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176 results for “Scorpaenidae”
Figure 2 in Figure 3 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters
Figure 2. – Distribution map of Belobranchus segura. First records in Sumatra, Indonesia (black stars, this study) and previous published records (black triangles) based on Keith et al. (2012, 2021), Kottelat (2013), Miesen et al. (2016), Dahruddin et al. (2016) and Larson (2021).
Figure 2 in Objective record of Pterois russelii (Scorpaenidae: Pteroinae) from the Red Sea
Figure 2. – Relationship between supraocular tentacle length and standard length (mm) in Pterois russelii, showing ontogenetic change of the former.
Figure 1 in Objective record of Pterois russelii (Scorpaenidae: Pteroinae) from the Red Sea
Figure 1. – Fresh specimen of Pterois russelii from the Red Sea [SMF 35752 (KAU 14-168), 99.7 mm standard length, off Jizan, Saudi Arabia]. Photo by S. V. Bogorodsky.
Figure 1 in Validity of a poorly known western Pacific scorpionfish (Scorpaenidae), Neomerinthe pallidimacula (Fowler, 1938)
Figure 1. - Preserved specimens of Neomerinthe pallidimacula. A: USNM 98889, holotype of Scorpaena pallidimacula, 76.0 mm SL; B: MNHN 2001- 2850, 70.2 mm SL.
Figure 3 in Feeding strategy and trophic ontogeny in Scorpaena maderensis (Scorpaeniformes: Scorpaenidae) from the Azores, NE Atlantic
Figure 3. - General feeding strategies plot based on Amundsen et al. (1996) for Scorpaena maderensis from the Azores. %Fi = frequency of prey i occurrence; %Pi = specific prey abundance)
Figure 2 in Feeding strategy and trophic ontogeny in Scorpaena maderensis (Scorpaeniformes: Scorpaenidae) from the Azores, NE Atlantic
Figure 2. - Cumulative trophic diversity curves of Scorpaena maderensis specimens sampled from the Azores by size classes.
Figure 5 in Feeding strategy and trophic ontogeny in Scorpaena maderensis (Scorpaeniformes: Scorpaenidae) from the Azores, NE Atlantic
Figure 5. - Frequency of occurrence (%F), numerical proportion (%N) and weight proportion (%W) of main prey groups in four Scorpaena maderensis size classes (SL) from the Azores.
Figure 1 in Feeding strategy and trophic ontogeny in Scorpaena maderensis (Scorpaeniformes: Scorpaenidae) from the Azores, NE Atlantic
Figure 1. - Geographic distribution of Scorpaena maderensis and location of sampled Azorean islands.
Figure 4 in Feeding strategy and trophic ontogeny in Scorpaena maderensis (Scorpaeniformes: Scorpaenidae) from the Azores, NE Atlantic
Figure 4. - Tokeshi plot of the feeding strategy of each size class (1 = <75 mm; 2 = 76-95 mm; 3 = 96-115 mm; 4 = 116-135 mm) of Scorpaena maderensis from the Azores. DI = mean individual prey diversity; DP = population prey diversity.
Figure 1 in Scorpaenopsis rubrimarginatus, a new species of scorpionfish from Réunion, southwestern Indian Ocean (Teleostei: Scorpaenidae)
Figure 1. - Scorpaenopsis rubrimarginatus new species, holotype, MNHN 2012-0401 (24.3 mm SL), lateral view, colouration in preservative. Figure 2. - Scorpaenopsis rubrimarginatus new species, holotype, MNHN 2012-0401 (24.3 mm SL), dorsal view of head. Figure 3. - Scorpaenopsis rubrimarginatus new species, holotype, MNHN 2012-0401 (24.3 mm SL), ventral view of head. Figure 4. - Scorpaenopsis rubrimarginatus new species, male (right) and presumed female (left); underwater photograph, off Saint-Gilles, Réunion, 80 m depth (photograph: P. Durville).
Fig. 3 in First Japanese Records of the Indo-Pacific Scorpionfish (Scorpaenidae) Scorpaenodes corallinus, with a Re-evaluation of Coronal Spines as a Diagnostic Character
Fig. 3. Holotype of Scorpaenodes corallinus (SAIAB 301, 64.4 mm SL, Pinda Island, Mozambique).
Figure 3 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters
Figure 3. – Crustacean of the genus Lebbeus found as an item in the diet of Trachyscorpia verai.
Figure 1 in Diet of the black scorpionfish Scorpaena porcus (Scorpaenidae) of the gulf of Annaba, Algeria
Figure 1. – Geographical limits of sampling sites of Scorpaena porcus.
FIGURE 5 in Scorpaena regina, a new scorpionfish (Teleostei: Scorpaenidae) from the east coast of Queensland, Australia
FIGURE 5. Relationship of number of branched pectoral-fin rays to standard length in Scorpaena regina sp. nov. A red arrowhead indicates holotype.
FIGURE 6 in Scorpaena regina, a new scorpionfish (Teleostei: Scorpaenidae) from the east coast of Queensland, Australia
FIGURE 6. Relationships of (A) body width, (B) suborbital space, (C) 10th dorsal-fin spine length, (D) head length, (E) orbit diameter, and (F) occipital pit length (all as % SL) to SL in Scorpaena regina sp. nov. Red arrowheads indicate holotype.
FIGURE 4 in Scorpaena regina, a new scorpionfish (Teleostei: Scorpaenidae) from the east coast of Queensland, Australia
FIGURE 4. Relationships of (A) prepelvic-fin, (B) 9th dorsal-fin spine, and (C) 10th dorsal-fin spine lengths; and (D) caudal peduncle depth (all as % SL) to SL in Scorpaena regina sp. nov. (circles) and S. bulacephala (stars, data based on Motomura et al. 2005a). Red arrowheads indicate holotypes.
FIGURE 3 in Scorpaena regina, a new scorpionfish (Teleostei: Scorpaenidae) from the east coast of Queensland, Australia
FIGURE 3. Lateral view of head of Scorpaena regina sp. nov. QM I. 37447, holotype, 63.4 mm SL. Numerous small papillae and sensory pores on head not illustrated. Illustration of supraocular tentacle based on tentacle of right side because left side damaged. Scale bar indicates 5 mm.
FIGURE 1 in Scorpaena regina, a new scorpionfish (Teleostei: Scorpaenidae) from the east coast of Queensland, Australia
FIGURE 1. Preserved specimens of Scorpaena regina sp. nov. collected from the east coast of Queensland, Australia. A, QM I. 37447, holotype, 63.4 mm SL; B, QM I. 34172, paratype, 54.1 mm SL.
FIGURE 7 in Review of the Scorpaena papillosa species complex (Teleostei: Scorpaenidae) with description of a new species from southwestern Australia
FIGURE 7. Relationships of (A) snout length, (B) distance between tips of opercular spines, (C) orbit diameter, (D) *interorbital width at vertical midline of eye, (E) 2nd anal-fin spine length, and (F) predorsal-fin length (all as % SL) to SL in Scorpaena papillosa papillosa (blue circles) and S. p. ergastulorum (yellow squares); and (G) body width, (H) head length, (I) orbit diameter, (J) **interorbital width at posterior end of preocular spine base, (K) occipital pit width, and (L) predorsal-fin length (all as % SL) to SL in S. vesperalis n. sp. Arrowheads indicate neotype of S. p. papillosa and holotype of S. vesperalis n. sp.
FIGURE 4 in Review of the Scorpaena papillosa species complex (Teleostei: Scorpaenidae) with description of a new species from southwestern Australia
FIGURE 4. Distribution of Scorpaena papillosa papillosa (blue circles), S. p. ergastulorum (yellow squares), S. vesperalis n. sp. (red triangles), based on collected specimens examined in this study. Arrowheads indicate type localities of S. p. papillosa and S. vesperalis n. sp.
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