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111 results for “Neritimorpha”
Figure 20 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 20 ALissachatinafulica, CUMZ collection BGlessulakentungensis, syntype NHMUK 1986002 C, DGlessulalatestriataC paratype NHMUK 1926.2.3.19-20 and D CUMZ collection E, FGlessulapavieiE syntype MNHN-IM-2000-4668 and F CUMZ collection.
Figure 16 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 16 APupinaverneaui, CUMZ collection B, CPupinellafrednaggsiB holotype NHMUK 20170285 and C CUMZ collection DPupinellamansuyi, syntype MNHN-IM-2000-30756 EVargapupabiheli, holotype MNHN-IM-2012-27020 FVargapupahumilis, holotype MNHN-IM-2012-27159. Photos: B. Páll-Gergely (E, F).
Figure 15 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 15 APollicariamouhoti, lectotype NHMUK 20130071/1 BPollicariamyersii, CUMZ collection CPseudopomatiaslinanprietoae, holotype HNHM 98835 D, EPseudopomatiassophiaeD holotype NHMUK 1910.1.21.2 and E CUMZ collection FPupinabrachysoma, CUMZ collection GPupinamouhoti, CUMZ collection. Photo: B. Páll-Gergely (C).
Figure 13 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 13 A, BSpiraculummassieiA syntype MNHN-IM-2000-20837 and B CUMZ collection CSpiraculum sp., CUMZ collection DDiplommatinabelonis, CUMZ collection E, FDiplommatinabifissurataE syntype MNHN-IM-2000-32429 and F CUMZ collection. Photo: B. Páll-Gergely (E).
Figure 2 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 2 Three main habitat types following geographical subdivisions, north, central and south of Laos. A Natural vegetation type of mountainous and dry-evergreen forests in the north, Luang Phrabang Province B Massive limestone karsts and caves in the central, Vientiane Province C Sandstones and dry-dipterocarp forests in lowlands of the south, Champasak Province.
Figure 23 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 23 A, BHaploptychiuspellucensA lectotype NHMUK 20160249.1 and B specimen CUMZ 6264 C, DHaploptychiusporrectusC lectotype NHMUK 20140750.1 and D specimen CUMZ 6273 EIndoartemondiodonta, holotype CUMZ 6289 FIndoartemontridens, holotype SMF 108507/1.
Figure 11 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 11 A, BRhiostomamarioniA syntype NMW 1955.158.24090 and B CUMZ collection C, DRhiostomamorletiC syntype MNHN-IM-2000-20961 and D CUMZ collection ERhiostoma sp., CUMZ collection FScabrinalaotica, CUMZ collection.
Figure 12 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 12 A–CScabrinapateraA NHMUK collection and B, C CUMZ collection D, EScabrinavanbuensisD syntype NHMUK 1896.1.25.7-8 and E CUMZ collection FSpiraculumvilvensi, CUMZ collection.
Figure 19 from: Inkhavilay K, Sutcharit C, Bantaowong U, Chanabun R, Siriwut W, Srisonchai R, Polyotha A, Jirapatrasilp P, Panha S (2019) Annotated Checklist of the Terrestrial Molluscs from Laos (Gastropoda: Neritimorpha, Caenogastropoda and Heterobranchia). ZooKeys 834: 1-166. https://doi.org/10.3897/zookeys.834.28800
Figure 19 AAtoposlaidlawi, CUMZ collection BValigunasiamensis, CUMZ collection CMeghimatiumbilineatum, CUMZ collection DMeghimatiumpictum, CUMZ collection ECryptosemelus sp., CUMZ collection FDurgellalibas, CUMZ collection GParmarionmartensi, CUMZ collection.
Supplementary material 2 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
: Data type: measurement data
Supplementary material 1 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
: Data type: table
Figure 9 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 9 Georissatrusmadi sp. n. A–C Holotype: MZU/MOL 16.17 D–K paratype: MZU/MOL 16.18 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
Figure 8 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 8 Georissawilliamsi Godwin-Austen, 1889. A–IRMNH/MOL 333946 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G shell top view H protoconch side view I close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–G); 200 µm (H); 10 µm (I).
Figure 7 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 7 Georissaeveretti Smith, 1895. A–KJJV 10185 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
Figure 6 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 6 Georissacorrugata sp. n. A–C Holotype: MZU/MOL 16.15 D–I paratype: MZU/MOL 16.16 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G shell top view H protoconch side view I close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–G); 200 µm (H); 10 µm (I).
Figure 13 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 13 Georissafiliasaulae Haase & Schilthuizen, 2007. A–K BOR/MOL 12768 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
Figure 5 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 5 Georissaborneensis Smith, 1895. A–KZMA/MOLL 315546 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
Figure 3 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 3 The distribution of eight species of the "non-scaly" Georissa of Malaysian Borneo, based on studied materials.
Figure 20 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 20 Georissaflavescens Smith, 1895. A–K BOR/MOL 7288 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
Figure 17 from: Khalik MZ, Hendriks KP, Vermeulen JJ, Schilthuizen M (2019) Conchological and molecular analysis of the "non-scaly" Bornean Georissa with descriptions of three new species (Gastropoda, Neritimorpha, Hydrocenidae). ZooKeys 840: 35-86. https://doi.org/10.3897/zookeys.840.33326
Figure 17 Georissaxesta Thompson & Dance, 1983. A–K BOR/MOL 7303 A, D shell apertural view B shell side view C shell rear view E, F shell cross-section from 3D model G, H operculum frontal and ventral view from 3D model I shell top view J protoconch side view K close up of protoconch from top at 1000 × magnification. Scale bars: 500 µm (A–I); 200 µm (J); 10 µm (K).
ScienceDex guides
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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)
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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.