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114 results for “Rhinopristiformes”
Fig. 10 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 10 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL; first dorsal (a), second dorsal (b), and caudal (c) fins in lateral views (c image reversed). Photographs courtesy Marsha Englebrecht ©
Fig. 27 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 27 Acroteriobatus stehmanni sp. nov., ZMH 25560, juvenile male paratype, 201.4 mm TL, head in ventral view. Scale bar: 2 cm
Fig. 5 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 5 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, head in dorsal view. Photograph courtesy Marsha Englebrecht ©
Fig. 8 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 8 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, head in ventral view. Photograph courtesy Marsha Englebrecht ©
Fig. 29 Acroteriobatus leucospilus, BMNH 1905.6.8.12 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 29 Acroteriobatus leucospilus, BMNH 1905.6.8.12, subadult male syntype, 416 mm TL, in total ventral view. The photograph was taken and kindly provided by Kevin Webb
Fig. 34 Acroteriobatus leucospilus, BMNH 1905.6.8.12 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 34 Acroteriobatus leucospilus, BMNH 1905.6.8.12, subadult male syntype, 416 mm TL, head in ventral view. Scale bar: 2 cm. The photograph was taken and kindly provided by Kevin Webb
Fig. 33 Acroteriobatus leucospilus, SAIAB 34588 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 33 Acroteriobatus leucospilus, SAIAB 34588, gravid female, 690 mm TL, close-up of orbital and spiracular region. Photograph courtesy Marsha Englebrecht ©
Fig. 37 Acroteriobatus leucospilus, BMNH 1905.6.8.12 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 37 Acroteriobatus leucospilus, BMNH 1905.6.8.12, subadult male syntype, 416 mm TL, radiograph of cranium and snout in dorsal view. The radiograph was taken and kindly provided by James Maclaine and reworked by Nemo Martin
Fig. 6 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 6 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, close-up of orbital and spiracular region. Photograph courtesy Marsha Englebrecht ©
Fig. 4 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 4 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 565 mm TL fresh, head in dorsal view taken directly after catching. Photograph by Elaine Heemstra, NRF-SAIAB
Fig. 3 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 3 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, in total ventral view. Scale bar: 5 cm. Photograph courtesy Marsha Englebrecht ©
Fig. 1 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 1 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 565 mm TL fresh, in total dorsal view taken directly after catching. Photograph by Elaine Heemstra, NRF-SAIAB
Fig. 2 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 2 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, in total dorsal view. Scale bar: 5 cm. Photograph courtesy Marsha Englebrecht ©
figure 5 in The sawFIsh (Rhinopristiformes, Pristidae) rostrum displayed in the "Basilica Santuario del Carmine Maggiore" in Naples, Italy: A long story of legends and taxonomic errors
figure 5 Alignment of coi (A) and nd2 (B) sequences obtained for the rostrum of the bscm (indicated by a pink box) and those available in GenBank for sawfish species (see main text for details and Accession numbers). nd 2 haplotypes for P. pectinata from Faria et al. (2013) are indicated as HapC, HapD, HapE. Unrooted neighbor-joining tree (C) constructed using coi + nd2 sequences and displaying only>50% percentage bootstrap scores.
figure 1 in The sawFIsh (Rhinopristiformes, Pristidae) rostrum displayed in the "Basilica Santuario del Carmine Maggiore" in Naples, Italy: A long story of legends and taxonomic errors
figure 1 (A) Picture of the sawfish rostrum kept in the bscm and (B) illustration of the "miraculous event" in which it allegedly took part; note the fish tail protruding from the leak circled in white (from page 81; Bacco, 1605). (C) The original lacquer wax stamp present on the rostrum (central) compared to the logo of the Roman Curia of the Carmelite Order (left) and the logo of the Carmelite fathers of Naples (right). The logo of the Roman Curia of the Carmelite Order was downloaded from https://fraticarmelitani.wixsite.com/fraticarmelitani and, the Downloadedlogo of fromtheBrill.com 06/21/2024 06:27:30PM via Open Access . This is an open access article distributed under the terms Carmelite fathers of Naples was photographed by N. Maio . of the CC BY 4.0 license . https://creativecommons.org/licenses/by/4.0/
Linked collectors and determiners for: Description of Rhinobatos ranongensis sp. nov. (Rhinopristiformes: Rhinobatidae) from the Andaman Sea and Bay of Bengal with a review of its northern Indian Ocean congeners.
Natural history specimen data linked to collectors and determiners held within, "Description of Rhinobatos ranongensis sp. nov. (Rhinopristiformes: Rhinobatidae) from the Andaman Sea and Bay of Bengal with a review of its northern Indian Ocean congeners". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5c472480-b92a-4403-ab49-6f4b3f603f18">https://bionomia.net/dataset/5c472480-b92a-4403-ab49-6f4b3f603f18</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5c472480-b92a-4403-ab49-6f4b3f603f18">https://gbif.org/dataset/5c472480-b92a-4403-ab49-6f4b3f603f18</a>. Formatted as a Frictionless Data package.
FIGURE 3 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 3. Light micrographs of Stoibocephalum arafurense n. gen., n. sp. (A) Cross-section through mature proglottid anterior to genital pore (paratype, LRP 7945). (B) Cross-section through mature proglottid between cirrus sac and ovary (paratype, LRP 7943). (C) Cross-section through mature proglottid at level of ovarian bridge (paratype, LRP 7946); asterisks (*) indicate excretory vessels. (D) Cross-section through anterior region of strobila (paratype, QM G233995); asterisks (*) indicate excretory vessels. (E) Egg (paratype, QM G233992). Abbreviations: CS, cirrus sac; ESV, external seminal vesicle; O, ovary; OC, ovicapt; OD, oviduct; T, testis; VA, vagina; VF, vitelline follicle; U, uterus.
FIGURE 1 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 1. Line drawings of Stoibocephalum arafurense n. gen., n. sp. (A) Scolex (holotype, QM G233981). (B) Mature proglottid (paratype, USNPC 106064.00); arrowheads indicate locations at which cross-sections in Figs. 3A–C were taken; vitelline follicles above cirrus sac are drawn with dashed lines. (C) Whole worm (holotype, QM G233981); arrowhead indicates location at which cross-section in Fig. 3D was taken.
FIGURE 2 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 2. (A–M) Scanning electron micrographs and (N) light micrograph of histological section of Stoibocephalum arafurense n. gen., n. sp. (A) Scolex; small letters indicate location of detail in Figs. 2B–E. (B) Surface of scolex proper anterior to suckers covered with scolopate spinitriches and acicular to capilliform filitriches. (C) Scolex proper surface between suckers covered with capilliform filitriches. (D) Sucker surface covered with scolopate spinitriches and acicular to capilliform filitriches. (E) Strobilar surface covered with shorter capilliform filitriches and small coniform spinitriches (see inset) at posterior proglottid margin. (F) Mature proglottid with everted cirrus. Small letter indicates detail in Fig. 2I. (G) Close-up of base of cirrus. Small letter indicates detail in Fig. 2H. (H) Surface of base of cirrus covered with capilliform filitriches. (I) Close-up of proglottid dehiscence; white arrowhead indicates egg. (J) Frontally bisected scolex with retracted apical organ. White arrowheads indicate boundary between apical organ and apical modification of scolex proper (AMSP); black arrowheads indicate boundary between AMSP with acicular filitriches and AMSP with capilliform filitriches; and grey arrowheads indicate puckered rim of AMSP. Small white letters indicate detail in Figs. 2K–L. (K) Invaginated surface of AMSP covered with capilliform filitriches. (L) Surface of the AMSP flanking the apical organ covered with acicular filitriches. (M) Apical organ surface covered with acicular filitriches. (N) Longitudinal section of scolex in situ. White arrowheads indicate boundary between apical organ and AMSP; black arrowheads indicate boundary between AMSP with acicular filitriches and AMSP with capilliform filitriches; and grey arrowheads indicate protruded rim of aperture of AMSP (see arrowheads in Fig. 2J for comparison). Abbreviation: AO, apical organ.
FIGURE 1 in Rhinobatos manai sp. nov., a new species of guitarfish (Rhinopristiformes: Rhinobatidae) from New Ireland, Papua New Guinea
FIGURE 1. Dorsal view of Rhinobatos manai sp. nov., adult male holotype, 731 mm TL (NTUM 11500): A. freshly caught; B) preserved.
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