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Figure 6 in Macrozoobenthic resources use by teleosts in the Gironde estuary
Figure 6. – Spatial variation of diet (%N of prey phylum in the composition of diet) of Dicentrarchus punctatus, Pomatoschistus minutus, P. microps, Platichthys flesus and Solea solea (left) and that of the potential preys available in the macrozoobenthos (%N of phylum abundance at the respective stations) (right). "n.i" means "not identified". Caution: the abundance of mysids (hyperbenthic taxa) was not assessed in the intertidal area because sampling was performed at low tide.
Figure 5 in Macrozoobenthic resources use by teleosts in the Gironde estuary
Figure 5. – Dendrogram obtained according to Bray-Curtis similarity from cluster analysis of the diet composition (based on numerical percentages %N of the prey taxa consumed) of Pomatoschistus minutus, Dicentrarchus punctatus, Solea solea, Pomatoschistus microps and Platichthys flesus from the Gironde estuary. The red line indicates the threshold used by SIMPROF to separate the teleosts with similarities in diet. Pie charts on the right show the main prey taxa that contributed to the diet of each teleost species (% N). Cut off for low contributions: 90%.
Figure 1 in Macrozoobenthic resources use by teleosts in the Gironde estuary
Figure 1. – Location of the sampling stations of macrozoobenthos and teleosts in the Gironde estuary. Letters indicate the codes of the sampling stations; Intertidal stations: R = Richard, CD = Chant Dorat, M = Mortagne, StC = St Christoly, StE = St Estèphe, IM = Île Nouvelle, L = Lamarque; Subtidal stations: AvS = Aval Saintonge, AvC = Aval Centre, AvM = Aval Médoc, MaS = Maubert Saintonge, MaC = Maubert Centre, MaM = Maubert Médoc, CoS = Conac Saintonge, CoC = Conac Centre, CoM = Conac Médoc, CeS = Centrale Saintonge, CeC = Centrale Centre, CeM = Centrale Médoc, IS = Les Îles Saintonge, IC = Les Îles Centre, IM = Les Îles Médoc, LS = Lamarque Saintonge, LM = Lamarque Médoc. Main towns of the estuary are provided in the map as landmarks and are represented with black dots. 'CNPE' means 'Centre Nucléaire de Production d'Électricité'.
Figure 4 in Macrozoobenthic resources use by teleosts in the Gironde estuary
Figure 4. – Cumulative prey curves for Solea solea (n = 32), Platichthys flesus (n = 26), Dicentrarchus punctatus (n = 69), Pomatoschistus minutus (n = 220) and Pomatoschistus microps (n = 40) (preys identified to the lowest taxonomic level possible).
Supplementary materials for paper "Untangling the drivers of change and policy impact in coastal wetland area in the Yangtze Estuary using causal inference"
<h1>Annual coastal wetland vegetation maps of the Yangtze Estuary from 1986 to 2021</h1> <p> </p> <h2><strong>Basic information</strong></h2> <p>Using remotely sensed data from Google Earth Engine, we generated a 30 m resolution annual dataset of Yangtze Estuary wetland vegetation for the period 1986-2021. This dataset includes three dominant vegetation types (<em>Spartina alterniflora</em>, <em>Phragmites australis</em>, and <em>Scirpus mariqueter</em>) and tidal flat areas. We combined fieldwork data and high-resolution images for accuracy assessment, achieving an overall accuracy exceeding 80% in different years. Detailed information about the mapping methods can be found in our paper and accompanying supplementary materials.</p> <h2><strong>Notes:</strong></h2> <p>In the image classification scheme: 0-Tidal flats, 1-<em>Spartina alterniflora, </em>2-<em>Phragmites australis, </em>3-<em>Scirpus mariqueter.</em></p> <h2><strong>Usage Policy:</strong></h2> <p>This dataset is a collaborative effort between East China Normal University and Deakin University. If you plan to use our data in <strong>a scientific analysis paper or other research work</strong>, we strongly recommend contacting us in advance to seek our opinions, <strong>citing the unique DOI of this dataset</strong>, and considering acknowledging our contributions or including us as co-authors.</p>
Linked collectors and determiners for: A new record of Avrainvillea cf. erecta (Berkeley) A. Gepp & E. S. Gepp (Bryopsidales, Chlorophyta) from urbanized estuaries in the Hawaiian Islands.
Natural history specimen data linked to collectors and determiners held within, "A new record of Avrainvillea cf. erecta (Berkeley) A. Gepp & E. S. Gepp (Bryopsidales, Chlorophyta) from urbanized estuaries in the Hawaiian Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/58fffbfe-5b97-4e30-bebc-a7bc4bdc802f">https://bionomia.net/dataset/58fffbfe-5b97-4e30-bebc-a7bc4bdc802f</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/58fffbfe-5b97-4e30-bebc-a7bc4bdc802f">https://gbif.org/dataset/58fffbfe-5b97-4e30-bebc-a7bc4bdc802f</a>. Formatted as a Frictionless Data package.
Fig. 2 in Feeding Biology Of Eel Catfish Plotosus Canius Hamilton In A Malaysian Mangrove Estuary And Mudflat
Fig. 2. PCA biplots based on composition of food items (percentage volume) consumed by P. canius in Sementa Kecil estuary (K) and Sungai Buloh mudflat (B). Dotted arrows denote major food items: Sesar = Sesarminae, Rhizo = Rhizopinae, Bra = other brachyurans, Prawn = prawns and shrimps, Amphi = hyperiid amphipods, Iso = Isopoda, Crust = miscellaneous crustaceans, Poly = Polychaeta, Gas = Gastropoda, Bv = Bivalvia, Pisces = Pisces, Detri = mangrove detritus, Others = others. Symbols denote size classes as in Table 2: Sungai Buloh mudflat: B1 to B11 size classes from 41–480 mm at 40 mm intervals. Sungai Sementa Kecil: K1 to K12 size classes from 41–480 mm at 40 mm intervals. Ontogenetic shift in food composition is indicated by solid thin arrows.
Fig. 1 in Feeding Biology Of Eel Catfish Plotosus Canius Hamilton In A Malaysian Mangrove Estuary And Mudflat
Fig. 1. The mangrove estuary of Sungai Sementa Kecil (K) and a mudflat at Sungai Buloh (B) in Selangor, Malaysia.
FIG. 3. — Epiphanes desmeti n in On some rare and new species of rotifers (Digononta, Bdelloida; Monogononta, Ploima and Flosculariaceae) in the Kaw River estuary (French Guiana)
FIG. 3. — Epiphanes desmeti n. sp.: A, dorsal view; B, ventral view; C, corona; D, trophi. Abbreviations: lt, lateral tentacles; mh, medial hump; st, stout toes. Scale bars: A, B, 50 µm; D, 10 µm.
FIG. 1 in On some rare and new species of rotifers (Digononta, Bdelloida; Monogononta, Ploima and Flosculariaceae) in the Kaw River estuary (French Guiana)
FIG. 1. — Location of the three sampling stations of the Kaw River estuary (French Guiana). Abbreviations: E, estuary; M, mangrove creek; V, mud flat.
FIG. 4. — Floscularia curvicornis n in On some rare and new species of rotifers (Digononta, Bdelloida; Monogononta, Ploima and Flosculariaceae) in the Kaw River estuary (French Guiana)
FIG. 4. — Floscularia curvicornis n. sp.: A, lateral view; B, ventral view; C, head; D, trophi. Abbreviations: ca, curled antenna; f, foot; nh, neck hooks. Scale bars: A, B, 50 µm; D, 10 µm.
FIG. 6 in On some rare and new species of rotifers (Digononta, Bdelloida; Monogononta, Ploima and Flosculariaceae) in the Kaw River estuary (French Guiana)
FIG. 6. — Synchaeta arcifera Xu, 1998: A, dorsal view; B, C, contracted specimens, lateral view; D, specimen with extruded foot; E, trophi, dorsal view. Abbreviations: a, horn-like appendage; e, conical extension of the integument; f, foot; fu, fulcrum; h, hook; lt, lateral tentacle; m, manubrium; r, ramus; t, toe; u; uncus. Scale bars: A-D, 50 µm; E, 15 µm.
Fig. 4 in Reproductive biology of Plagioscion magdalenae (Teleostei: Sciaenidae) (Steindachner, 1878) in the bay of Marajo, Amazon Estuary, Brazil
Fig. 4. Mean values of ∆RGS (a) and ∆K (b) and frequency of bi-monthly percentage of the maturational stages for the females (c) of Plagioscion magdalenae in the bay of Marajo.
Fig. 3 in Reproductive biology of Plagioscion magdalenae (Teleostei: Sciaenidae) (Steindachner, 1878) in the bay of Marajo, Amazon Estuary, Brazil
Fig. 3. Photomicrographs of Plagioscion magdalenae ovarian tissue at various maturity stages. a) Immature, HE, 100x. b) Maturing, HE, 100x. c) Mature, HE, 40x. d) Spawned/spent, HE, 40x. I. chromatin nucleolus (stage I); II. perinucleolar stage (stage II); III. cortical alveoli oocytes (stage III); IV. full vitellogenic (stage IV); pf. postovulatory follicles; at. atretic follicles.
Fig. 5 in Environmental influences on the spatial and temporal distribution of the puffer fish Sphoeroides greeleyi and Sphoeroides testudineus in a Brazilian subtropical estuary
Fig. 5. Monthly distribution of juvenile and adult individuals of S. greeleyi (a) and S. testudineus (b) on the north-south axis of the estuarine complex of Paranaguá, Paraná State. The numbers indicated above the bars refer to absolute frequency.
Fig. 1 in Environmental influences on the spatial and temporal distribution of the puffer fish Sphoeroides greeleyi and Sphoeroides testudineus in a Brazilian subtropical estuary
Fig. 1. Map of the estuarine complex of Paranaguá, northern shore of the State of Paraná, Brazil, locating the sampling sites.
Fig. 2 in Environmental influences on the spatial and temporal distribution of the puffer fish Sphoeroides greeleyi and Sphoeroides testudineus in a Brazilian subtropical estuary
Fig. 2. Graphic representation of the Principal Component Analysis (PCA) conducted for the sampling sites and for the seasons of the year on the north-south axis of the estuarine complex of Paranaguá, Paraná State.
Fig. 5 in Growth of the Silverside Atherinella brasiliensis in Tramandaí Estuary, Southern Brazil (Actinopterygii: Atherinopsidae)
Fig. 5. Estimated von Bertalanffy growth curves for the silverside Atherinella brasiliensis in Tramandaí Estuary, Southern Brazil.
Fig. 3. A in Scientific Note Schooling behavior of Mugil curema (Perciformes: Mugilidae) in an estuary in southeastern Brazil
Fig. 3. A school of Mugil curema, in a fast movement pattern, with polarized individuals (observed from above).
Fig. 2 in Scientific Note Schooling behavior of Mugil curema (Perciformes: Mugilidae) in an estuary in southeastern Brazil
Fig. 2. The distribution of individuals of Mugil curema in the water column while feeding, in a slow-movement school pattern, with polarized individuals (viewed as a cross-section of the stream).
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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.
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.