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1,196 results for “Minerals”
Figure 1 in Breeding biology of the threatened Campo Miner Geositta poeciloptera (Aves: Scleruridae), a Neotropical grassland specialist
Figure 1. (a) Location of the study area. (b) Detail of the study area, depicting the Rio Grande. Grey areas are above 900 m asl. (c) Detail of the study area, depicting the limits of the municipality of São João del-Rei and the remaining patches of natural grasslands according to Carvalho and Scolforo (2008). Records of the Campo Miner for other municipalities were not depicted.
Figure 2 in Breeding biology of the threatened Campo Miner Geositta poeciloptera (Aves: Scleruridae), a Neotropical grassland specialist
Figure 2. Number of active nests of the Campo Miner found during the 2014 to 2016 breeding seasons in São João del-Rei, south-eastern Brazil. Each month was subdivided in three periods of 10 days each (I, II and III) and each nest was counted only once during each stage: nest with eggs (day of laying of the first egg) and nest with nestlings (day of hatching of the first egg). Each nest was counted only once for tallying the number of active nests.
Figs. 1–3. Javeta pallida. 1 in First Report of the Indian Date Palm Leaf Miner, Javeta pallida Baly (Coleoptera: Chrysomelidae: Cassidinae: Coelaenomenoderini), on Pygmy Date Palm, Phoenix roebelenii O'Brien (Arecaceae)
Figs. 1–3. Javeta pallida. 1) Adult; 2) Infestation on Phoenix roebelenii in Kerala, India; 3) Infested leaflets.
Hypercalciuria in postmenopausal women with reduced bone mineral density is associated with different mineral metabolic profiles: effects of treatment with thiazides and anti-resorptives
<pre>Hypercalciuria in postmenopausal women with reduced bone mineral density is associated with different mineral metabolic profiles: effects of treatment with thiazides and anti-resorptives</pre>
FIGURES 53–60. Leaf mines and adults. 53–55 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 53–60. Leaf mines and adults. 53–55, leaf mines of Coptotriche sp. discovered on the eastern slopes of the Peruvian Andes; 56, 57, novel host plant, Serjania sp., possibly S. grandis Seem. (Sapindaceae); 58, habitat where the leaf mines were found on the eastern slopes of the Peruvian Andes (Huacapistana, NW of Carpapata, 2900 m); 59, 60, male holotype of C. carmencita Stonis & Diškus, a recently described species (Stonis et al. 2019a) discovered in the Peruvian "selva alta" (Ecological Park Fundo San José, La Merced, Junín Region, Peru, 840–900 m)
FIGURES 35–40 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 35–40. Male genitalia of Astrotischeria yungasi Diškus & Stonis, sp. nov. 35, capsule with phallus removed, holotype, genitalia slide no. AD1070; 36, uncus, paratype, genitalia slide no. AD1034; 37, valvae and vinculum, paratype, genitalia slide no. AD1034; 38, phallus, holotype, genitalia slide AD1070; 39, 40, details of capsule, paratype, genitalia slide no. 1034 (ZIN)
FIGURES 11–18 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 11–18. Astrotischeria serjaniphaga Remeikis & Stonis, sp. nov. 11–13, leaf mines on Serjania Mill., possibly S. squarrosa Radlk. (Sapindaceae), Curahuasi, Apurímac Department, central Peru, at an elevation of about 2700 m; 14, 15, male adult, holotype; 16–18 pupal exuviae (NRC)
FIGURES 47–52 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 47–52. Female genitalia of new Astrotischeria species. 47, 48, A. yungasi Diškus & Stonis, sp. nov., paratype, genitalia slide no. AD1068; 49, 50, A. mystica Diškus & Stonis, sp. nov., paratype, genitalia slide no. AD1051; 51, 52, A. parapallens Diškus & Stonis, sp. nov., paratype, genitalia slide no. AD1042 (ZIN)
FIGURES 41–46 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 41–46. Male genitalia of Astrotischeria parapallens Diškus & Stonis, sp. nov. 41, capsule with phallus removed, holotype, genitalia slide no. AD1045; 42, dorsal lobes of valvae, paratype, genitalia slide no. AD1052; 43, basally connected valvae and vinculum, paratype, genitalia slide no. AD1052; 44, apex of phallus, paratype, genitalia slide AD1052; 45, general view of phallus, paratype, genitalia slide no. 1046; 46, same, holotype, genitalia slide no. AD1045 (ZIN)
FIGURES 1–6 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 1–6. Bionomics of Astrotischeria mystica Diškus & Stonis, sp. nov. 1–3, host plant Verbesina L. (possibly V. plowmanii Sagást.) (Asteraceae), Urubamba Province, Peru, 2180 m; 4–6, leaf mines
FIGURES 11–13 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 11–13. Trifurcula (Glaucolepis) headleyella, male genitalia. 11–12. RMNH.INS.22293, Italy, Trento, Mte Maranza; 13. France, Génicourt-sur-Meuse, RMNH.INS.24212, detail of cornutus and phallotrema spines. Scales 100 μm, 50 μm (13).
FIGURES 5–10 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 5–10. Trifurcula (Glaucolepis) lituanica, male genitalia in ventral view. 5–6. Holotype, RMNH.INS.24210; 8. Paratype Lithuania, RMNH.INS.23721. 7, 9–10. Paratype Slovenia, slide EJvN 4277, 9 showing phallotrema spines, 10 cornuti at slightly deeper level. Scales 100 μm (5–8), 50 μm (9–10).
FIGURES 1–4 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 1–4. Trifurcula (Glaucolepis) species, adult habitus, dorsal. 1. T. lituanica, male holotype; 2. T. lituanica, female paratype, Austria; 3. T. headleyella, male, France, Génicourt-sur-Meuse, RMNH.INS.24212; 4. T. headleyella, female, Germany, Marmagen EvN95068. Scales 1 mm.
FIGURES 19–22 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 19–22. Trifurcula (Glaucolepis) headleyella, female genitalia. 19–21. Sweden, Klagshamn, RMNH.INS.22505; 22. Lectotype Nepticula dubiella, genitalia slide EJvN2609, photograph Sabine Gaal. Scales 100 μm (19, 21), 50 μm (20).
FIGURES 23–28 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 23–28. Trifurcula (Glaucolepis) lituanica, life history: stemmines and cocoons on Salvia pratensis. 23–24. Lithuania, Ringovė, 17.viii.2005; 25–28, Romania, Brädeni, 30.vii.2011 (photos taken later), in 25 the larva has been taken out of the mine. Scales 2 mm.
FIGURES 14–18 in Trifurcula (Glaucolepis) lituanica sp. nov., an unexpected new stem-miner on Salvia pratensis occurring in eastern Europe (Lepidoptera: Nepticulidae)
FIGURES 14–18. Trifurcula (Glaucolepis) lituanica, female genitalia. Paratypes, Lithuania, slide EJvN4266 (14, 16), Austria, slide EJvN4267 (15, 17–18). Scales 200 μm (14–15), 50 μm (16–18).
Figure 3 in Mineralized-tissue histology reveals protracted life history in the Pliocene three-toed horse from Langebaanweg (South Africa)
Figure 3. Histology of the metacarpi of Eurygnathohippus hooijeri. A, PQL-12089, transverse cross-section. A large brownish stain extends through the anterior and lateral middle cortex. Yellow dotted rectangles indicate areas of image magnification. B, PQL-12089, highly vascularized fibrolamellar bone (FLB), with three cyclical growth marks (white arrowheads). Lamellar bone lines the subperiosteal area, conforming the outer circumferential layer (OCL). C, PQL-12089, large radial vascular canals (white arrows) connect multiple primary osteons. D, PQL-12089, a neonatal line (black arrowhead) is found in the middle cortex. E, PQL-12089, large radial vascular canals (white arrows) connect secondary osteons. F, PQL-42484, highly vascularized FLB, with multiple cracks. Three cyclical growth marks (white arrowheads) can be recognized. Images show bone cross-sections observed under polarized light, A–C, E, F with 1/4λ filter. Black scale bars (in C, D): 1 mm; white scale bars (in B, E, F): 0.5 mm. Abbreviations: ant, anterior; cvc, circular vascular canal; FLB, fibrolamellar bone; lat, lateral; lvc, longitudinal vascular canal; OCL, outer circumferential layer; rvc, radial vascular canal; SO, secondary osteons.
Figure 2 in Mineralized-tissue histology reveals protracted life history in the Pliocene three-toed horse from Langebaanweg (South Africa)
Figure 2. Dental histology of Eurygnathohippus hooijeri and methodology of calculation of enamel growth parameters. A, schematic drawing depicting a hypothetical longitudinal section of an equid tooth, showing its structure and the different tissues. Dotted rectangle indicates the area of the enlarged image shown in B.2. Modified from Nacarino-Meneses (2018). B, enamel extension rate and crown formation time. B.1, PQL-1465, m3, enamel band with Retzius lines (dashed yellow lines). Abbreviations: d1 … d4, the distance along the enamel prism between Retzius lines; x1 … x4, the distance on the enamel–dentine junction (EDJ) between Retzius lines. B.2, schematic diagram showing the basic structures observed in equid enamel and the measurements performed to estimate the enamel extension rate (EER) and crown formation time (CFT). Modified from Nacarino-Meneses (2018). Abbreviations: d i, distance along the enamel prism between Retzius lines; x i, distance on the EDJ between Retzius lines. Dotted rectangles indicate areas of the magnified images shown in C.2, D.2, E.2. C, daily secretion rate. C.1, PQL-952, m1, group of enamel laminations (lines). Dotted double-headed arrow indicates the distance along the enamel prism between a group of laminations. C.2, schematic diagram showing enamel laminations. Numbers in red circles are the number or spaces (days) visible between laminations. Red dotted double-headed arrow indicates the distance along the enamel prism between a group of laminations. D, repeat interval. D.1, PQL-49740, m1, enamel laminations (lines) and
Figure 5 in Mineralized-tissue histology reveals protracted life history in the Pliocene three-toed horse from Langebaanweg (South Africa)
Figure 5. Histology of the femora of Eurygnathohippus hooijeri. A, PQL-20553, transverse cross-section. Numerous cracks and breakages interrupt the cortical bone tissues. Yellow dotted rectangles indicate areas of image magnification. B, PQL- 20553, fibrolamellar bone, showing a laminar organization and large radial vascular canals (white arrows). C, PQL-9973, fibrolamellar bone and compact coarse cancellous bone (CCCB) appear in the outer and inner cortex, respectively. D, PQL- 20553, Haversian bone. E, PQL-20553, the outer cortex is composed of laminar fibrolamellar bone, and the absence of an outer circumferential layer is noted. F, PQL-20553, five cyclical bone growth marks (white arrowheads) and one neonatal line (black arrowhead) can be recognized despite the numerous breakages of the compacta. Images show bone cross-sections observed under polarized light with 1/4λ filter. Black scale bar (in B): 1 mm; white scale bars (in C–F): 0.5 mm. Abbreviations: ant, anterior; CCCB, compact coarse cancellous bone; FLB, fibrolamellar bone; lat, lateral.
Figure 1 in Mineralized-tissue histology reveals protracted life history in the Pliocene three-toed horse from Langebaanweg (South Africa)
Figure 1. Lamellar areas (white arrows) around primary osteons within the fibrolamellar bone in Eurygnathohippus hooijeri. A, PQL-12089, metacarpus. B, PQL-42484, metacarpus. C, PQL-21827, metatarsus. D, PQL-60788, metatarsus. E, PQL-20553, femur. F, PQL-9973, femur. Scale bars: 50 μm (in A–F).
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