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Fig. 1 in Molecular insights into the identification and phylogenetics of the cosmopolitan marine fish blood parasite, Haemogregarina bigemina (Adeleorina: Haemogregarinidae)
Fig. 1. Photograph of the fish host Lipophrys pholis, one of the type hosts of Haemogregarina bigemina, screened in this study.
Fig. 2 in Molecular insights into the identification and phylogenetics of the cosmopolitan marine fish blood parasite, Haemogregarina bigemina (Adeleorina: Haemogregarinidae)
Fig. 2. Stages of Haemogregarina bigemina from Giemsa-stained blood films of Lipophrys pholis from the UK. (a) trophozoite, (b) meront, (c–e) dividing meronts, and (f) paired gamonts. Scale bar = 10 μm.
Figure 2. – Mean abundance per 750 m2 in Changes in distribution patterns of two vulnerable fish species (Epinephelus marginatus and Sciaena umbra) in the Scandola marine reserve (Corsica, NW Mediterranean): a possible effect of increased boat tourism
Figure 2. – Mean abundance per 750 m2 (± SE) of the dusky grouper Epinephelus marginatus (A) and the brown meagre Sciaena umbra (B) according to protection level at Scandola in 2012 and 2018. IR: integral reserve, BZ: buffer zone, UP: unprotected zone. Interannual difference are indicated for each protection level, *: significant at p <0.05, ns: not significant.
Figure 1 in Changes in distribution patterns of two vulnerable fish species (Epinephelus marginatus and Sciaena umbra) in the Scandola marine reserve (Corsica, NW Mediterranean): a possible effect of increased boat tourism
Figure 1. – Location of sites surveyed for dusky grouper and brown meagre populations inside and outside the Scandola MNR (Corsica, NW Mediterranean), according to protection status in summer 2012 and 2018. Dark blue arrows = integral reserve (IR), light blue arrows = buffer zone (BZ), red arrows = unprotected zones (UP). Blue stars = surveyed only in 2012, red star = site surveyed only in 2018.
Figure 5 in Changes in distribution patterns of two vulnerable fish species (Epinephelus marginatus and Sciaena umbra) in the Scandola marine reserve (Corsica, NW Mediterranean): a possible effect of increased boat tourism
Figure 5. – Size structure of Epinephelus marginatus and Sciaena umbra at Scandola in 2012 and 2018. Size classes = 10 cm for the dusky grouper and 5 cm for the brown meagre.
Fig. 3 in New records of Colobomatus mylionus Fukui, 1965 and Clavellisa chinensis (Yü, 1933) (Crustacea: Copepoda) parasitic on marine fish of Korea
Fig. 3. Clavellisa chinensis (Yü, 1933), adult female. A. habitus, dorsal view. B. habitus, lateral view. C. antennule. D. antenna. E. mandible. F. maxillule. G. maxilliped. Scale bars: A, B = 500 μm; C, D, G = 200 μm; E, F = 100 μm.
Figure 6 in New records of Monogenoidea (Platyhelminthes) from three marine fish species from the coast of Angra dos Reis, Rio de Janeiro, Brazil
Figure 6. Aristocleidus hastatus: (A) whole mount; (B) copulatory complex; (C) haptor, with anchor bars complex. Scale bars: A, C = 50 Μm, B = 20 Μm.
Figure 2 in New records of Monogenoidea (Platyhelminthes) from three marine fish species from the coast of Angra dos Reis, Rio de Janeiro, Brazil
Figure 2. Pseudotagia pomadasys: (A) whole mount; (B) anterior region with buccal suckers; (C) genital atrium; (D) clamp. Scale bars: A = 500 Μm, B = 100 Μm, C, D = 50 Μm.
Figure 4 in New records of Monogenoidea (Platyhelminthes) from three marine fish species from the coast of Angra dos Reis, Rio de Janeiro, Brazil
Figure 4. Acanthocercodes bullardi: (A) whole mount; (B) copulatory complex; (C) haptor. Scale bars: A = 150 Μm, B = 20 Μm, C = 50 Μm.
Figure 5 in New records of Monogenoidea (Platyhelminthes) from three marine fish species from the coast of Angra dos Reis, Rio de Janeiro, Brazil
Figure 5. Neodiplectanum mexicanum: (A) whole mount; (B) detail of the anterior region, showing copulatory complex and vagina; (C) haptor, showing the anchor bars complex and squamodisc. Scale bars: A = 100 Μm; B, C = 50 Μm.
Figure 2 in An updated checklist of the marine fishes of Turkey
Figure 2. Historical progress of ichthyological studies in Turkey, within intervals of 2 decades (bars indicate the total number of species recorded, solid line indicates the cumulative increase in fish diversity).
Fig. 2 in Use Of Intertidal Mangrove And Sea Wall Habitats By Coral Reef Fishes In The Wakatobi Marine Park, Indonesia
Fig. 2. Number of species seen at the two intertidal sites, and the number showing low (<33%), medium (33-67%) and high (>67%) site-fidelity
Fig. 1 in Use Of Intertidal Mangrove And Sea Wall Habitats By Coral Reef Fishes In The Wakatobi Marine Park, Indonesia
Fig. 1. Map of study sites. The arrow points to Hoga Island off the northeast coast of Kaledupa Island. The entire Tukangbesi Archipelago lies within the Wakatobi National Marine Park.
Figure 5 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 5. – Specimen of Trichonotus marleyi photographed on 6 April 2017 at 20°55'30.54"S and 55°17'55.32"E.
Figure 3 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 3. – Specimen of Fusigobius neophytus photographed on 22 November 2017 at 21°1'16.32"S and 55°13'31.84"E.
Figure 1 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 1. – Location of the observation stations of the 5 fish species present- ed in this study on a geomorphological map of the Reunionese coastline.
Figure 4 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 4. – Specimen of Samariscus triocellatus photographed on 4 May 2016 at 21°6'20.92"S and 55°46'16.72"E.
Figure 2 in First record of five fish species from Réunion Island observed during the inventory of the Marine Natural Zones of Interest for Ecology, Flora and Fauna (ZNIEFF)
Figure 2. – Specimen of Fusigobius inframaculatus photographed on 8 April 2016 at 21°21'18.54"S and 55°47'31.31"E.
Fig. 10 in Fish remains, mostly otoliths, from the non-marine early Miocene of Otago, New Zealand
Fig. 10. Comparison of the body scale morphology of Miocene Mataichthys bictenatus with Recent eleotrids. A. Mataichthys bictenatus Schwarzhans, Scofield, Tennyson, and T. Worthy gen. et sp. nov. (holotype, NMNZ S.52752, location 4, Mata Creek, Bannockburn Formation, early Miocene). B. Close−up of Mataichthys bictenatus depicting few preserved alternating primary and secondary cteni. C–E. Schematic drawings of the insertion of cteni on body scales in Gobiomorphus gobioides (Valenciennes, 1837) (from McDowall et al. 2006b) (C), Eleotris sp. (from Roberts 1993) (D), and Mataichthys bictenatus (E).
Fig. 2 in Fish remains, mostly otoliths, from the non-marine early Miocene of Otago, New Zealand
Fig. 2. Stratigraphic section showing the basal part of the Bannockburn Formation at the Manuherikia River location, New Zealand. FRN, Fossil Record Number in the archival Fossil Record File of the Geological Society of New Zealand.
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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)
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.