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Fig. 8 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 8. Distribution of Clypeostoma species in the south-western Indian Ocean. C. meteorae (squares), C. cf. nortoni (circles), C. reticulatum (cross) and C. salpinx (triangles). Each symbol represents one or more records.
Fig. 7. Agathodonta Cossmann, 1918 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 7. Agathodonta Cossmann, 1918: (A, B) cast of lectotype of Trochus dentigerus d'Orbigny, 1843 (Dupin coll'n, UCBL, EM-32041-1, originally in l'École des Mines de Paris), designated lectotype by Kollmann (2005: 70, pl. 9, fig. 6), specimen also illustrated by Cossmann (1918: pl. vii, fig. 9), Neocomian, Marolles, Aube, France, length 18.3 mm (cast in NMSA L2816); (C) topotype of T. dentigerus d'Orbigny, 1843, Neocomian, Aube, Marolles, length 11.7 mm, diameter 8.1 mm, (d'Orbigny coll'n, MNHN 4927); (D) original figure of T. dentigerus provided by d'Orbigny (1843: pl. 177, fig. 9). Arrows indicate varices on spire whorls.
Fig. 5 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 5. Living animals: (A) Ascetostoma providentiae (Melvill, 1909), off Boteler Point, KZN, shell diameter 7.3 mm (NMSA S8961); (B) Perrinia angulifera (A. Adams, 1853), NE of Liefeldt's Rocks, KZN, shell length 12.8 mm, left cephalic tentacle damaged (NMSA E4344).
Fig. 3 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 3. Radula morphology in the Chilodontidae: (A, B) Herpetopoma scabriusculum (Adams & Angas in Angas, 1867), Bradleys Head, Sydney Harbour, NSW, Australia (AMS C304695): (A) rachidian and right lateral teeth, bar = 20 µm; (B) outer marginal teeth, bar = 10 µm; (C) Granata sulcifera (Lamarck, 1822), central field, Santa Carolina Is., central Mozambique, bar = 50 µm (NMSA K3084); (D) Danilia textilis, rachidian and left lateral teeth, off Rame Head, Eastern Cape, bar = 25 µm (paratype, NMSA S9912/T2594); (E) Herpetopoma helix (Barnard, 1964), half row of radula, SE of Green Point, KZN, bar = 25 µm (D5990); (F) Danilia textilis, half row of radula showing the mop-like marginal series, off Rame Head, Eastern Cape, bar = 50 µm (paratype, NMSA S9912/T2594).
Fig. 6 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 6. External anatomy of Chilodontidae. Schematic illustrations of the external features of the head-foot, viewed from above: (A) Ascetostoma providentiae (Melvill, 1909); (B) Clypeostoma salpinx (Barnard, 1964); (C) Danilia textilis sp. n.; (D) Granata sulcifera (Lamarck, 1822); (E) Perrinia angulifera (A. Adams, 1853); (F) Vaceuchelus cretaceus sp. n.; (G) V. natalensis (Smith, 1906).
Fig. 4 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 4. Operculum morphology in the Chilodontidae: (A) Littorina littorea (Linnaeus, 1758), Cancale, Brittany, France, max. diameter 10.2 mm (NMSA G778); (B) Euchelus asper (Gmelin, 1791), Bombay, India, max. diameter 9.0 mm (NMSA J8066); (C) Granata sulcifera, Mtwalume, KZN, max. diameter 3.58 mm (NMSA V3927); (D) Clypeostoma salpinx, off Whale Rock, Eastern Cape, max. diameter 2.59 mm (NMSA C9502); (E) Danilia textilis, max. diameter 2.97 mm (holotype, NMSA E7756/ T2595); (F) Ascetostoma providentiae, off Boteler Point, KZN, max. diameter 2.52 mm (NMSA S4904); (G) Herpetopoma (s.s.) instrictum, Low Isles, Great Barrier Reef, Queensland, max. diameter 3.17 mm (AMS C.304699); (H) H. (s.s.) scabriusculum, Bradleys Head, Sydney Harbour, Australia, max. diameter 1.78 mm (AMS C.30695); (I) H. (s.l.) helix, off Umzinto, KZN, max. diameter 1.01 mm (NMSA D5427); (J) Vaceuchelus cretaceus, SE of Kosi Bay, KZN, max. diameter 2.52 mm (paratype, NMSA S4006/T2638); (K) V. natalensis, off Umzinto, KZN, max. diameter 0.99 mm (NMSA D5428); (L) V. semilugubris, Réunion, max. diameter 1.28 mm (M. Jay coll'n MNHN); (M) Perrinia angulifera, off Boteler Point, KZN, max. diameter 4.44 mm (NMSA D9209); (N) P. konos, off Port Grosvenor, Eastern Cape, max. diameter 1.23 mm (NMSA E177); (O) P. stellata, Kosi Bay main coral reef, KZN, max. diameter 1.14 mm (NMSA S1985).
Fig. 2 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 2. Shell microsculpture in the Chilodontidae: (A) vermiform spiral threads between axial pliculae on first teleoconch whorl of Ascetostoma providentiae (Melvill, 1909), off Dog Point, KZN, bar = 100 µm (NMSA E1743); (B) scratch-like adult microsculpture of Perrinia angulifera (A. Adams, 1853), off Boteler Point, KZN, bar = 50 μm (NMSA E1762); (C) crisp, granular microsculpture between axial pliculae on first teleoconch whorl of Vaceuchelus jayorum sp. n., Réunion, bar = 25 μm (paratype, M. Jay coll'n, MNHN 24810).
Fig. 1 in A revision of the Chilodontidae (Gastropoda: Vetigastropoda: Seguenzioidea) of southern Africa and the south-western Indian Ocean
Fig. 1. Protoconch morphology in the Chilodontidae: (A) Perrinia konos (Barnard, 1964), exsert protoconch with little superficial sculpture, off Umzinto, KZN (NMSA D5426); (B) Clypeostoma salpinx (Barnard, 1964), exsert protoconch with beak-like projection on terminal lip, off Whale Rock, Eastern Cape (NMSA E289); (C) Granata sulcifera (Lamarck, 1822), protoconch with beak-like projection on terminal lip, Mtwalume, KZN (NMSA B8666); (D) Ascetostoma providentiae (Melvill, 1909), protoconch with widely spaced spiral threads and oblique axial lines in the intervals, off Dog Point, KZN (NMSA E1743); (E) Herpetopoma serratocinctum sp. n., protoconch with close-set axial sculpture, Kilifi, Kenya (paratype, NMSA L8270/T2641); (F) Vaceuchelus jayorum sp. n., protoconch with coarse axial sculpture, Réunion (paratype, M. Jay coll'n, MNHN 24810). All bars = 100 µm.
Data used in the definition of Harmful Algal Bloom hotspot for Northern Indian Ocean
<p>The zipped rar file contain raw data used in the harmful algal bloom hotspot analysis for the Northern Indian Ocean. Annual_MK_full folder gives the data on the annual Mann kendal analysis of the chlorophyll data from satellite data. Boreal_season_full folder gives data on seasonally calculated chlorophyll concentration from the Northern Indian ocean. Monthly_MK folder gives the monthly averaged chlorophyll data. The chlorophyll data is further grouped into two; (1) Chlorophyll concentration greater than 4 mg/m^3 and (2) Chlorophyll concentration greater than 10 mg/m^3.</p> <p> </p>
Figure 5 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 5. World distribution of the species belonging to the subfamily Paroxystomininae De Coninck, 1965.
Figure 4 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 4. Light micrographs of the male of Maldivea complexa n. sp. A,B) Detail of the buccal cavity, C) Detail of amphideal fovea, D) Copulatory apparatus, E) Precloacal sub-ventral pairs of short and stout setae close to the cloacal opening, F) Detail of the precloacal sub-ventral pairs of short and stout setae in the elevation of the cuticle, G) Details of the post-cloacal setae and tail tip. Scale bars: A-B: 5 µm, C,E: 10 µm; D, F,G: 20 µm.
Figure 3 in A new species of Maldivea Gerlach, 1962 (Nematoda, Oxystominidae) from Felidhoo atoll (Maldives, Indian Ocean) and an emended diagnosis of the sub-family and genus
Figure 3. Drawings of the male of Maldivea complexa n. sp. A) Detail of the anterior end of the male. B) Detail of the amphideal fovea of the male. C) Detail of the copulatory apparatus and caudal region. Scale bar: A: 10 µm, B: 50 µm.
Historical coral reef benthic cover for the Western Indian Ocean (1970-2008)
<p>Benthic cover data (percent cover) for the Western Indian Ocean. Data have been extracted from published sources through a systematic literature review, and compiled with previously unpublished datasets. Data was collected prior to 2008 through quantitative coral reef surveys (e.g., Line or Point-Intercept-Transects, photo or visual quadrats) and visual estimates. Particular attention was given to compiling live hard coral cover and macro and turf algae cover data due to their importance as principal measures of coral reef health. Data are from 10 Western Indian Ocean countries and territories: Kenya, Seychelles, Tanzania, Mozambique, Comoros, Mayotte, Madagascar, Reunion, Mauritius and South Africa.</p> <p>Data were extracted from grey literature (technical reports, books, and book chapters), scientific journal papers (articles and reviews) and project reports. </p> <p>Data were generally reported as summarised mean cover values at a monitoring site level. Data aggregated at broader geographic scales was also included (e.g., “northern Kenya”), or other classes (e.g., “unspecified 9 sites (protected)”). </p> <p>Data found in more than one publication were identified and cross-referenced to the other sources. Locations were ordered hierarchically by Country, Sector, Site and Station. In some cases, the same site or station may have multiple entries for the same year because of surveys of different reef zones or depths, and this information is provided to enable a distinction to be made. The exact date or year of survey was not clear in a few publications, and this has been recorded in the <em>Year</em> column as either combined years, e.g. 1998/99, general time period, e.g. mid - 1990s, or if no information is available, as ‘n.d’.</p>
Deep-SDMs in the open oceans - OUTPUTS - Western Indian Ocean
<p>This repository contains distribution maps for the Western Indian Ocean on 53 dates in 2021, as described in the preprint <a href="https://doi.org/10.1101/2023.08.11.551418">Predicting species distributions in the open oceans with convolutional neural networks.</a></p> <p>This deposit contains:</p> <p>1. A <em>00-predictions.csv</em> file containing the raw outputs of the model.</p> <p>2. Distribution maps as animated gifs.</p> <p>3. Distribution maps as GeoTIFF rasters (zipped in <em>01-geotiff-rasters.zip</em>).</p> <p>Each of these elements can be downloaded separately by scrolling to the <em>Files</em> section.</p>
Figure 6 in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 6. – Standard length against four morphometric characters, head length against anal-fin spine height, and total number of gill rakers against caudal-peduncle length in Parupeneus jansenii vs. P. nansen. In P. jansenii the two size groups are distinguished.
Figure 2 in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 2. – Standard length against total length in Parupeneus jansenii; greydotted lines: reference lines for TL and the determined SL for the Myanmar specimen; black dashed lines: reference lines for delimitation of small- and large-sized fish
Figure 3 in Parabothus rotundifrons (Pleuronectiformes: Bothidae), a new bothid flatfish from Saya de Malha Bank (Indian Ocean)
Figure 3. – Diagrammatic illustration of head of Parabothus rotundifrons sp. nov. A: Holotype, male, 108.5 mm SL ZIN 49152; B: P. taiwanensis, male, 108.5 mm SL, MNHN 2013-0329.
Figure 1. – Schematic illustrations showing main cephalic free neuromast patterns. A in Evidence of two species currently under the name of Eleotris fusca (Gobioidei: Eleotridae) in the Indian Ocean
Figure 1. – Schematic illustrations showing main cephalic free neuromast patterns. A: Eleotris acanthopoma (Holotype, RMNH 25934); B: Eleotris niger (Syntype, MNHN A.1578) synonym of E. fusca; C: Eleotris melanosoma (Syntype, RMNH 4815).
Figure 6 in The benthic and pelagic phases of Muraenolepis marmorata (Muraenolepididae) off the Kerguelen Plateau (Indian sector of the Southern Ocean)
Figure 6. – Length Frequency Distributions (LFD) of Muraenolepis marmorata fingerlings during early (January 2014, MYCTO 3 D) or late summer (March 1995, IPEKER) pelagic surveys. Photo: Muraenolepis marmorata, fingerling TL 35 mm (photo ©MYCTO 3D).
Figure 5 in The benthic and pelagic phases of Muraenolepis marmorata (Muraenolepididae) off the Kerguelen Plateau (Indian sector of the Southern Ocean)
Figure 5. – Depth range occurrence of Muraenolepis marmorata by-catch in the total bottom longlines deployed in the fishery (2006-2016) off the Kerguelen Islands (500-2000 m).
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)
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.