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963 results for “Gobies”
FIGURE 8 in Four new species of coral gobies (Teleostei: Gobiidae: Gobiodon), with comments on their relationships within the genus
FIGURE 8. Gobiodon fuscoruber sp. nov. A. alive adult, holotype NMW 95079, 36.7 mm SL, Dahab, Egypt, Red Sea; B. freshly collected adult, CH 232-43-006, 31.5 mm SL, Dahab, Egypt, Red Sea; C. freshly collected juvenile, CH 232-43-015, 19.2 mm SL, Dahab, Egypt, Red Sea; D. freshly collected adult, CH 232-43-040, 26.2 mm SL, Fesdu Island, Maldives, Indian Ocean; E. freshly collected adult, paratype, OMNH 39990, 28.5 mm SL, Iriomote Island, Ryukyu Islands, Japan, western Pacific Ocean; F. freshly collected juvenile, OMNH 39978, 18.1 mm SL, Iriomote Island, Ryukyu Islands, Japan, western Pacific Ocean. Photos by J. Herler (A-D), T. Suzuki (E, F).
FIGURE 4 in Four new species of coral gobies (Teleostei: Gobiidae: Gobiodon), with comments on their relationships within the genus
FIGURE 4. Gobiodon irregularis sp. nov. A. freshly collected adult, paratype MNHN 2006-1699, 32.3 mm SL, Dahab, Egypt, Red Sea; B. freshly collected adult, CH 232-41-020, 31.2 mm SL, Dahab, Egypt, Red Sea; C. freshly collected adult, SMF uncatalogued, 27.6 mm SL, Farasan Archipelago, Red Sea; D. freshly collected subadult, paratype NMW 95565, 23.4 mm SL, Dahab, Egypt, Red Sea; E. alive subadult, PMR VP3201, 23.5 mm SL, Sharm el Moya, Egypt, Red Sea; F. freshly collected juvenile, SAIAB 70430, 15 mm SL, Rodrigues, western Indian Ocean. Photos by J. Herler (A, B, D), S.V. Bogorodsky (C, E), P. Heemstra, © SAIAB (F).
FIGURE 5 in Two new goby species of the genus Eviota from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 5. Underwater photograph of Eviota rubriguttata, about 2cm TL, Kasari-wan Inlet, Amami-oshima Island, the Ryukyu Islands, Japan, 9 m depth. Photograph by Hiroyuki Kanehara.
FIGURE 1 in Two new goby species of the genus Eviota from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 1. Freshly collected male holotype of Eviota ancora, OMNH-P21096. Photograph by Toshiyuki Suzuki.
FIGURE 4 in Two new goby species of the genus Eviota from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 4. Freshly collected female holotype of Eviota rubriguttata, OMNH-P35645. Photograph by Toshiyuki Suzuki.
FIGURE 2 in Two new goby species of the genus Eviota from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 2. Underwater photograph of Eviota ancora, about 2.2 cm TL, Kasari-wan Inlet, Amami-oshima Island, the Ryukyu Islands, Japan, 14m depth. Photograph by Hiroyuki Kanehara.
FIGURE 4 in Eviota nigrispina, a New Goby from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 4. Eviota nigrispina, color in life. Kasari-wan Inlet, Amami-oshima Island, the Ryukyu Islands, Japan, 7 m depth. Photograph by H. Kanehara.
FIGURE 3 in Eviota nigrispina, a New Goby from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 3. Eviota nigrispina, immature, paratype, OMNH-P35254, freshly collected. Photograph by T. Suzuki.
FIGURE 2 in Eviota nigrispina, a New Goby from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 2. Eviota nigrispina, female, paratype, OMNH-P35614, freshly collected. Photograph by T. Suzuki.
FIGURE 1 in Eviota nigrispina, a New Goby from the Ryukyu Islands, Japan (Teleostei: Gobiidae)
FIGURE 1. Eviota nigrispina, male, holotype, OMNH-P35615, freshly collected. Photograph by T. Suzuki.
FIGURE 3 in Coryphopterus kuna, a new goby (Perciformes: Gobiidae: Gobiinae) from the western Caribbean, with the identification of the late larval stage and an estimate of the pelagic larval duration
FIGURE 3. Sagittal otolith of transitional larva of Coryphopterus kuna, lateral view, photographed at 400x. The array of daily otolith increments extends along the longest radius of the sagitta from the center of the otolith (at left) to the edge of the otolith (at right). The primordium is the horizontal black oblong at the left edge of the figure and is about 7 microns long, the core (pre-hatching) is the area without clear increments about 20 microns out from the center.
FIGURE 1D, E in Coryphopterus kuna, a new goby (Perciformes: Gobiidae: Gobiinae) from the western Caribbean, with the identification of the late larval stage and an estimate of the pelagic larval duration
FIGURE 1D, E. Holotype of Coryphopterus kuna, pelvic fin frenum absent (D); prominent melanophores over eyeball (E).
FIGURE 1A–C in Coryphopterus kuna, a new goby (Perciformes: Gobiidae: Gobiinae) from the western Caribbean, with the identification of the late larval stage and an estimate of the pelagic larval duration
FIGURE 1A–C. Holotype of Coryphopterus kuna, 17.1 mm SL male (SIO-07-5)(A); head and fin markings (B); pelvic fins united along full-length (C).
FIGURE 6. A in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 6. A phylogenetic tree based on an alignment of 887bp 12s rDNA containing 12.92% missing data of 8 Tridentiger species, topology and branch lengths obtained by MrBayes is shown. Nodal support values are given in the following order: Posterior probability of BS tree, 1000 bootstrap of RAxML tree. Poorly supported nodes (PP <70%) are marked with a "*".
FIGURE 5 in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 5. Linear regressions of standard length and natural log-transformed wet body weight for T. radiatus (n=191), T. bifasciatus (n=137) and T. barbatus (n=511). Grey regions depict 95% CI of the least-square regression line. See Table 3 for parameter estimates.
FIGURE 4 in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 4. Lateral view of T. radiatus displaying facial barbel and papilla pattern. Nomenclature of sensory canal pores same as Figure 2. Sanzo, 1911 is adopted for the nomenclature of papillae and barbels rows. Pore A' blocked by anterior nasal tubule from this angle, not shown.
FIGURE 1 in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 1. Photographs of fresh Tridentiger radiatus sp. nov. and T. barbatus specimens. A. Lateral view of T. radiatus (Holotype, SYSZ0030838, Male, SL=64.2 mm); B. Lateral view of T. barbatus (SYSZ0030812 Male, SL=73.7 mm); C. Ventral view of the same specimen of T. radiatus, arrow showing less developed chin barbels; D. Ventral view of the same specimen of T. barbatus, arrow referring to the highly developed chin barbels; E. Dorsal view of T. radiatus (Paratype, SYSZ0030836, Male, SL=77.8 mm) showing a banded colouration.
FIGURE 3 in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 3. Ventral view of T. radiatus displaying ventral barbel lines. Nomenclature adopted from homologous papillae lines in Sanzo, 1911, e: linea exteriore, i: linea interiore. CM: Centre-most chin barbel.
FIGURE 2 in A new barbeled goby from south China (Teleostei: Gobiidae)
FIGURE 2. Cephalic canal system and sensory pores of Tridentiger radiatus. AN: Anterior nasal pore, PN: Posterior nasal pore, AOC: Anterior oculoscapular canal, POC: Posterior oculoscapular canal, PC: Preopercular canal. Nomenclature of sensory pores follows (Akihito et al. 1988), canals are marked by dotted lines.
FIGURE 1 in Phylogenetic placement of the European sand gobies in Gobionellidae and characterization of gobionellid lineages (Gobiiformes: Gobioidei)
FIGURE 1. Phylogeny of Gobiidae and Gobionellidae, rooted with the outgroup Oxyeleotris lineolata (Butidae). The sand goby Pomatoschistus minutus is in boldface. This topology resulted from both Bayesian and likelihood analysis; numbers at nodes are support values, listed as posterior probability/bootstrap value. Bootstrap values less than 50% are indicated by '-'. Nodes with both posterior probability and bootstrap values of less than 50% are collapsed.
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International Brain Laboratory public data
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OpenNeuro
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