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9 results for “Boleophthalmus”
Fig. 3 in Boleophthalmus dussumieri Valenciennes 1837
Fig. 3. Averaged models of pathogenic bacterial abundances on filth fly surfaces as a result of scavenging activity by vertebrates: (a) Shiga toxinproducing Escherichia coli (STEC) abundance against days to carcass removal by vertebrate scavengers (TIME); (b) STEC abundance against distance from forest edge (FOREST); (c) Salmonella abundance against days to carcass removal by vertebrate scavengers (TIME). Due to interactive effects in averaged model for STEC, curves were plotted by controlling the other predictor at mean values and at mean values ± 1 SD.
Fig. 2 in Boleophthalmus dussumieri Valenciennes 1837
Fig. 2. Beanplot for occurrence of the three common scavenger species (water monitor Varanus salvator, dog Canis lupus familiaris, and Malay civet Viverra tangalunga) recorded on camera traps in oil palm plantations with reference to (a) distance from forest edge or (b) distance from human settlements, where the width of the beanplot denotes the frequency of occurrence at the respective distances. Horizontal black solid bar is the mean distance for individual species; horizontal dashed line is the overall mean distance for all three species; horizonal white bars are observations.
Fig. 1 in Boleophthalmus dussumieri Valenciennes 1837
Fig. 1. Locations of the three oil palm plantations, denoted by solid squares, used in this study on how vertebrate scavengers affect pathogenic bacterial abundances on flies within the Malaysian state of Sabah on the northern tip of Borneo island. A: Luangmanis and Moynod estates (Sandakan); B: Danum Palm and Kebun Jaya estates (Ulu Segamat); C: Table estate (Tawau).
Fig. 6 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 6. Multivariate morphological analyses of the three species of Boleophthalmus without notched dentary teeth, supporting the separation of the examined specimens in 3 morphologically distinct groups. A: PCO scatter plot of meristic characters, after logarithmic transformation. The two coordinate axes Coord 1 and Coord 2 explained the highest percentage of total variance (in parentheses); closed lined (convex hulls) delimit clusters of specimens of the same species. B: PCA distance biplot of morphometric characters after Darroch & Mosimann transformation (1985). The two principal component axes PC1 and PC2 explained the highest percentage of total variance (in parentheses); closed lines (convex hulls) delimit clusters of specimens of the same species; the variables are projected onto the scattergram as vectors, graphically visualising their PCA loadings, or the degree they enter into the principal components. PLVL separates caer from bird and poti, while D1BL separates bird from caer and poti. bird = B. birdsongi (n = 11); caer = B. caeruleomaculatus (n = 4); poti = B. poti (n = 10). See Tables 3, 4 for the dataset.
Fig. 5 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 5. Shape and colouration of freshly dead species of Boleophthalmus with un-notched dentary teeth: A, female of B. birdsongi (95 mm; ZRC 52250); B, female of B. caeruleomaculatus (106 mm; MSNG 54689); and C, paratype, male of B. poti (83.4 mm; USNM 40566). Scale bars = 10 mm.
Fig. 3. Boleophthalmus poti, BMNH 2011.1.27.1 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 3. Boleophthalmus poti, BMNH 2011.1.27.1. Lateral view of the suspensorium. Abbreviations: ap = autopalatine; d = dentary; ep = ectopterygoid; hm = hyomandibular; io = interopercle; m = maxilla; mp = metapterygoid; op = opercle; pm = premaxilla; po = preopercle; pp = ascending processes of the premaxilla; q = quadrate; sop = subopercle; sp = symplectic; st = symphyseal tooth. Scale bar = 1 mm. the original image was reversed horizontally.
Fig. 4 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 4. Geographical distribution of the species of Boleophthalmus: point data; bird = Boleophthalmus birdsongi; bodd = Boleophthalmus boddarti; caer = Boleophthalmus caeruleomaculatus; duss = Boleophthalmus dussumieri; pect = Boleophthalmus pectinirostris; poti = Boleophthalmus poti. Data from Murdy, 1989; Swennen et al., 1995; Rainboth, 1996; Takita et al., 1999; Nakabo, 2002; Nanami & Takegaki, 2005; Chen et al., 2007; Froese & Pauly, 2007; Ocean Biogeographic Information System, 2007; Baeck et al., 2008; Global Biodiversity Information Facility, 2008; Larson et al., 2008; Polgar & Crosa, 2009. Data in online databases were verified by comparison with museum material and published references.
Fig. 2 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 2. Boleophthalmus poti: A, holotype, MSNG 56891; B, paratype, preserved specimen, female (108.2 mm) (BMNH 2011.1.27.1); C, an individual in its natural habitat, on the mud banks of Wapi Creek, Purutu Island, Fly River delta. Scale bars =10 mm.
Fig. 1 in A New Species Of Mudskipper, Boleophthalmus Poti (Teleostei: Gobiidae: Oxudercinae) From The Gulf Of Papua, Papua New Guinea, And A Key To The Genus
Fig. 1. Diagram of a mudskipper with 54 lateral scale rows (head to the left); 1 = scale overlapping the pectoral girdle (shaded); hc = scale column immediately before or overlapping with the hypural crease (shaded); scale rows (Hubbs & Lagler, 2004) are traced out at intervals of 10 rows; note that the rows can be detected and followed both above and below the lateral midline. For a comparison, Murdy's (1989) count of longitudinal scales (~70 scales are crossed by the dashed line) is also illustrated.
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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)
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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.