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528 results for “killifish”
FIGURE 5 in Nothobranchius balamaensis (Cyprinodontiformes: Nothobranchiidae), a new species of annual killifish from northern Mozambique
FIGURE 5. Type localities of Nothobranchius species occurring in northern Mozambique and neighbouring regions. Red elipse, N. balamaensis; yellow lozenge, N. kirki; orange four pointed star, N. wattersi; light blue dot, N. niassa; green square, N. makondorum; purple arrow, N. hengstleri; blue five pointed star, N. krammeri.
FIGURE 2 in Nothobranchius balamaensis (Cyprinodontiformes: Nothobranchiidae), a new species of annual killifish from northern Mozambique
FIGURE 2. Nothobranchius balamaensis, preserved specimens: A, male, holotype, 29.8 mm SL (SAIAB 190261); B, female, paratype, 29.0 mm SL (SAIAB 190255).
FIGURE 1 in Nothobranchius balamaensis (Cyprinodontiformes: Nothobranchiidae), a new species of annual killifish from northern Mozambique
FIGURE 1. The results of the maximum likelihood analysis from the combined data set of five gene fragments. Node support as bootstrap values is indicated at the respective nodes. Only node support greater than 50% is indicated, if less it was omitted. Subgeneric classification and clades are indicated to the right of the species names. Species occurring in northern Mozambique are indicated with black stars following the species names.
FIGURE 7 in Nothobranchius balamaensis (Cyprinodontiformes: Nothobranchiidae), a new species of annual killifish from northern Mozambique
FIGURE 7. Adult male wild-caught live specimens of Nothobranchius kirki and N. wattersi from Malawi: A and B. N. kirki, Lake Chiuta area (field code MW 88-9); C. N. wattersi, type area near Salima, northern population group (field code MW 92-5); D. N. wattersi, Chia Lagoon area, northern population group (field code MW 92-4); E. N. wattersi, Golomoti-Chinganji area, middle population group (field code MW 88-13); F. N. wattersi, Hoba-upper Shire River area, southern population group (field code MZMW 09-6). Photographs by B.R. Watters.
FIGURE 6 in Nothobranchius balamaensis (Cyprinodontiformes: Nothobranchiidae), a new species of annual killifish from northern Mozambique
FIGURE 6. Type locality of N. balamaensis, a seasonal pool in the Montepuez River system, Balama region, Cabo Delgado Province, northern Mozambique. Photographed on 5 March, 2013.
FIGURE 5 in Observations on growth rate and allometry in the seasonal predatory killifish Nothobranchius ocellatus (Teleostei: Cyprinodontiformes)
FIGURE 5. Graphical representation of the most important allometric growth changes in morphometric parameters as measured for the three subject specimens of Nothobranchius ocellatus, through the sub-adult to young sexually mature phases, at 37, 56 and 84 days after hatching. Data from Table 2.
FIGURE 6 in Observations on growth rate and allometry in the seasonal predatory killifish Nothobranchius ocellatus (Teleostei: Cyprinodontiformes)
FIGURE 6. Comparative morphometry of growth in selected specimens of Nothobranchius ocellatus; a, Score plot of principal component analysis (PCA) on morphometric characters; first vs. second principal components: female #1 (diamond), male #2 (circle), male #4 (inverted triangle); b, loading plot of PCA for female #1; c, loading plot of PCA for male #2; d, loading plot of PCA for male #4. Most important loadings with absolute magnitude greater than 0.4 appear in bold. Key to character abbreviations: TL, Total length; BD, Body depth at pelvic–fin origin; HL, Head length; PA, Preanal length; PD, Predorsal length; PV, Prepelvic length; PP, Prepectoral length; CPL, Caudal peduncle length; CPD, Caudal peduncle depth; DFB, Dorsal-fin base length; AFB, Anal-fin base length; CF, Caudal-fin length; HD, Head depth; PO, Postorbital length; SD, Suborbital depth; ED, Eye diameter; SEL, Snout to eye end length; SL, Snout length.
FIGURE 4 in Observations on growth rate and allometry in the seasonal predatory killifish Nothobranchius ocellatus (Teleostei: Cyprinodontiformes)
FIGURE 4. Sets of photographs (A, B and C) showing the development of sex distinction as reflected in changes in colour pattern, and some general morphological features, in the study specimens of Nothobranchius ocellatus at 37, 58 and 84 days age.
FIGURE 2 in Observations on growth rate and allometry in the seasonal predatory killifish Nothobranchius ocellatus (Teleostei: Cyprinodontiformes)
FIGURE 2. Illustration of the method used for measuring the total length (TL) of Nothobranchius ocellatus specimens on a weekly basis. Specimens were placed in very shallow water in a clear, flat-bottomed glass dish (of a size suited to the size of the specimen) over graph paper and photographed from above. A straight line was then digitally drawn from the terminus of the upper jaw to the posterior margin of the caudal fin. The line was then rotated into alignment with the grid of the graph paper in order to closely approximate TL.
FIGURE 1 in Observations on growth rate and allometry in the seasonal predatory killifish Nothobranchius ocellatus (Teleostei: Cyprinodontiformes)
FIGURE 1. Nothobranchius ocellatus: upper, wild-caught male from neotype locality (field code: Kikongono TAN 95-9); lower, wild-caught female (field code: Kitonga south TAN 97-36); Rufiji River drainage; central coastal region, Tanzania.
FIGURE 7. Aphanius stoliczkanus, FSJF 3670, female 28 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 7. Aphanius stoliczkanus, FSJF 3670, female 28 mm SL, male, 30 mm SL; India: Narara-Salt Pans.
FIGURE 4 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 4. Aphanius kruppi, FSJF DNA-2588, female, 45 mm SL, male, 34 mm SL; Oman: spring in Al Mudayrib.
FIGURE 9 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 9. Aphanius cf. dispar, FSJF 3487, female, 43 mm SL, male, 37 mm SL; Israel: salt marshes at Atlit.
FIGURE 1 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 1. Maximum likelihood estimation of the phylogenetic relationships based on the mitochondrial COI barcode region (Kimura 2-parameter model, discrete Gamma distribution for rate differences with 5 categories +G parameter = 0.3241. Nucleotide positions with less than 95 % site coverage were eliminated resulting in 581 analysed positions. Numbers of major nodes indicate bootstrap values from 1000 pseudoreplicates from the ML, NJ and MP method. Except to outgroup, the tree is drawn to scale with branch lengths depicting number of substitutions per site. Solid black bar shows the delimitation result using the PTP approach (eleven groups), dashed line the result based on the mPTP model (two groups).
FIGURE 3. Aphanius kruppi, FSJF 3771 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 3. Aphanius kruppi, FSJF 3771, paratypes, left side from top: males 28, 37 and 44 mm SL; right side from top: females, 23, 35 and 49 mm SL; Oman: spring in Al Mudayrib.
FIGURE 6 in Aphanius kruppi, a new killifish from Oman with comments on the A. dispar species group (Cyprinodontiformes: Aphaniidae)
FIGURE 6. Aphanius cf. kruppi, not preserved, female, about 40 mm SL, male, about 45 mm SL; Oman: Al-Hoota. Photo by Barbara Nicca (female), Kai Borkenhagen (male).
FIGURE 2. Diagnostic characters for separating Aplocheilus andamanicus and A in The identity of Aplocheilus andamanicus (Köhler, 1906) (Teleostei: Cyprinodontiformes), an endemic Killifish from the Andaman Islands, with notes on Odontopsis armata van Hasselt
FIGURE 2. Diagnostic characters for separating Aplocheilus andamanicus and A. panchax. (A) One of the original syntypes of Aplocheilus andamanicus collected by Day (1878) from the Andamans, now lectotype, BMNH 1870.5.18.34-36, 74.8 mm SL, Port Blair, (B) topotypes of A. andamanicus, male, BNHS FWF 563, 65.2 mm SL, collected from south Andaman Island, (C) topotypes of A. panchax, male, BNHS FWF 569, 28.3 mm SL, collected from West Bengal, India. See-through vertical lines represent the relative positions of the pectoral-fin origin and the posterior extremity of dorsal, pelvic and anal fins.
FIGURE 6 in The identity of Aplocheilus andamanicus (Köhler, 1906) (Teleostei: Cyprinodontiformes), an endemic Killifish from the Andaman Islands, with notes on Odontopsis armata van Hasselt
FIGURE 6. Intra- and inter-species genetic distances for species in the 'Aplocheilus panchax complex'. There is a clear genetic gap, spanning from 2.5 to 6.6%, between the maximum intra-species distance and minimum inter-species distance, indicating that the three species are genetically distinct from each other. Black lines within the boxes indicate the medians, the red line the mean; box limits indicate the 25th and 75th percentiles; whiskers extend 1.5 times the interquartile range from the 25th and 75th percentiles, outliers are represented by solid circles.
FIGURE 1 in The identity of Aplocheilus andamanicus (Köhler, 1906) (Teleostei: Cyprinodontiformes), an endemic Killifish from the Andaman Islands, with notes on Odontopsis armata van Hasselt
FIGURE 1. Topotypes of Aplocheilus andamanicus and A. panchax in life. (A) Aplocheilus andamanicus, male, BNHS FWF 563, 65.2 mm SL, (B) A. andamanicus female, BNHS FWF 562, 65.0 mm SL, (C) A. andamanicus, female, BNHS FWF 564, 30.8 mm SL, and (D) A. panchax, male, BNHS FWF 569, 28.3 mm SL.
FIGURE 7 in The identity of Aplocheilus andamanicus (Köhler, 1906) (Teleostei: Cyprinodontiformes), an endemic Killifish from the Andaman Islands, with notes on Odontopsis armata van Hasselt
FIGURE 7. Aplocheilus armatus male (A) and female (B) from Singapore, Sungai Poyan. Photo: Heok Hui Tan.
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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.