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649 results for “Pisces”
Dataset and code of NEMO-PISCES-APECOSM
<p>This repository makes available the model output as well as the code used in the manuscript entitled "Evaluating the potential impacts of the diurnal vertical migration by marine organisms on marine biogeochemistry" by Aumont et al. Additional files are required to run the model that can be obtained from the official NEMO website or from Olivier Aumont. The output files are in netcdf formats and the variables are documented as metadata in the files. Any supplementary informations can be obtained by contacting Olivier Aumont. Furthermore, the data files used in the figures are provided as ASCII files. data_migrant_pub.csv includes the proportion of migratory organisms and active_flux.txt corresponds to the ratio of active flux over passive flux.</p>
Fig. 4 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 4. Distribution of Echiodon prionodon. The red circle depicts the locality where the holotype was caught.
Fig. 2 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 2. Echiodon prionodon sp. nov., left lateral view of the left premaxillary fang showing the posterior serrated margin.
Figure 2 in Homing behaviour of rock pool blenny Parablennius parvicornis (Pisces: Blenniidae)
Figure 2. Logistic model for the probability of returning to the home pool [Prob(return home)] as a function of distance and current direction. Note that for all distances the probability of returning against the current (A) is higher than when the current is favourable (F).
MCMC chains for distance and structural parameters of Pisces A&B dwarf galaxies
<p>These are Markov Chain Monte Carlo chains for Hubble Space Telescope observations of the dwarf galaxies Pisces A&B. More details on how they are derived will be provided in a forthcoming ApJ paper.</p>
FIG. 1. — A in From fin rays to DNA: supplementary morphological and molecular data to identify Mormyrus subundulatus Roberts, 1989 (Pisces: Mormyridae) from the Bandama River in Côte d'Ivoire
FIG. 1. — A, radiography of the paratype SU 63507 Mormyrus subundulatus Roberts, 1989 from the Tano River (© California Academy of Sciences, Dept. of Ichthyology); B, specimen number MNHN-IC-2018-0558 caught in the Bandama River near the type locality; C, specimen number MNHN-IC-2018-0559. Scale bar: A, 10 cm.
FIG. 4. — A in From fin rays to DNA: supplementary morphological and molecular data to identify Mormyrus subundulatus Roberts, 1989 (Pisces: Mormyridae) from the Bandama River in Côte d'Ivoire
FIG. 4. — A, Distribution of Mormyrus subundulatus Roberts, 1989 according to available data; B, the Bandama River in the type locality is impacted by the Taabo dam just upstream; C, preserved stream habitat downstream the type locality where M. subundulatus still lives. This part of the River will be lost after the impoundment of another big dam, planned for the next few years; D, aerial view (GoogleEarth) of the Tano River in the type locality (red dot); E, upstream, showing the important buildup of soil and mud due to mining activities. The Tano River does not seem to host suitable habitat for M. subundulatus anymore, at least around the historical locality.
FIG. 3 in From fin rays to DNA: supplementary morphological and molecular data to identify Mormyrus subundulatus Roberts, 1989 (Pisces: Mormyridae) from the Bandama River in Côte d'Ivoire
FIG. 3. — Distribution of the dorsal fin rays counts for the specimens of M. subundulatus Roberts, 1989 examined by us (blue bars) and for the specimens of M. rume Valenciennes, 1847 (data from Lévêque and Bigorne, 1985; orange bars). Yellow bars: specimens presumably from the Sassandra River population. (1) position of paratype CAS-SU63507 from the Tano River in Ghana (red bar); (2) position of specimen MNHN-IC-2018-0558, for which genetic data confirms the identification as M. subundulatus.
FIG. 2 in From fin rays to DNA: supplementary morphological and molecular data to identify Mormyrus subundulatus Roberts, 1989 (Pisces: Mormyridae) from the Bandama River in Côte d'Ivoire
FIG. 2. — Bayesian phylogenetic analyses base on Cyt b gene fragment (A) and COI gene fragment (B). Numbers on branch node indicate posterior probability values, only node with posterior probability above 85 are represented. Nodes with probability> 98 are identified with *. Numbers on specimens indicate the GenBank accession number of the sequence or, when many specimens shared the same haplotype, the haplotype names in Table 1.
Fig. 1 in First Records of the Rare Snake Eel Ophichthus exourus (Pisces: Anguilliformes: Ophichthidae) from the Northern Hemisphere
Fig. 1. Fresh specimen of Ophichthus exourus, OCF-P03211, 634 mm TL, off Okinawa Island, Okinawa Prefecture, East China Sea, Japan.
Fig. 2 in First Records of the Rare Snake Eel Ophichthus exourus (Pisces: Anguilliformes: Ophichthidae) from the Northern Hemisphere
Fig. 2. Lateral view of the head (A), and schematic diagram of dentition on upper jaw (left) and lower jaw (right) (B), of Ophichthus exourus, OCF-P03211, 634 mm TL. Dotted circles in (B) represent missing teeth.
Fig. 2 in A New Pygmy Pipehorse (Pisces: Syngnathidae: Idiotropiscis) from Eastern Australia
Fig. 2. Idiotropiscis lumnitzeri, male and female, approximately 45 mm TL, Cronulla, Sydney, New South Wales. Photograph by Matthew Brooke.
Fig. 1. Idiotropiscis lumnitzeri, AMS I.38660-001 in A New Pygmy Pipehorse (Pisces: Syngnathidae: Idiotropiscis) from Eastern Australia
Fig. 1. Idiotropiscis lumnitzeri, AMS I.38660-001, holotype, male, 55 mm TL, Sydney, New South Wales. Photograph by Stuart Humphrey.
Fig. 1. Roa australis n in Description of a New Species of Butterflyfish, Roa australis, from Northwestern Australia (Pisces: Perciformes: Chaetodontidae)
Fig. 1. Roa australis n.sp., holotype, WAM P.26215-001 (112 mm SL) off Port Hedland, Western Australia. Photograph by Barry Hutchins.
Fig. 2 in Description of a New Species of Butterflyfish, Roa australis, from Northwestern Australia (Pisces: Perciformes: Chaetodontidae)
Fig. 2. left to right. Roa modesta. Osezaki, Japan. Depth 20 m. Length 12 cm TL. Photograph by Rudie Kuiter. Roa jayakari. Gulf of Aqaba, Red Sea. Depth 180 m. Photograph by Jürgen Schauer, from submersible. Roa excelsa. BPBM 24754. Length 98 mm SL. Photograph of preserved specimen and colouring by Rudie Kuiter after Allen et al., 1998.
Fig. 4. Hippocampus colemani, this specimen not collected. A in A New Pygmy Seahorse (Pisces: Syngnathidae: Hippocampus) from Lord Howe Island
Fig. 4. Hippocampus colemani, this specimen not collected. A probable male as it appears to have a pouch. Photo by Neville Coleman.
Fig. 1. Hippocampus colemani, holotype AMS I41181-001 in A New Pygmy Seahorse (Pisces: Syngnathidae: Hippocampus) from Lord Howe Island
Fig. 1. Hippocampus colemani, holotype AMS I41181-001 (left) and paratype AMS I41181-002 (right), both female.
Fig. 4 in Length-Weight Relationships And Condition Factors Of The Naleh Fish Barbonymus Gonionotus (Pisces, Cyprinidae) Harvested From Nagan Raya Waters, Indonesia
Fig. 4. Comparison of observed and predicted growth for B. gonionotus males (a) and females (b) sampled during January 2017 to December 2017. Total number of FIsh = 135 females, 626 males. Predicted growth curve for males, y = 0.317x – 20.3 R2 = 0.970, and for females: y = 0.330x – 21.40, R2 = 0.979.
Fig. 3. Length-weight relationship for B in Length-Weight Relationships And Condition Factors Of The Naleh Fish Barbonymus Gonionotus (Pisces, Cyprinidae) Harvested From Nagan Raya Waters, Indonesia
Fig. 3. Length-weight relationship for B. gonionotus males (a) and females (b) sampled from January 2017 to December 2017. Observed growth curve of B. gonionotus males, y = 2.8001x – 10.542, R2 = 0.9022, and females, y= 2.7744x – 10.393, R2= 0.9265.
Model restart file for the PISCES QUOTA P6Z 2DIAZO explicit diazotroph scheme
<p>Model restart file for the PISCES QUOTA P6Z 2DIAZO version which includes 2 explicit diazotroph phytoplankton functional types (<em>Trichodesmium</em> and <em>Crocosphaera</em>). Both diazotrophs include specific thermal performance curves for growth and nitrogen fixation elemental use efficiencies (iron and phosphorus).<br> <br> Model code can be found on GitHub: https://github.com/lewiswrightson/PISCES-QUOTA-P6Z-2DIAZO</p>
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