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432 results for “nominalization”
FIGURES 32–36 in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURES 32–36. Ramazzottius cf. conifer comb. nov. (Mihelčič, 1938) from Scotland, seen in PCM: 32—habitus, ventral view; 33—claws I; 34—claws IV; 35—egg, note underdeveloped processes in the upper right part of the egg; 36—the other side of the same egg, note rows of connected processes characteristic for the species. All scale bars in µm.
FIGURES 1–4 in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURES 1–4. Hypsibius dujardini (Doyère, 1840): 1—adult habitus (ventrolateral view, PCM, neotype); 2—ex ovo juvenile habitus (ventral view, PCM, neoparatype); 3—bucco-pharyngeal apparatus (dorso-ventral projection, the arrowhead indicates large pharyngeal apophyses, PCM, neoparatype); 4—bucco-pharyngeal apparatus (ventral view, SEM, neoparatype). All scale bars in µm.
FIGURES 17–24 in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURES 17–24. Details of the bucco-pharyngeal apparatus of the Hypsibius type (in SEM): 17—peribuccal ring and the oral cavity armature of H. dujardini, the arrow indicates the row of conical teeth located on the ring fold; 18—oral cavity armature of H. exemplaris sp. nov., the arrow indicates the row of conical teeth located on the ring fold whereas the empty arrowhead indicates the porous area on the lateral wall of the cavity; 19—the buccal crown and the dorsal apophyses for insertion of stylet muscles (AISM) of H. exemplaris; 20—the buccal crown and both dorsal and ventral apophyses for insertion of stylet muscles (AISM) of H. exemplaris sp. nov. in lateral view; 21—furca of H. exemplaris sp. nov., external side; 22—furca of H. dujardini, internal side with the stylet support; 23—pharynx of H. dujardini, arrowheads point out evident macroplacoid constrictions; 24—pharynx of H. exemplaris sp. nov., arrowheads point out subtle macroplacoid constrictions. All scale bars in µm.
FIGURE 31 in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURE 31. An ML COI-based phylogenetic tree of the subfamily Hypsibiinae with; Mesocrista spitzbergensis (Itaquasconinae) as an outgroup. ML bootstrap support values are presented below tree branches.
FIGURE 30. A in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURE 30. A Bayesian phylogenetic tree of the family Hypsibiidae based on 18S rRNA sequences, with two Macrobiotus spp. as an outgroup. Bayesian posterior probability values are given above tree branches whereas ML support values are below branches. The scale refers to the Bayesian tree.
FIGURES 13–16 in An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada)
FIGURES 13–16. Hypsibius exemplaris sp. nov., claws: 13—claws III (PCM, holotype); 14—claws IV, arrowhead points longitudinal bar at the posterior claw basis, and empty arrowhead indicates pseudolunula at the anterior claw basis (PCM, paratype); 15—claws III (SEM, paratype); 16—claws IV, arrowhead points longitudinal bar at the posterior claw basis, and empty arrowhead indicates pseudolunula at the anterior claw basis (SEM, paratype). All scale bars in µm.
FIGURE 12 in Dryophthorinae weevils (Coleoptera: Curculionidae) of the forest floor in Southeast Asia: illustrated overview of nominal Stromboscerini genera
FIGURE 12. Rеcеnt Stromboscеrіnі, gеnеrіc and spеcіеs namеs arе unknown. Thе only adult spеcіmеn rеcordеd from thе maіnland Afrіca: Uganda (A); onе of thrее spеcіmеns known from thе Wеstеrn Hеmіsphеrе (Cuba).
FIGURE 1 in Dryophthorinae weevils (Coleoptera: Curculionidae) of the forest floor in Southeast Asia: illustrated overview of nominal Stromboscerini genera
FIGURE 1. Dіstrіbutіon of Rеcеnt Stromboscеrіnі. Poіnts іn Uganda and Cuba rеprеsеnt nеw trіbе's rеcords, іdеntіty of whіch rеquіrеs vеrіfіcatіon.
FIGURE 7 in Dryophthorinae weevils (Coleoptera: Curculionidae) of the forest floor in Southeast Asia: illustrated overview of nominal Stromboscerini genera
FIGURE 7. Rеcеnt Stromboscеrіnі, gеnus Stromboscerus (A–L). A–D: habіtus; E: lеft antеnna, dorsal; F: hеad, vеntral; G: lеft tarsus, vеntral; H–K: malе gеnіtalіa (K: wіth stеrnіtе 9); L: stеrnіtе 9.
FIGURE 11 in Dryophthorinae weevils (Coleoptera: Curculionidae) of the forest floor in Southeast Asia: illustrated overview of nominal Stromboscerini genera
FIGURE 11. Rеcеnt Stromboscеrіnі, gеnеra Tetrasynommatus (A) and Xerodermus (В–C). Orіgіnal іmagе showіng thе rіght latеral vіеw of thе syntypе of Xerodermus porcellus іs dіgіtally mіrrorеd, so to artіfіcіally appеar as lеft latеral vіеw.
FIGURE 6 in Dryophthorinae weevils (Coleoptera: Curculionidae) of the forest floor in Southeast Asia: illustrated overview of nominal Stromboscerini genera
FIGURE 6. Rеcеnt Stromboscеrіnі, gеnus Orthosinus (A, В); gеnus Parasynommatus (C) tіll now maіntaіnеd іn Stromboscеrіnі іs hеrеіn transfеrrеd to Cossonіnaе incertae sedis.
FIGURE 5 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 5. Lateral view of head (A) and ontogenetic changes in lacrimal spines (B–D) of Scorpaena neglecta. A, KAUM–I. 20851, 296.4 mm SL; B, KAUM–I. 70019, 80.9 mm SL; C, KAUM–I. 64638, 130.4 mm SL; D, KAUM–I. 1321, male, 185.2 mm SL. ALS, anterior lacrimal spine; PLS, posterior lacrimal spine. Numerous small papillae and sensory pores on head not illustrated. Scale bars indicate 5 mm.
FIGURE 6 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 6. Relationships of A, head width; B, orbit diameter; C, maxilla depth; D, between ventral margin of orbit and suborbital ridge; E, occipital pit width; F, pelvic-fin spine length (all as % of standard length) to standard length in Scorpaena neglecta. Closed red, yellow, green, blue, and orange stars indicate type specimens of S. neglecta, S. fimbriata, S. izensis, S. hemilepidota, and S. armata, respectively.
FIGURE 3 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 3. Distributional records of Scorpaena neglecta based on a previous report from New Guinea (Fricke et al., 2014) and collected specimens examined in this study. Closed red, yellow, green, blue, and orange circles indicate type localities of S. neglecta, S. fimbriata, S. izensis, S. hemilepidota, and S. armata, respectively.
FIGURE 2 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 2. Primary type specimens of four nominal species identified herein as Scorpaena neglecta. A, MZS 1145, syntype of Scorpaena fimbriata, 115.8 mm SL; B, USNM 50909, holotype of Scorpaena izensis, 191.6 mm SL; C, USNM 98884, holotype of Scorpaena hemilepidota, 150.6 mm SL; D, USNM 98893, holotype of Scorpaenopsella armata, 65.7 mm SL.
FIGURE 1 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 1. Lectotype (A) and paralectotypes (B–F) of Scorpaena neglecta. A, S. neglecta, RMNH.PISC. 619, 187.4 mm SL; B, S. neglecta, RMNH.PISC. 618, 139.8 mm SL; C, S. miostoma, RMNH.PISC. 620; D, S. miostoma, RMNH.PISC. 621; E, S. miostoma, RMNH.PISC. 622; F, S. miostoma, RMNH.PISC. 623. All stuffed specimens.
FIGURE 4 in Redescription of the Indo-West Pacific scorpionfish Scorpaena neglecta Temminck & Schlegel, 1843, a senior synonym of four nominal species (Teleostei: Scorpaenidae)
FIGURE 4. Life stages of Scorpaena neglecta. A, KAUM–I. 57776, 64.0 mm SL; B, KAUM–I. 19113, male, 96.0 mm SL; C, KAUM–I. 9648, male, 149.1 mm SL; D, KAUM–I. 9227, male, 171.6 mm SL; E, KAUM–I. 54075, male, 198.2 mm SL; F, KAUM–I. 97664, 226.9 mm SL; G, KAUM–I. 20851, 296.4 mm SL.
Workshop exercise "Nominal group technique to generate initial EPAs"
<p><span>This 20 minute workshop exercise is meant to get acquainted (a) with the NGT technique and (b) with a procedure to generate initial EPAs as a starting point for discussion. The exercise is meant to be continued with the elaboration of one EPA using the 8-section model as described in AMEE Guide 140</span></p> <p><span>Belongs to:</span></p> <p><span><span>ten Cate O, Burch VC, Chen HC, Chou FC, Hennus MP. (Eds). <em>Entrustable Professional Activities and Entrustment Decision-Making in Health Professions Education</em>. Chapter 25, 2024. London: Ubiquity Press.</span></span></p> <p> </p>
Figure 1 in Resolving the taxonomic status of Ctenomys paramilloensis (Rodentia, Ctenomyidae), an Andean nominal form from Mendoza Province, Argentina
Figure 1: Map of Mendoza province (A–B) and study area (red square in B; C) showing the distribution of the new samples (black squares; B–C) of C. mendocinus obtained in this study and previous Ctenomys records (white circles; B) recovered within C. mendocinus clade. Numbers (B–C) correspond to terminals of C. mendocinus clade in Figure 3. Elevation gradient is represented in the bottom panel.
Figure 3 in Resolving the taxonomic status of Ctenomys paramilloensis (Rodentia, Ctenomyidae), an Andean nominal form from Mendoza Province, Argentina
Figure 3: Phylogenetic placement of Ctenomys specimen from the Sierra de Uspallata (indicated in bold) based on the 50 % majority-rule consensus tree from BI analyses. Black circles denote nodes that are strongly supported by both BI and ML analyses; gray circles indicate nodes that are moderately supported by either BI or ML (threshold values indicated).
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