D, G, H); 0.2 mm (E); 0.3 mm (F).

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Figure 12 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 12 Comparison between Elachisina sp. and Elachisina robertsoni Kay, 1979 A–EElachisina sp., west of Rosh HaNikra Islands, Israel, HELM project (sample S13_3L): front (A, B), side (C) and back (D, E) views F–HElachisina robertsoni, BPBM 9754 (holotype), Maunalua Bay, Oahu, Hawaii: front (F), side (G) and back (H) views (photograph courtesy N. Young). Scale bars: 0.5 mm.

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Figure 1 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 1 Unidentified gastropod (Caenogastropoda), Haifa Bay, Israel (sample HM27(c)): front (A, B), side (C) and back (D, E) views, protoconch (F, G). Scale bars: 1 mm (A–E); 0.3 mm (F–G).

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Figure 11 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 11 Joculator problematicus Albano & Steger, sp. nov., holotype, NHMW-MO-113580, Ashqelon, Israel, HELM project (sample S58_3F): front (A, B), left side (C), right side (D, E) and back (F) views, protoconch (G, H), microsculpture (I) and base and siphonal canal (J). Scale bars: 0.5 mm (A–F); 0.2 mm (G, H); 0.3 mm (I); 0.4 mm (J).

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Figure 10 from: Albano PG, Steger J, Bakker PAJ, Bogi C, Bošnjak M, Guy-Haim T, Huseyinoglu MF, LaFollette PI, Lubinevsky H, Mulas M, Stockinger M, Azzarone M, Sabelli B (2021) Numerous new records of tropical non-indigenous species in the Eastern Mediterranean highlight the challenges of their recognition and identification. ZooKeys 1010: 1-95. https://doi.org/10.3897/zookeys.1010.58759

Figure 10 Cerithiopsis sp., Shiqmona Beach, Israel: front (A, B), side (C) and back (D) views, protoconch oriented to highlight the transition to the teleoconch (E, F), microsculpture (G). Scale bars: 1 mm (A–D); 0.2 mm (E, F); 0.4 mm (G).

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Figure 8 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 8 Diaporthe melastomatis (SAUCC194.55) a branch with leaves of host plant b, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata e, f conidiophores and conidiogenous cells g beta conidia h, i, k alpha conidia and beta conidia j alpha conidia. Scale bars: 10 μm (e–k).

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Figure 7 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 7 Diaporthe lutescens (SAUCC194.36) a leaves of host plant b, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata e–g conidiophores and conidiogenous cells h, i beta conidia. Scale bars: 10 μm (e–i).

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Figure 5 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 5 Diaporthe heterostemmatis (SAUCC194.85) a leaf of host plant b, c surface (b) and reverse (c) sides of colony, after incubation for 15 days on PDAd conidiomata on PDAe, f conidiophores and conidiogenous cells g beta conidia h Alpha conidia i, j alpha conidia and beta conidia. Scale bars: 10 μm (e–j).

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Figure 3 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 3 Diaporthe grandiflori (SAUCC194.84) a leaf of Heterostemma grandiflorumb, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata e conidiophores and conidiogenous cells f alpha conidia g, i alpha conidia and beta conidia h beta conidia. Scale bars: 10 μm (e–i).

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Figure 6 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 6 Diaporthe litchii (SAUCC194.22) a leaf of host plant b, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata e, f conidiophores and conidiogenous cells g, h beta conidia i alpha conidia and beta conidia j alpha conidia. Scale bars: 10 μm (e–j).

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Figure 11 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 11 Diaporthe tectonendophytica (SAUCC194.11) a leaf of host plant b, c surface (b) and reverse (c) side of colony after incubation for 15 days on PDAd conidiomata on PDAe, f conidiophores and conidiogenous cells g, h beta conidia. Scale bars: 10 μm (e–h).

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Figure 2 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 2 Diaporthe camelliae-sinensis (SAUCC194.92) a leaf of host plant b, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata e–h conidiophores and conidiogenous cells i beta conidia j–l alpha conidia and beta conidia m alpha conidia. Scale bars: 10 μm (e–m).

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Figure 9 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 9 Diaporthe pungensis (SAUCC194.112) a leaf of host plant b, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata on PDAe–h conidiophores and conidiogenous cells i, l beta conidia j, k alpha conidia and beta conidia. Scale bars: 10 μm (e–l).

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Figure 4 from: Sun W, Huang S, Xia J, Zhang X, Li Z (2021) Morphological and molecular identification of Diaporthe species in south-western China, with description of eight new species. MycoKeys 77: 65-95. https://doi.org/10.3897/mycokeys.77.59852

Figure 4 Diaporthe heliconiae (SAUCC194.77) a petiole of Heliconia metallicab, c surface (b) and reverse (c) sides of colony after incubation for 15 days on PDAd conidiomata on PDAe–g conidiophores and conidiogenous cells h beta conidia i alpha conidia and beta conidia j alpha conidia k alpha conidia and germinating conidia. All in water. Scale bars: 10 μm (e–k).

opencc-by-4.0Jan 2021View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
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.

dandi-nwb
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.

ibl
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