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FIGURE 4 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 4. (A) Dorsal view and (B) Ventral view of cranium of Pariolius pax, MPUJ 10047, paratype, 34.0 mm SL. Abbreviations of the anatomical parts: afo = anterior fontanel; apa = autopalatine; boc: basioccipital; epo = epioccipital; exo = exoccipital; exs = extrascapula; fro = frontal; let = lateral ethmoid; max = maxilla; mes = mesethmoid; nas = nasal; opf: optic foramen; osp: orbitosphenoid; par: parasphenoid; pfo = posterior fontanel; pmx = premaxilla; pro: prootic; pto = pterotic; pts: pterosphenoid; soc = supraoccipital; and sph = sphenotic; tff: trigeminofacial foramen; vom = vomer.

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FIGURE 3 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 3. Laterosensory pores of Pariolius pax MPUJ 10047, paratype, 34.0 mm SL. (A) Lateral view. (B) Dorsal view. (C) Ventral view. Abbreviations of the anatomical parts: i1 = infraorbital sensory pore 1; i3−6 = infraorbital sensory pores 3–6; ll1-3 = lateral line sensory pores 1–3; pm1–10 = preoperculomandibular sensory pores 1–10; po1 + pm11 = postotic sensory pore 1 + preoperculomandibular sensory pore 11; po2 = postotic sensory pore 2; po3 = postotic sensory pore 3; s1 = supraorbital sensory pore 1; s2 + i2 = supraorbital sensory pore 2 + infraorbital sensory pore 2; s3 = supraorbital sensory pore 3; s8 = supraorbital sensory pore 8.

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FIGURE 1 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 1. Pariolius pax, new species, MHNU-I, 3258, holotype, 38.8 mm SL, Ovejas creek tributary to Guaviare River, Meta State. (A) Lateral view. (B) Ventral view. (C) Dorsal view. Bar = 1 cm.

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FIGURE 8 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 8. Live specimen of (A) Pariolius pax collected in Mapiripán Municipality, vereda San Jorge, Caño Ovejas tributary of the Guaviare River, Orinoco River basin, Meta, Colombia (not preserved) and (B) P. maldonadoi collected in Retorno Municipality, Caño Potosí tributary of the Inírida River, Orinoco River basin, Guaviare, Colombia.

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FIGURE 6 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 6. Lateral view of suspensorium (A) Pariolius pax, MPUJ 10047, paratype, 34.0 mm SL. (B) Pariolius maldonadoi, MPUJ 13076, paratype, 28.4 mm SL. Abbreviations of the anatomical parts: hyo = hyomandibula; ent = entopterygoid; iop = interopercle; met = metapterygoid; ope = opercle; pop = preopercle; qua = quadrate and spo = subpreopercle.

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FIGURE 2 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 2. Lateral view of the caudal skeleton of (A) Pariolius pax, MPUJ 10047, paratype, 34.0 mm SL (B) Pariolius maldonadoi, MPUJ 13076, paratype, 28.4 mm SL. Abbreviations of the anatomical parts: ep = epural; hi1 + hi2 = complex plate formed by hypurals 1 and 2; hi3+hi4 = complex plate formed by hypurals 3, 4; hi5 = hypural 5; ph = parhypural; pu1 + u1 = complex centrum formed by preural centrum 1 and ural centrum 1; pu2 = preural centrum 2; ur = uroneural.

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FIGURE 12 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 12. (A) Dorsal view and (B) Ventral view of cranium of Pariolius maldonadoi, MPUJ 13076, paratype, 28.4 mm SL. Abbreviations of the anatomical parts: afo = anterior fontanel; apa = autopalatine; boc: basioccipital; epo = epioccipital; exo = exoccipital; exs = extrascapula; fro = frontal; let = lateral ethmoid; max = maxilla; mes = mesethmoid; nas = nasal; opf: optic foramen; osp: orbitosphenoid; par: parasphenoid; pfo = posterior fontanel; pmx = premaxilla; pro: prootic; pto = pterotic; pts: pterosphenoid; soc = supraoccipital; and sph = sphenotic; tff: trigeminofacial foramen; vom = vomer.

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FIGURE 11 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.

FIGURE 11. Laterosensory pores of Pariolius maldonadoi, MPUJ 13077, paratype, 27.3 mm SL. (A) Lateral view. (B) Dorsal view. (C) Ventral view. Abbreviations of the anatomical parts: i1 = infraorbital sensory pore 1; i3−6 = infraorbital sensory pores 3–6; ll1−3 = lateral line sensory pores 1–3; pm1–10 = preoperculomandibular sensory pores 1–10; po1 + pm11 = postotic sensory pore 1 + preoperculomandibular sensory pore 11; po2 = postotic sensory pore 2; po3 = postotic sensory pore 3; s1 = supraorbital sensory pore 1; s2 + i2 = supraorbital sensory pore 2 + infraorbital sensory pore 2; s3 = supraorbital sensory pore 3; s8 = supraorbital sensory pore 8.

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Video-based learning of coping strategies for common errors improves laparoscopy training - a randomized study

<p>Instructional video material from the doctoral thesis &quot;Introducing a coping role model to increase the learning efficiency in learning laparoscopic knot tying&nbsp; - a randomised controlled trial&quot; by Ms Annabelle Gerh&auml;user at Heidelberg University, Medical School.</p> <p>Developing the skills needed to perform minimally invasive procedures requires intensive training of trainee surgeons. Laparoscopic knot tying is a particularly challenging technique. Subjects of the study learned this technique with the help of instructional videos developed specifically for this purpose. These &quot;coping videos&quot; show typical mistakes made by beginners and the corresponding solution strategies. They have been validated before use in the above-mentioned study.</p> <p>Coping Video 1 - Needle Load</p> <p>Coping Video 2 - Handling &amp; Tissue</p> <p>Coping Video 3 - Tail length</p> <p>Coping Video 4 - Difficulties in knot tying</p> <p>Coping Video 5 - Lift &amp; drift</p> <p>&nbsp;</p>

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Fig. 12 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 12. Apostolepis dimidiata (Jan, 1862), putative sister-species of Apostolepis albicollaris Lema, 2002, adult specimen from Estação Ecológica Santa Bárbara, São Paulo, Brazil. Photograph credit: Giordano Rossi.

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Fig. 11 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 11. Lateral (A, E), medial (B, F), dorsal (C, G), and ventral (D, H) views of the lower jaw based on μCT imagery. A–D. Apostolepis albicollaris Lema, 2002, holotype (MCP 8355). E–H. A. cerradoensis Lema, 2003, holotype (MCP 15219). Different skull elements are digitally colored to improve visualization. Abbreviations: AN = angular; CP = compound bone; D = dentary; DPD = dorsal process of dentary; PCR = prearticular crest of compound bone; RP = retroarticular process of compound bone; SAC = surangular crest of compound bone; SP = splenial; VDP = ventral process of dentary.

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Fig. 10 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 10. Anterior (A, C) and posterior (B, D) views of the skull and lower jaw based on μCT imagery. A–B. Apostolepis albicollaris Lema, 2002, holotype (MCP 8355). C–D. A. cerradoensis Lema, 2003, holotype (MCP 15219). Different skull elements are digitally colored to improve visualization. Abbreviations: AN = angular; BO = basioccipital; BS = basisphenoid; CP = compound bone; D = dentary; EXO = exoccipital; F = frontal; MX = maxilla; NA = nasal; P = parietal; PAL = palatine; PFR = prefrontal; PMX = premaxilla; PRO = prootic; PT = pterygoid; Q = quadrate; SMX = septomaxilla; SO = supraoccipital; SP = splenial; ST = supratemporal.

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Fig. 9 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 9. Dorsal (A, D), lateral (B, E), and ventral (C, F) views of the skull based on μCT imagery. A–C. Apostolepis albicollaris Lema, 2002, holotype (MCP 8355). D–F. A. cerradoensis Lema, 2003, holotype (MCP 15219). Different skull elements are digitally colored and the mandible is removed for better visualization. Abbreviations: BO = basioccipital; BS = basisphenoid; ECP = ectopterygoid; EXO = exoccipital; F = frontal; MX = maxilla; NA = nasal; P = parietal; PAL = palatine; PFR = prefrontal; PMX = premaxilla; PRO = prootic; PT = pterygoid; Q = quadrate; SMX = septomaxilla; SO = supraoccipital; ST = supratemporal; V = vomer.

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Fig. 8 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 8. Consensus topology of Apostolepis Cope, 1862 BI and ML phylogenetic relationships, support given in Bootstrap (top,&gt; 80) for maximum likelihood inference and Consensus Support (bottom,&gt; 80) for Bayesian inference. Scale bar = molecular distance. Inset photograph: Apostolepis albicollaris Lema, 2002 by Luís Felipe Carvalho de Lima.

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Fig. 6. Apostolepis albicollaris Lema, 2002 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 6. Apostolepis albicollaris Lema, 2002, sexual dimorphism in morphometric (SVL, TL) and meristic (ventrals, subcaudals) characters. Outliers are indicated as circles, A. cerradoensis Lema, 2003 holotype indicated as red star.

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Fig. 7 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 7. Geographic distribution of Apostolepis albicollaris Lema, 2002 in the Cerrado of Central Brazil. A. Total range, with minimum convex polygon representing extent of occurrence. B. Natural habitat remnants and land use and land cover changes (collection 4, MapBiomas 2021) within the range of A. albicollaris. C. Fire frequency between 2005 and 2015 (collection 1, MapBiomas 2021) within the range of A. albicollaris. D. Protected areas (ICMBio 2021) within the range of A. albicollaris.

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Fig. 5. Apostolepis albicollaris Lema, 2002 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 5. Apostolepis albicollaris Lema, 2002, hemipenis. Sulcate and asulcate sides. Drawings: Arthur Tiutenko.

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Fig. 4 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 4. Similar red species of Apostolepis Cope, 1862. A–F. Apostolepis albicollaris Lema, 2002 in life, adult individuals from Brasília, Distrito Federal, Brazil. G–H. Apostolepis dimidiata (Jan, 1862) in life, adult individual from Laguna Blanca, San Pedro, Paraguay. I–J. Apostolepis quirogai Giraudo &amp; Scrocchi, 1998 in life, adult individual from Misiones, Argentina. Photograph credits: Cyro de Sousa Bernardes (A, C–D), Luís Felipe Carvalho de Lima (E–F), Jean-Paul Brouard (G–H), Amado Martínez (I–J), and Gabriel Horta (B).

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Fig. 3. Apostolepis albicollaris Lema, 2002 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 3. Apostolepis albicollaris Lema, 2002, holotype (MCP 15219) from Minaçu, Goiás, Brazil. Head scalation. Drawings: Arthur Tiutenko.

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Fig. 1 in Unveiling an enigma from the Cerrado: taxonomic revision of two sympatric species of Apostolepis Cope, 1862 (Dipsadidae: Xenodontinae: Elapomorphini) from central Brazil

Fig. 1. Degrees of morphological variation in dorsal and ventral view, of Apostolepis Cope, 1862 from the Cerrado. A. Apostolepis albicollaris Lema, 2002, holotype from Brasília, Distrito Federal, Brazil (MCP 8355). B. Apostolepis albicollaris, specimen from Ipameri, Goiás, Brazil (IBSP 092627). C. Apostolepis cerradoensis Lema, 2003, holotype from Minaçu, Goiás, Brazil (MCP 15219). Notice the varying degrees of ventral melanism polymorphism, ranging from uniformly black, to black and cream, and uniformly cream. Photograph credits: Douglas Sebben (A, C), Rafael P. Benetti (B). Scale bars = 10 mm.

opencc-by-4.0May 2022View details →

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