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217 results for “Pleuronectiformes”
FIG. 4 in First record of the rare Wide-mouth flounder Kamoharaia megastoma (Kamohara, 1936) (Pleuronectiformes, Bothidae) from the western Indian Ocean collected during the ATIMO VATAE expedition to Madagascar "Deep South"
FIG. 4. — Kamoharaia megastoma (Kamohara, 1936), SAIAB 189603, 108.7 mm SL, Madagascar: A, lateral line scale ocular side; B, body scale ocular side; C, body scale blind side. Scale bars: 200 µm.
FIG. 3 in First record of the rare Wide-mouth flounder Kamoharaia megastoma (Kamohara, 1936) (Pleuronectiformes, Bothidae) from the western Indian Ocean collected during the ATIMO VATAE expedition to Madagascar "Deep South"
FIG. 3. — Kamoharaia megastoma (Kamohara,1936), SAIAB 189603, 108.7 mm SL, Madagascar: A, close-up of ocular side of head; B, close-up of blind side of head; C, close-up of ocular side of mouth. Scale bars: A, B, 20 mm; C, not to scale.
FIG. 2 in First record of the rare Wide-mouth flounder Kamoharaia megastoma (Kamohara, 1936) (Pleuronectiformes, Bothidae) from the western Indian Ocean collected during the ATIMO VATAE expedition to Madagascar "Deep South"
FIG. 2. — Kamoharaia megastoma (Kamohara, 1936), SAIAB 189603, 108.7 mm SL, Sud-Ouest Pointe Barrow, Madagascar: A, ocular side fresh specimen (photograph by S. Ribes); B, ocular side preserved specimen; C, blind side preserved specimen. Scale bar: 20 mm.
Fig. 3 in First Record of the Longlure Flatfish, Asterorhombus filifer (Pleuronectiformes: Bothidae), from Japan
Fig. 3. Diagram of opercular elements and pectoral fin on ocular side of Asterorhombus filifer, NSMT-P 118170, 86.5 mm SL. Arrows indicate flaps. Scale bar 5 mm.
Fig. 6 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 6. Radiographs of caudal skeletons of Engyprosopon praeteritus (A, holotype, AMS IA. 4142, male, 57 mm SL; B, CSIRO A 1336, 69.0 mm SL) and Arnoglossus aspilos (C, HUMZ 185346, 96.5 mm SL). The hypural bones are split in A and B, and fused in C.
Fig. 1 in First Record of the Longlure Flatfish, Asterorhombus filifer (Pleuronectiformes: Bothidae), from Japan
Fig. 1. Freshly collected specimens of Asterorhombus filifer. A, NSMT-P 110313, 19.8 mm SL; B, NSMT-P 110324, 20.8 mm SL; C, NSMT-P 118170, 86.5 mm SL.
Fig. 5 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 5. Lateral line scale on ocular side (A), CSIRO A 1334,73.2 mm SL and first gill arch (B), CSIRO A 1332, 73.1 mm SL of Engyprosopon praeteritus.
Fig. 4 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 4. Relationships between body depth in SL and SL (A) and between interorbital width in head length and SL (B). Engyprosopon praeteritus: holotype (△), paratypes(▲) and present specimens (■); Arnoglossus aspilos (●).
Fig. 1 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 1. Collection localities of type series and present specimens of Engyprosopon praeteritus. H, holotype; P, paratypes. Numerals refers to number of specimens.
Fig. 2 in The Australian Sinistral Flounder Arnoglossus aspilos praeteritus (Actinopterygii: Pleuronectiformes: Bothidae) Reassigned as a Valid Species of Engyprosopon
Fig. 2. Engyprosopon praeteritus (A, holotype, AMS IA. 4142, male, 57 mm SL; C, CSIRO A 1336, male, 69.0 mm SL; and D, CSIRO A 1335, female, 72.9 mm SL) and Arnoglossus aspilos (B, HUMZ 185345, male, 87.1 mm SL).
Fig. 10 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 10. Monthly absolute frequency distribution of juveniles and adult individuals of Etropus crossotus in the shallow infralittoral areas of the Paranaguá Estuarine Complex. Total amostral N = 419. *Significant values (p <0.05) for chi-square test.
Fig. 8 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 8. First maturation length for females (a) and males (b) of Etropus crossotus in the shallow infralittoral areas of the Paranaguá Estuarine Complex. L 50 = the shortest total length (Lt), in which 50% of the individuals sampled were adults. L 100 = the shortest total length (Lt), in which 100% of the individuals sampled were adults. Female amostral N = 171, and male amostral N = 218.
Fig. 6 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 6. Monthly percentage frequency distribution of the gonadal maturation stages of females (a) and males (b) of Etropus crossotus in the shallow infralittoral areas of the Paranaguá Estuarine Complex. A = immature; B = maturation; C = mature; PS = partially spawned; D = spawned/emptied. The numbers indicated above the bars refer to absolute frequency.
Fig. 1 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 1. Location of the sampling sites in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil.
Fig. 5 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 5. Monthly variation of the mean GSI of females (a) and males (b) of Etropus crossotus in the shallow infralittoral areas of the Paranaguá Estuarine Complex. GSI = gonadosomatic index. The error bars correspond to the standard deviation. The numbers indicated above the error bars refer to absolute frequency.
Fig. 9 in Reproductive biology of the flatfish Etropus crossotus (Pleuronectiformes: Paralichthyidae) in the Paranaguá Estuarine Complex, Paraná State, subtropical region of Brazil
Fig. 9. Monthly sex ratio (a) per length class (b) of Etropus crossotus in the shallow infralittoral areas of the Paranaguá Estuarine Complex. (a) Female amostral N = 184, and male amostral N = 237; (b) Female amostral N = 184, male amostral N = 237, and unsexed amostral N = 5. *Significant values (p <0.05) for chi-square test.
Fig. 1 in A new record of right eyed deep-sea flat fish Poecilopsetta colorata Gunther, 1880 (Pleuronectiformes: Pleuronectidae) from the Arabian Sea
Fig. 1 — Poecilopsetta colorata Gunther, 1880, specimen (SL: 118 mm): a) Lateral view of the adult specimen, and b) Lateral view of the juvenile P. colorata; collected in Southeastern Arabian Sea, Sakthikulangara fishing port, Kerala coast, India; depth of 200 – 300 m
Fig. 6 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 6. Lateral view of head on blind side of Samaris spinea, NSMT-P 109872, 32.9 mm SL, showing a position of underlying parasitic isopod on the gill. Arrow head indicates cephalon.
Fig. 5 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 5. CT images of osteology of head and anterior body on ocular side in Samaris spinea, NSMT-P 109872, 32.9 mm SL. EC: epicentrum; HM: hypomeral.
Fig. 4 in A Rare Flatfish, Samaris spinea (Teleostei: Pleuronectiformes: Samaridae) from the Ogasawara Islands, Japan, with Notes on Its Distribution, Taxonomy and Sexual Dimorphism
Fig. 4. CT images of transformed scales with small spines along dorsal (A) and ventral (B) margins of caudal peduncle on ocular side of Samaris spinea, NSMT-P 109872, 32.9 mm SL.
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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.