Results 31 to 40 of about 706 (176)

Osteodiscus abyssicola, a new snailfish (Cottoidei: Liparidae) collected off the Pacific coast of northern Japan [PDF]

open access: yes, 2021
Murasaki, Kenta, Kai, Yoshiaki, Endo, Hiromitsu, Fukui, Atsushi (2021): Osteodiscus abyssicola, a new snailfish (Cottoidei: Liparidae) collected off the Pacific coast of northern Japan.
Murasaki, Kenta   +3 more
core   +1 more source

Fig. 5 in Redescription of the Snailfish Careproctus rhodomelas (Cottoidei: Liparidae), with Ontogenetic and Distributional Notes [PDF]

open access: yes, 2021
Fig. 5. Distribution of specimens of Careproctus rhodomelas examined in this study.Published as part of Murasaki, Kenta, Kai, Yoshiaki, Endo, Hiromitsu & Fukui, Atsushi, 2021, Redescription of the Snailfish Careproctus rhodomelas (Cottoidei: Liparidae ...
Murasaki, Kenta   +3 more
core   +1 more source

Fig. 1 in Redescription of the Snailfish Careproctus rhodomelas (Cottoidei: Liparidae), with Ontogenetic and Distributional Notes [PDF]

open access: yes, 2021
Fig. 1. Fresh specimens of Careproctus rhodomelas. A: MSM-20-65, 75.5 mm SL, male; B: MSM-20-63, 40.2 mm SL, immature female; C: MSM-20-64, 30.0 mm SL, immature.Published as part of Murasaki, Kenta, Kai, Yoshiaki, Endo, Hiromitsu & Fukui, Atsushi, 2021 ...
Murasaki, Kenta   +3 more
core   +1 more source

Massive Loss of Olfactory Receptors But Not Trace Amine-Associated Receptors in the World's Deepest-Living Fish (Pseudoliparis swirei). [PDF]

open access: yesGenes (Basel), 2019
Olfactory receptor repertoires show highly dynamic evolution associated with ecological adaptations in different species. The Mariana snailfish (Pseudoliparis swirei) living below a depth of 6000 m in the Mariana Trench evolved degraded vision and ...
Jiang H, Du K, Gan X, Yang L, He S.
europepmc   +2 more sources

FIGURE 2 in Osteodiscus abyssicola, a new snailfish (Cottoidei: Liparidae) collected off the Pacific coast of northern Japan [PDF]

open access: yes, 2021
FIGURE 2. Teeth on right side of premaxilla (A) and ventral view of head and abdominal region (B) of Osteodiscus abyssicola sp. nov., holotype, NSMT-P 109986, 94.7 mm SL.Published as part of Murasaki, Kenta, Kai, Yoshiaki, Endo, Hiromitsu & Fukui ...
Murasaki, Kenta   +3 more
core   +1 more source

On the Success of the Hadal Snailfishes [PDF]

open access: yesIntegrative Organismal Biology, 2019
SynopsisDeep-sea trenches, depths 6000–11,000 m, are characterized by high pressures, low temperatures, and absence of sunlight. These features make up the majority of the deepest marine habitat—the hadal zone—home to distinct communities from those in the surrounding abyssal plains.
openaire   +2 more sources

A revision of the abandoned snailfish genus Menziesichthys with description of a new species (Teleostei, Scorpaeniformes, Liparidae) [PDF]

open access: yesTravaux du Muséum National d’Histoire Naturelle “Grigore Antipa”, 2020
The genus Menziesichthys is revised and re-diagnosed, its type-species, M. bacescui, is redescribed and a new species is described. Menziesichthys shares intermediate morphological characters between the genera Psednos and Rhodichthys.
Artem M. Prokofiev, Alexandru Iftime
doaj   +3 more sources

Genome assembly of Mariana hadal snailfish [PDF]

open access: yes, 2019
The genome assembly of Mariana hadal snailfish.The data of "https://www.nature.com/articles/s41559-019-0864-8"Morphology and genome of a snailfish from the Mariana Trench provide insights into deep-sea ...
Kun Wang (7355345)
core   +1 more source

Redescription of the Snailfish Careproctus rhodomelas (Cottoidei: Liparidae), with Ontogenetic and Distributional Notes

open access: yesSpecies Diversity, 2021
Murasaki, Kenta, Kai, Yoshiaki, Endo, Hiromitsu, Fukui, Atsushi (2021): Redescription of the Snailfish Careproctus rhodomelas (Cottoidei: Liparidae), with Ontogenetic and Distributional Notes. Species Diversity 26 (1): 23-29, DOI: 10.12782/specdiv.26.23, URL: http://dx.doi.org/10.12782/specdiv.26 ...
Murasaki, Kenta   +3 more
openaire   +2 more sources

Distribution, composition and functions of gelatinous tissues in deep-sea fishes [PDF]

open access: yesRoyal Society Open Science, 2017
Many deep-sea fishes have a gelatinous layer, or subdermal extracellular matrix, below the skin or around the spine. We document the distribution of gelatinous tissues across fish families (approx.
Mackenzie E. Gerringer   +5 more
doaj   +1 more source

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