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32 results for “Torpediniformes”

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Figure 1. Torpedo sinuspersici Olfers, 1831, 250 in Short Communication First Record of three Electric Rays (Order: Torpediniformes) from Odisha Coast, India

Figure 1. Torpedo sinuspersici Olfers, 1831, 250 mm TL, EBRC/ZSI F-9330.

opencc-by-4.0Dec 2019View details →
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Figure 3. Narcine prodorsalis Bessednov, 1966 351 in Short Communication First Record of three Electric Rays (Order: Torpediniformes) from Odisha Coast, India

Figure 3. Narcine prodorsalis Bessednov, 1966 351 mm TL, EBRC/ZSI F-9316.

opencc-by-4.0Dec 2019View details →
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Figure 2. Torpedo fuscomaculata Peters, 1855 189 in Short Communication First Record of three Electric Rays (Order: Torpediniformes) from Odisha Coast, India

Figure 2. Torpedo fuscomaculata Peters, 1855 189 mm TL, EBRC/ZSI F-9832.

opencc-by-4.0Dec 2019View details →
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FIGURE 7 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 7. Map showing known distribution of Narcine baliensis, sp. nov. Indicated are holotype (asterisk) and paratypes (western locality, Java); eastern occurrence is specimen from the island of Komodo (see Fig. 5).

opennotspecifiedDec 2016View details →
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FIGURE 6 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 6. Live specimen of Narcine baliensis, sp. nov., photographed off the Indonesian island of Komodo (specimen not collected; photograph courtesy of G.R. Allen).

opennotspecifiedDec 2016View details →
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FIGURE 4 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 4. Illustration of Narcine baliensis, sp. nov., based on holotype (NHM 1984.4.11.2, 306 mm TL, adult female; modified from Carvalho et al., 2000, courtesy of FAO).

opennotspecifiedDec 2016View details →
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FIGURE 5 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 5. Detail of oronasal region of Narcine baliensis, sp. nov., showing morphology of tooth bands (holotype, NHM 1984.4.11.2, 306 mm TL, adult female).

opennotspecifiedDec 2016View details →
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FIGURE 2 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 2. Female paratype of Narcine baliensis, sp. nov. (CSIRO H5858-04, 252 mm TL, juvenile?) in dorsal (A) and ventral (B) view.

opennotspecifiedDec 2016View details →
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FIGURE 3 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 3. Male paratypes of Narcine baliensis, sp. nov. Dorsal (A) and ventral (B) view of CSIRO H5858-03 (143 mm TL, juvenile), and dorsal view (C) of MZB 23016 (160 mm TL, juvenile). All specimens from southern coast of Central Java, Indonesia.

opennotspecifiedDec 2016View details →
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FIGURE 1 in Narcine baliensis, a new species of electric ray from southeast Asia (Chondrichthyes: Torpediniformes)

FIGURE 1. Holotype of Narcine baliensis, sp. nov., in dorsal (A) and ventral (B) views (NHM 1984.4.11.2, 306 mm TL adult female, from between Bali and Lombok, Indonesia). Note disc slightly curled dorsally in B.

opennotspecifiedDec 2016View details →
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Figure 17 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 17. †Titanonarke megapterygia sp. nov. from the Eocene Monte Postale site. A, MCSNV IG.135576; B, detail of the head and hyoid apparatus. Abbreviations: ao, antorbital cartilage; cb, ceratobranchials; hym, hyomandibula; me, Meckel's cartilage; nc, nasal capsule; pq, palatoquadrate; sca, scapulocoracoid; syn, synarcual; rf, rostral fontanelle; ro, rostral cartilage. Scale bars = 50 mm.

opennotspecifiedSep 2017View details →
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Figure 12 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 12. †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site. Close-up of the distal end of pelvic fins of MCSNV IG.91128, which is supposed to be the unique male individual based on the presence of claspers. Abbreviations: cla, clasper; dfr, first dorsal-fin radials, pelvic radials. Scale bar = 50 mm.

opennotspecifiedSep 2017View details →
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Figure 9. A in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 9. A, synarcual and pectoral girdle of Narcine brasiliensis (AMNH 95343) in dorsal view; B, synarcual and pectoral girdle of †Titanonarke molini (MCSNV IG.VR.91359) in ventral view. The arrowheads indicate the posteriorly directed lateral stays of the synarcual. The arrows indicate the posteriorly directed scapular process of the scapulocoracoid. Abbreviations: cb, ceratocranchials; sca, scapulocoracoid; ss, suprascapula; syn, synarcual. Scale bar = 5 mm.

opennotspecifiedSep 2017View details →
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Figure 6 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 6. †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site. A, the juvenile individual MCSNV IG.VR.91359; B, reconstruction. Abbreviations: ao, antorbital cartilage; cb, ceratobranchials; hym, hyomandibula; la, labial cartilages; me, Meckel's cartilage; mes, mesopterygium; met, metapterygium; nc, nasal capsule; pel, prepelvic process; pub, puboischiadic bar; pq, palatoquadrate; pro, propterygium; ps, pseudohyoid; rad, pectoral radials; ro, rostral cartilage; sca, scapulocoracoid; ss, suprascapula; syn, synarcual. Scale bars = 50 mm.

opennotspecifiedSep 2017View details →
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Figure 4 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 4. Juvenile individuals of †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site. A, MCSNV IG.VR.91359; B, MCSNV IG.135581. Scale bars = 10 mm.

opennotspecifiedSep 2017View details →
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Figure 16. A, B, D in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 16. A, B, D, †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site; A, close-up of the abdominal region of MGP-PD 26275 showing the embryo; the anterior region of the body lies on the lower portion of the photo; B, reconstruction; D, detail of the vertebral column of the embryo indicated in B with a dotted rectangle. C, dissected specimen of Potamotrygon tigrina (IUWP 7361) showing the position of the left uterus, just next to the stomach. Abbreviations: int, intestine; liv, liver; lu, left uterus; na, neural arches; ru, right uterus; st, stomach; vc, vertebral centra. Scale bars: A, B = 10 mm; D = 1 mm.

opennotspecifiedSep 2017View details →
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Figure 15. A, B in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 15. A, B, †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site; A, detail of the abdominal region in MGP-PD 26275 showing the stomach content; B, reconstruction; note also the embryo lying next to the stomach. C, D, close-up of some of the larger foraminifera of the genus †Alveolina in the stomach of MGP-PD 26275. E, dissected specimen of Torpedo nobiliana in ventral view (ESB tn200707_159) showing the position of the stomach, used to identify the accumulation in MGP-PD 26275 as gut contents. Abbreviations: int, intestine; liv, liver; met, metapterygium; pub, puboischiadic bar; sca, scapulocoracoid; st, stomach, syn synarcual. Scale bars: A, B = 50 mm; C, D = 2 mm.

opennotspecifiedSep 2017View details →
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Figure 3 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 3. †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site. A, MCSNV IG.VR.67290; B, MCSNV IG.91128/9. Scale bars = 100 mm.

opennotspecifiedSep 2017View details →
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Figure 1. A in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 1. A, location and geological map of the Bolca area. B, stratigraphical section of the uppermost part of the Monte Postale sequence. Modified from Marram̀a et al. (2016c).

opennotspecifiedSep 2017View details →
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Figure 2 in Revision of Eocene electric rays (Torpediniformes, Batomorphii) from the Bolca Konservat-Lagerst atte, Italy, reveals the first fossil embryo in situ in marine batoids and provides new insights into the origin of trophic novelties in coral reef fishes

Figure 2. †Titanonarke molini (Jaekel, 1894) from the Eocene Monte Postale site. A, B, MGP-PD 26275/6, holotype in part and counterpart. Scale bars = 100 mm.

opennotspecifiedSep 2017View details →

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