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69 results for “Cottidae”
Fig. 3 in Redescription of Atopocottus tribranchius (Cottidae) from Japan with comments on the generic diagnosis and distribution
Fig. 3. Dorsal (A) and lateral (B) views of cephalic sensory system and dorsal (C) and lateral (D) views of skull of Atopocottus tribranchius. BSKU 121005, 25.4 mm SL. CA, anterior coronal pore; CP, posterior coronal pore; F, frontal; IO, infraorbitals; IOP, posterior infraorbital pores; L, lacrimal; LLP, lateral-line pores; OCLA, lateral anterior central pore of occipital canal; OCLP, lateral posterior central pore of occipital canal; OCP, posterior medial pore of occipital canal; OLA, lateral anterior pore of occipital canal; OLP, lateral posterior pore of occipital canal; NA, anterior nasal pore; NP, posterior nasal pore; P, parietal; PM, preoperculo-mandibular pores; SO, supraorbital pore; T, postorbital pores. Shaded areas in C, D indicate cephalic pores.
Fig. 6 in Redescription of Atopocottus tribranchius (Cottidae) from Japan with comments on the generic diagnosis and distribution
Fig. 6. Cephalic sensory system of Stlengis osensis in dorsal view. BSKU 107932 (1 of 9 specimens), 39.4 mm SL. SO, supraorbital pore.
Fig. 8 in Redescription of Atopocottus tribranchius (Cottidae) from Japan with comments on the generic diagnosis and distribution
Fig. 8. Distributional map of Atopocottus tribranchius. 1: Akita Prefecture; 2: Yamagata Prefecture; 3: Niigata Prefecture; 4: Kyoto Prefecture; 5: Yamaguchi Prefecture; 6: northern East China Sea; 7: Kochi Prefecture; and 8: Ibaraki Prefecture. Stars indicate localities of present specimens. Akita, Yamagata, and Ibaraki based on literature records.
Fig. 4 in A new species of the genus Cottus (Scorpaeniformes, Cottidae) from the Baltic Sea Basin and its phylogenetic placement
Fig. 4. The result of statistical analysis of morphometric characters of type and non-type specimens of Cottus cyclophthalmus sp. nov. from rivers Krasnaya, Neris, Šerkšnė, Siesartis, and Žeimena (method of principal components was used). The numbers correspond to the places where the sculpins were caught, as indicated on the map (Fig. 1).
Fig. 2 in A new species of the genus Cottus (Scorpaeniformes, Cottidae) from the Baltic Sea Basin and its phylogenetic placement
Fig. 2. Cottus cyclophthalmus sp. nov., holotype, ♂ (ZIN 56687), SL 83.3 mm, TL 99.0 mm, Krasnaya River, near Tokarevka village, 54º24'59.4" N 22º23'50.4" E. 3D scan images. a. Lateral view. b. Dorsal view. c. Ventral view.
Fig. 1 in A new species of the genus Cottus (Scorpaeniformes, Cottidae) from the Baltic Sea Basin and its phylogenetic placement
Fig. 1. The map of sampling sites showing the distribution of Cottus cyclophtalmus sp. nov. The numbers indicate sampling sites in various rivers: 1. Krasnaya River. 2. Neris River. 3. Žeimena River. 4. Siesartis River. 5. Šerkšnė River. The star marks the type locality of the new species; the circles mark sampling sites of non-type specimens; the triangle marks the locality where specimen of Cottus microstomus sp. nov. was caught.
Fig. 3 in A new species of the genus Cottus (Scorpaeniformes, Cottidae) from the Baltic Sea Basin and its phylogenetic placement
Fig. 3. The zoological picture of the holotype of Cottus cyclophthalmus sp. nov. (ZIN 56687), SL 83.3 mm, lateral view.
Fig. 5 in A new species of the genus Cottus (Scorpaeniformes, Cottidae) from the Baltic Sea Basin and its phylogenetic placement
Fig. 5. The result of the DFA carried out on morphometric characters to discriminateCottus cyclophthalmus sp. nov. (green), Cottus gobio Linnaeus, 1758 (blue), and Cottus koshewnikowi Gratzianov, 1907 (red).
Fig. 3 in Redescription of Icelus rastrinoides Taranetz in Schmidt, 1935, a Senior Synonym of Ricuzenius toyamensis Matsubara and Iwai, 1951, with Notes on Geographic Variations (Teleostei: Cottidae)
Fig. 3. Schematic drawing of head spines, cirri, and cephalic sensory system of Icelus rastrinoides based on FAKU 14450, 130.0 mm SL, holotype of I. toyamensis (upper: dorsal; middle: lateral; lower: ventral views). Blue lines indicate sensory canals. NA, anterior nasal pore; NP, posterior nasal pore; SO, supraorbital pores; T, postorbital pores; IOP, posterior infraorbital pores; OCA, anterior medial pore of occipital canal; OCP, posterior medial pore of occipital canal; OCLP, posterior lateral central pore of occipital canal; OLP, posterior lateral pore of occipital canal; PM, preoperculomandibular pores.
Fig. 2 in Redescription of Icelus rastrinoides Taranetz in Schmidt, 1935, a Senior Synonym of Ricuzenius toyamensis Matsubara and Iwai, 1951, with Notes on Geographic Variations (Teleostei: Cottidae)
Fig. 2. Variations in squamation of Icelus rastrinoides. A–C, Scales on lateral surface of body, ranging from 1–3 rows; D–F, scales on pectoral axilla. A, D: FAKU 145680, 85.1 mm SL; B, E: FAKU 147843, 84.0 mm SL; C, F: FAKU 147842, 83.6 mm SL.
Fig. 4 in Redescription of Icelus rastrinoides Taranetz in Schmidt, 1935, a Senior Synonym of Ricuzenius toyamensis Matsubara and Iwai, 1951, with Notes on Geographic Variations (Teleostei: Cottidae)
Fig. 4. Collection localities of Icelus rantrinoides examined in this study. Areas A–F were established for statistical analysis.
Figure 1 in Threatened fish: Cottus petiti Bǎcescu & Bǎcescu-Meşter, 1964 (Cottidae)
Figure 1. – Cottus petiti. Credit photo: V. Sablain / SYBLE.
Fig. 1 in Redescription of Atopocottus tribranchius (Cottidae) from Japan with comments on the generic diagnosis and distribution
Fig. 1. Fresh specimen of Atopocottus tribranchius, KAUM–I. 75280, 20.5 mm SL, East China Sea.
Cryptic species of freshwater sculpin (Cottidae: Cottus) in California
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Data from: Complete mitochondrial genome of the poorly known Amur sculpin Mesocottus haitej (Cottoidei: Cottidae)
The complete mitochondrial genome sequence of Mesocottus haitej has been obtained by the next generation sequencing, which contained 22 tRNA genes, 13 protein-coding genes, 2 rRNA genes and non-coding control region with the total length of 16,527 bp. The gene content, arrangement, codon usage and base composition of M. haitej mitogenome have no unusual features that distinguish it from most other teleost fishes. According to the result of a pilot phylogenetic analysis, the freshwater Mesocottus is a sister lineage to the Cottus clade. The new mitogenomic data could provide useful information for the further studies on molecular systematics and conservation genetics of cottids.
FIGURE 3. Relationships among 11 in Cottus specus, a new troglomorphic species of sculpin (Cottidae) from southeastern Missouri
FIGURE 3. Relationships among 11 Cottus mtCR haplotypes and one outgroup (ML topology shown). Numbers on each branch correspond to bootstrap values based on 1,000 pseudoreplicates for MP and ML analyses, followed by posterior probabilities. Insignificant support placeholders are indicated by dashes. Lineages representing the Black River and Midlands races of banded sculpin are represented, as is the proposed Cottus specus lineage. Icons match those used in Kinziger et al. 2007.
FIGURE 4 in Cottus specus, a new troglomorphic species of sculpin (Cottidae) from southeastern Missouri
FIGURE 4. Cottus specus (A) 80.2 mm SL, holotype, SIUC 88001; (B) male, 66.8 mm SL; (C) 74.5 mm SL showing variation in eye size and pigmentation.
FIGURE 2 in Cottus specus, a new troglomorphic species of sculpin (Cottidae) from southeastern Missouri
FIGURE 2. Geographic distribution of sampling localities and drainage relationships in the Bois Brule drainage with caves overlaid. Abbreviations as in Table 1; HC (Hot Caverns) is part of Rimstone River Cave system, and ME (Mertz) is part of Crevice Cave system.
FIGURE 1 in Cottus specus, a new troglomorphic species of sculpin (Cottidae) from southeastern Missouri
FIGURE 1. Geographic distribution of five Ozark Highlands members of the banded sculpin complex adapted from Kinziger et al. (2007). Cottus specus is found in Cinque Hommes Creek and the unmapped surrounding caves; Midlands Race was sampled in Greasy Creek and Black River Race in the Current River.
FIGURE 5 in Cottus specus, a new troglomorphic species of sculpin (Cottidae) from southeastern Missouri
FIGURE 5. Increased pigmentation on the lips and head (A) and presence of fin-knobs (B) on a male Cottus specus (69.8 mm SL).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.