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30 results for “Areole”
Fig. 19 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 19. Lacronia tenuis (Roewer, 1917) comb. nov., ♂ (MNRJ 260). A. Habitus, dorsal view. B. Ocularium, frontal view. C. Armature of mesotergum area III, posterior view. D. Habitus, lateral view. E. Left Fe–Ti III, proventral view. F. Right Fe–Ti IV, dorsal view. G. Same, prolateral view. H. Same, ventral view. I. Same, retro-lateral view. J. Right Mt–Ta IV, retro-lateral view. Scale bars: A, D–J = 3 mm; B–C = 1 mm.
Fig. 14 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 14. South America, showing the distribution of the Lacronia nigra (B. Soares, 1942) comb. nov. non-type specimens (as white circles). The legend refers to the type localities of Discocyrtus niger B. Soares, 1942 (Piraí) and Discocyrtus rarus B. Soares, 1944 (Alto da Serra). The area shaded in magenta represents Chile, the type locality of Discocyrtus fazi Piza, 1942.
Fig. 15. Lacronia ricardoi Kury, 2003 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 15. Lacronia ricardoi Kury, 2003 (MZSP 21373), specimens in alcohol. A–C. Holotype, ♂ (MZSP 21373). A. Habitus, dorsal view. B. Same, lateral view. C. Same, ventral view. D–F. Paratype, ♀ (MZSP 10589). D. Habitus, dorsal view. E. Same, lateral view. F. Same, ventral view. Scale bars = 1 mm.
Fig. 18 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 18. Lacronia serripes (Mello-Leitão, 1923), ♂ (MNRJ 9973), penis, distal part. A. Dorsal view. B. Right lateral view. C. Ventral view. D. Left lateral view. Scale bars = 100 μm.
Fig. 13 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 13. Lacronia nigra (B. Soares, 1942) comb. nov., ♂ (MNRJ 9207ꜝ), penis, distal part. A. Dorsal view. B. Lateral view. C. Ventral view. Scale bars = 20 μm.
Fig. 10. Lacronia spp. A. L. camboriu Kury, 2003 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 10. Lacronia spp. A. L. camboriu Kury, 2003, ♂, holotype (MNRJ 4956ꜝ), specimen in alcohol, from Brazil, Santa Catarina, Balneário Camboriú. B. L. ceci Kury & Orrico, 2006, ♂, specimen in vivo, from Brazil, Rio de Janeiro, Teresópolis. Photographs by Adriano Kury (A) and Glauco Machado (B).
Fig. 9 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 9. Lacronia spp., female specimens, dorsal habitus. A. L. boraceae (B. Soares, 1942) comb. nov., holotype (MZSP 114ꜝ), schematic illustration. B. L. nigra (Mello-Leitão, 1923) comb. nov., holotype of Discocyrtus fazi Piza, 1942 (MZSP 1549ꜝ), schematic illustration. C. L. serripes Mello-Leitão, 1923 (MZSP 9973). Scale bars = 3 mm.
Fig. 11 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 11. Lacronia ceci Kury & Orrico, 2006, ♂ (MNRJ 6945ꜝ), penis, distal part. A. Dorsal view. B. Lateral view. C. Ventral view. D. Detail of stylus and ventral process, latero-dorsal view. Scale bars: A–C = 50 μm; D = 20 μm.
Fig. 8 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 8. Lacronia boraceae (B. Soares, 1942) comb. nov., ♂ (MNRJ-HS 122ꜝ), penis, distal part. A. Dorsal view. B. Lateral view. C. Ventral view. D. Detail of stylus and ventral process apex, dorsal view. Scale bars: A = 50 μm; B–C = 100 μm; D = 10 μm.
Fig. 6 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 6. Lacronia boraceae (B. Soares, 1942) comb. nov., ♂ (MNRJ-HS 122ꜝ), specimen in alcohol. A. Habitus, dorsal view. B. Same, ventral view. C. Same, lateral view. D. Armature of mesotergum area III, free tergites I–III and anal operculum, posterior view. E. Right Pa–Ti IV, retro-lateral view. Scale bars = 1 mm.
Fig. 7 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 7. Lacronia boraceae (B. Soares, 1942) comb. nov., ♂ (MNRJ-HS 122ꜝ). A. Habitus, dorsal view. B. Ocularium, frontal view. C. Armature of mesotergum area III, posterior view. D. Right Fe III, prodorsal view. E. Habitus, lateral view. F. Left Fe IV, proventral view. G. Right Fe IV, retro-ventral view. H. Right Pa–Ti IV, proventral view. I. Right Pa–Ti IV, ventral view. Scale bars: A, E = 4 mm; B–C = 1 mm; D, H–I = 2 mm; F–G = 3 mm.
Fig. 5 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 5. Southeasten and Southern regions of Brazil, showing the distribution of the Lacronia spp. The area shaded in green represents the Atlantic province, as proposed by Morrone et al. (2022).
Fig. 3 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 3. Lacronia spp., specimens in vivo. A–D. L. nigra (B. Soares, 1942) comb. nov., ♂, from Brazil, São Paulo, Santo André, Alto da Serra. E–H. L. tenuis (Roewer, 1917) comb. nov., ♂, from Brazil, Rio de Janeiro, Mangaratiba. Source: Adriano Kury.
Fig. 2 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 2. Cladogram depicting phylogenetic relationships of Lacronia Strand, 1942 and the outgroups, with synapomorphies supporting each clade mapped using ACCTRAN optimization. The tree represents the topology with shortest number of steps (k-values = 3.2, 4, 5, 6, 10, 15 and 20) recovered by TNT. Blue squares = nonhomoplastic synapomorphies; white circles = homoplastic synapomorphies. Numbers above symbols are the characters numbers. Numbers under symbols are the states numbers.
Fig. 16 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 16. Lacronia serripes (Mello-Leitão, 1923), ♂ (MZSP 14343), specimen in alcohol. A. Habitus, dorsal view. B. Same, lateral view. C. Same, ventral view. Scale bars = 1 mm.
Fig. 17 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 17. Lacronia serripes(Mello-Leitão, 1923), ♂ (MZSP 14342). A. Habitus, dorsal view.B. Ocularium, frontal view. C. Armature of mesotergum area III, posterior view. D. Habitus, lateral view. E. Left Fe– Ti III, proventral view. F. Right Fe–Ti IV, dorsal view. G. Same, prolateral view. H. Same, ventral view. I. Same, retro-lateral view. J. Right Mt–Ta IV, retro-lateral view. Scale bars: A, D–E, J = 2 mm; B–C = 1 mm; F–I = 3 mm.
Fig. 12 in Between areolated and band-shaped spots: a revision of Lacronia Strand, 1942 (Opiliones, Gonyleptidae)
Fig. 12. Lacronia nigra (B. Soares, 1942) comb. nov., ♂ (MNRJ 60385). A. Habitus, dorsal view. B. Ocularium, frontal view. C. Armature of mesotergum area III, posterior view. D. Fe–Ti III, prodorsal view. E. Habitus, lateral view. F. Detail of the Cx IV prodorsal distal apophysis, posterior view. G. Right Fe–Ti IV, dorsal view. H. Same, prolateral view. I. Same, ventral view. J. Same, retro-lateral view. K. Right Mt–Ta IV, retro-lateral view. Scale bars: A, D–E, K = 2 mm; B–C, F = 1 mm; G–J = 3 mm.
Data recorded for leaf size, and leaf vein and areole measurements taken from nine Magnoliaceae species
<p><span>Across species, the density of major veins in leaves scales inversely with leaf area. Yet, minor vein density manifests no clear relationship with respect to leaf are, despite having the potential to provide important insights into the trade-off between investments in leaf mechanical support, hydraulics, and light interception. </span><span>To examine this phenomenon, between 120−380 mature leaves from each of nine Magnoliaceae species were sampled</span><span> from Nanjing Forestry University campus and Nanjing Botanical Garden, Chinese Academy of Sciences, Nanjing, China in 2019 and 2020. The leaves were boiled, and the epidermal and mesophyll tissues were removed. The remaining leaf skeleton was stained to obtain a clear leaf venation network. The software LEAF GUI was used to obtain the data of leaf size, leaf vein and areole traits. The large sample size data render it possible to explore the scaling relationships between leaf size and each trait of leaf veins and areoles. This data set includes the information of leaf length, leaf width, leaf area, total vein length, total vein area, mean areole area per leaf, and the number of the areole sizes per leaf of the nine Magnoliaceae species.</span></p>
Data recorded for leaf size, and leaf vein and areole measurements taken from nine Magnoliaceae species
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FIGURE 3 in First record of the Indo-Pacific areolate grouper Epinephelus areolatus (Forsskål, 1775) (Perciformes: Epinephelidae) in the Mediterranean Sea
FIGURE 3. Intra-specific phylogenetic relationships of Epinephleus areolatus from the Indo-west Pacific, based on Maximum likelihood analysis (ML) with 500 replications of COI sequences mined from GenBank database. * - indicates sequenced mined from BOLD database; ** - unpublished data.
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International Brain Laboratory public data
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OpenNeuro
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