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117 results for “Labrum”
Figure 12-17. Epipharyngeal features. 12 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 12-17. Epipharyngeal features. 12) Diapterna hamata (Say, 1824). 13) Labarrus lividus (Olivier, 1789). 14) Neotrichonotulus inurbanus (Gordon and Howden, 1973). 15) Blackburneus aegrotus (Horn, 1870). 16) Oxycorythus morawitzi Solsky, 1876. 17) Acrossus luridus (Fabricius, 1775).
Figure 42-47. Epipharyngeal features. 42 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 42-47. Epipharyngeal features. 42) Melinopterus prodromus (Brahm, 1790). 43) Gonaphodiellus caracanus (Balthasar, 1970). 44) Diapterna omissa (LeConte, 1850). 45) Oxyomus setosopunctatus (Schmidt, 1911). 46) Ferrerianus biimpressus (Schmidt, 1909). 47) Cryptoscatomaseter ochreipennis (Horn, 1871).
Figure 36-41. Epipharyngeal features. 36 in The morphology of the labrum (epipharynx, ikrioma and aboral surface) of adult Aphodiini (Coleoptera: Scarabaeidae: Aphodiinae), and its implications for systematics
Figure 36-41. Epipharyngeal features. 36) Neagolius liguricus (Daniel, 1902). 37) Neagolius penninus (Daniel, 1902). 38) Neagolius praecox (Erichson, 1848). 39) Cephalocyclus durangoensis (Bates, 1887). 40) Cinacanthus militaris (LeConte, 1858). 41) Emadiellus rufopustulatus (Wiedeman, 1823).
Figure 1-44. Labrum. 1 in Revision of Hawaiian, Australasian, Oriental, and Japanese Parandrinae (Coleoptera, Cerambycidae)
Figure 1-44. Labrum. 1) Papuandra araucariae, male. 2) P. araucariae, female. 3) P. gressitti, holotype male. 4) P. weigeli, holotype male. 5) P. weigeli, paratype female. 6) P. queenslandensis, holotype female. 7) P. norfolkensis, holotype male. 8) P. norfolkensis, paratype female. 9) P. rothschildi, holotype male. 10) P. rothschildi, paratype female. 11) P. oberthueri, holotype female. 12) Caledonandra austrocaledonica, male. 13) C. austrocaledonica, female. 14) C. passandroides, male. 15) C. passandroides, female. 16) Storeyandra frenchi, male. 17) S. frenchi, female. 18) Malukandra heterostyla, holotype male. 19) M. jayawijayana, holotype male. 20) M. hornabrooki, holotype male. 21) M. hornabrooki, paratype female. 22) Melanesiandra striatifrons, male. 23) M. striatifrons, holotype female of Parandra vitiensis. 24) M. solomonensis, male. 25) M. solomonensis, female. 26) M. bougainvillensis, holotype male. 27) M. bougainvillensis, paratype female. 28) M. birai, holotype male. 29) Stenandra kolbei, female. 30) Hawaiiandra puncticeps, male. 31) Komiyandra janus, female. 32) K. shibatai, male. 33) K. shibatai, female. 34) K. formosana, male. 35) K. formosana, female. 36) K. lanyuana, male. 37) K. lanyuana, female. 38) K. javana, holotype male. 39) K. javana, paratype female. 40) K. nayani, paratype male. 41) K. nayani, paratype female. 42) K. ohbayashii, holotype male. 43) K. ohbayashii, paratype female. 44) K. vivesi, holotype male.
Figs. 66–73. 66–69. Parammobatodes rozeni female. 66. Labrum laterally. 67. Labrum dorsally. 68. Antenna from left. 69. Frons sculpture. 70–73. Parammobatodes nuristanus, female. 70. Labrum laterally. 71. Labrum dorsally. 72. Antenna from left. 73 in Oocytes, Eggs, and Ovarioles of Some Long-Tongued Bees (Hymenoptera: Apoidea)
Figs. 66–73. 66–69. Parammobatodes rozeni female. 66. Labrum laterally. 67. Labrum dorsally. 68. Antenna from left. 69. Frons sculpture. 70–73. Parammobatodes nuristanus, female. 70. Labrum laterally. 71. Labrum dorsally. 72. Antenna from left. 73. Frons sculpture.
RAW DATA - The morphofunctional implications of glenoid labrum of the glenohumeral joint in hominoids
<p>Here we present the raw data for the study titled: "<strong>The morphofunctional implications of glenoid <em>labrum</em> of the glenohumeral joint in hominoids". </strong>A morphocline of the glenoid cavity has been used to infer differences in locomotor behaviors; however, the glenoid cavity is surrounded by the glenoid <em>labrum</em>, a fibrocartilaginous structure that could influence the functionality of the glenoid. The objectives of this study are to explore the effects of the glenoid <em>labrum</em> on the area, depth, and morphology of the glenoid cavity in primates. Photogrammetry was used to build 3D models of the glenoid, with and without the <em>labrum</em>, and three- (3D) and two-dimensional (2D) geometric morphometry (GM) was applied. 2D areas were collected from zenithal images for glenoids with and without <em>labrum</em> to evaluate the availability of articular surface area. The glenoid <em>labrum</em> changes the shape, increases the depth and the surface area of the glenoid cavity, particularly in humans. Therefore, the glenoid <em>labrum</em> might hold a functional role, increasing the stability of the glenohumeral joint of primates in general, and especially in humans.</p>
Figure 1. Nandeva fittkaui Cranston, putative larva. a. Antenna, b. Labrum, c. Mandible ventral, c. Mandible ventral, e in AN ENIGMATIC CHIRONOMIDAE (DIPTERA): FIRST LARVAL DESCRIPTION FOR NANDEVA WIEDENBRUG, REISS AND FITTKAU AND EVIDENCE FOR PHYLOGENETIC POSITION IN TANYTARSINI Abstract
Figure 1. Nandeva fittkaui Cranston, putative larva. a. Antenna, b. Labrum, c. Mandible ventral, c. Mandible ventral, e. Mentum, with teeth enhanced, f. Mentum with ventromental plates enhanced.
FIGS. 286–296. Orus. 286–295. Orus rubens. 286. Head. 287. Prothorax. 288. Labrum, male. 289. Tergites IX, X, female. 290. Lateral gonocoxal plates. 291. Sternite IX, male. 292. Tergites IX, X, male. 293. Labrum, female. 294–295. Mandibles, dorsal. 296 in Generic Revisions Of The Scopaeina And The Sphaeronina (Coleoptera: Staphylinidae: Paederinae: Lathrobiini)
FIGS. 286–296. Orus. 286–295. Orus rubens. 286. Head. 287. Prothorax. 288. Labrum, male. 289. Tergites IX, X, female. 290. Lateral gonocoxal plates. 291. Sternite IX, male. 292. Tergites IX, X, male. 293. Labrum, female. 294–295. Mandibles, dorsal. 296. Orus dentiger, labrum, female.
Arthroscopic Labral Repair Versus Physical Therapy for Tears of the Acetabular Labrum
ClinicalTrials.gov study NCT03909178. IPD Sharing: NO. Countries: 1. Publications: 60.
FIGURES 389–395. Thraulodes spangleri, labrum. 389–391 in Systematic position of Thraulodes Ulmer 1920 (Ephemeroptera: Leptophlebiidae) and descriptions of new and little-known species
FIGURES 389–395. Thraulodes spangleri, labrum. 389–391, one specimen: 389, general view with focus on dorsal side and posterior transverse setal row; 390, focus on ventral side and denticles; 391, outline of denticles separated by four sensilla (shown as dots). 392–395, another specimen: 392, focus on dorsal side and posterior setal row; 393, focus on anterior transverse setal row (transformed to field of irregularly situated setae); 394, focus on denticles and tips of irregularly situated setae of the anterior row; 395, outlines of vestigial denticles separated by incisions and two sensilla.
Habitus of an Agonum specimen, arrow indicates labrum
<p>Habitus of an Agonum specimen, arrow indicates labrum, png file</p>
FIGURE 2, Paratype ZMH K40074 A Mandibles, B Labrum, C Maxilla, D Maxillula, E Epignath, F Maxilliped, G in Paranarthrura Hansen, 1913 (Crustacea: Tanaidacea) from the Angola Basin, description of Paranarthrura angolensis n. sp.
FIGURE 2, Paratype ZMH K40074 A Mandibles, B Labrum, C Maxilla, D Maxillula, E Epignath, F Maxilliped, G Labium.
FIGURE 3. Glyptelasma gigas. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus VI, H. Caudal appendage, I in North West Pacific deep-sea barnacles (Cirripedia, Thoracica) collected by the TAIWAN expeditions, with descriptions of two new species
FIGURE 3. Glyptelasma gigas. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus VI, H. Caudal appendage, I. Cutting edge of labrum. Scale bars in µm, except F, G in mm.
FIGURE 9. Trianguloscalpellum hirsutum. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus II, H. Cirrus IV, I in North West Pacific deep-sea barnacles (Cirripedia, Thoracica) collected by the TAIWAN expeditions, with descriptions of two new species
FIGURE 9. Trianguloscalpellum hirsutum. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus II, H. Cirrus IV, I. Cutting edge of labrum. Scale bars in µm, except F–H in mm.
FIGURE 10. Trianguloscalpellum regium. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus II, H in North West Pacific deep-sea barnacles (Cirripedia, Thoracica) collected by the TAIWAN expeditions, with descriptions of two new species
FIGURE 10. Trianguloscalpellum regium. A. Maxilla, B. Maxillule, C. Mandible, D. Mandibular palp, E. Labrum, F. Cirrus I, G. Cirrus II, H. Caudal appendage. Scale bars in µm, except F, G in mm.
FIGURE 7. Scanning electron micrograph showing labrum from paratype 1 C in Coarazuphium tapiaguassu (Coleoptera: Carabidae: Zuphiini), a new Brazilian troglobitic beetle, with ultrastructural analysis and ecological considerations
FIGURE 7. Scanning electron micrograph showing labrum from paratype 1 C. tapiaguassu. (A) Dorsal view of the labrum. Bar = 20 μm. (B) Close-up on apical setae insertion in the labrum. Bar = 10 μm.
FIGURE 9. Scanning electron micrograph showing labrum from paratype 1 C. formoso, L in Ultrastructural analysis of Coarazuphium formoso (Coleoptera: Carabidae, Zuphiini), a new Brazilian troglobitic beetle
FIGURE 9. Scanning electron micrograph showing labrum from paratype 1 C. formoso, L = labrum. (A) Ventral view of the labrum. Bar = 100µm. (B) Close-up on ventral view of the labrum. Bar = 20µm.
FIGURE 1. Amigdoscalpellum torbenwolffi Zevina, 1981. A. Left side view, B. External view from rostral side, C. External view from carinal side, D. Labrum, E. Labial palp, F. Mandible, G. Maxilla I, H. Maxilla II, I in New records of deep-sea barnacles (Cirripedia: Thoracica: Scalpelliformes) from the Clarion-Clipperton region, Pacific Ocean
FIGURE 1. Amigdoscalpellum torbenwolffi Zevina, 1981. A. Left side view, B. External view from rostral side, C. External view from carinal side, D. Labrum, E. Labial palp, F. Mandible, G. Maxilla I, H. Maxilla II, I. Caudal appendage.
FIGURES 2–11. Paracloedes caldensis, nymph. 2a. Labrum, left d.v., right v.v in Paracloeodes caldensis (Ephemeroptera: Baetidae), an atypical new species from the Colombian Andes
FIGURES 2–11. Paracloedes caldensis, nymph. 2a. Labrum, left d.v., right v.v.; 2b. Labrum: apical setae (detail); 3a. Left mandible; 3b. Detail of teeth of molars; 4. Right mandible; 5. Hypopharynx; 6. Maxilla; 7. Labium, left d.v., right v.v.; 8. Paraproct; 9. Posterior margin of tergum IV; 10. Gill IV; 11. Foreleg; 12. Tarsal claw.
FIGURE 5. Paederus xuei. A male left mandible B male right mandible C female right mandible D male labrum E female labrum F female tergite VIII G female sternite VIII H female sternite IX I male tergite VIII J male sternite VIII K male tergite IX L in New data on the subgenus Gnathopaederus of the genus Paederus (Coleoptera: Staphylinidae: Paederinae) of mainland China
FIGURE 5. Paederus xuei. A male left mandible B male right mandible C female right mandible D male labrum E female labrum F female tergite VIII G female sternite VIII H female sternite IX I male tergite VIII J male sternite VIII K male tergite IX L aedeagus in ventral view M aedeagus in lateral view N aedeagus in dorsal view. Scale bars: 0.5 mm.
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