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31 results for “Elytron”

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Figure 4. Odontoxenus thailandicus. A elytron B pronotum C male abdominal tergite VIII D male abdominal sternite VIII E male abdominal tergite IV & V F female abdominal tergite VIII G in Two new species of Aleocharinae (Coleoptera, Staphylinidae) found in fungus gardens of Odontotermes termites (Isoptera, Termitidae, Macrotermitinae) in Khao Yai National Park, Thailand

Figure 4. Odontoxenus thailandicus. A elytron B pronotum C male abdominal tergite VIII D male abdominal sternite VIII E male abdominal tergite IV & V F female abdominal tergite VIII G median lobe of aedeagus, and H spermatheca.

opencc-by-4.0Jun 2010View details →
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Figure 2. Discoxenus katayamai. A pronotum B elytron C abdominal tergite VIII D in Two new species of Aleocharinae (Coleoptera, Staphylinidae) found in fungus gardens of Odontotermes termites (Isoptera, Termitidae, Macrotermitinae) in Khao Yai National Park, Thailand

Figure 2. Discoxenus katayamai. A pronotum B elytron C abdominal tergite VIII D median lobe of aedeagus, in lateral view, and E spermatheca.

opencc-by-4.0Jun 2010View details →
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FIGURE 7. Left elytron, dorsal view. A in Distinguishing Scaphinotus mannii Wickham (Coleoptera: Carabidae: Cychrini), a Species of Conservation Concern, from Similar Congeneric Species

FIGURE 7. Left elytron, dorsal view. A. Scaphinotus mannii Wickham (Steptoe Canyon, Whitman County, Washington); B. S. regularis (LeConte) (9 km SSE of Lowell, Idaho County, Idaho); C. S. relictus (Horn) (8 km NNE of Moscow, Latah County, Idaho).

opencc-by-4.0Jul 2022View details →
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Рис. 23–31. Tonkinilla graminea, gen. et comb. nov., синтип: 23–25, общий виΔ; 26 — верхняя губа, наΛичник и чеΛюстные щупики; 27 — наΔкрыΛья сбоку; 28, 29 — простернаΛьный отросток (28 — сбоку; 29 — спереΔи); 30, 31 — парамеры и базаΛьная пΛастинка эΔеагуса (30 — виΔ сверху; 31 — виΔ снизу). Масштаб: 23–25 — 2,5 мм; 26, 27, 30, 31 — 1 мм; 28 — 0,5 мм; 29 — 0,3 мм (Λинейка общая ΔΛя 23–25 и ΔΛя 30 и 31) Figs. 23–31. Tonkinilla graminea, gen. et comb. nov., syntype: 23–25, habitus; 26 — labrum, clypeus and mandibular palpi; 27 — lateral view of elytron; 28, 29 — prosternal process (28 — lateral view; 29 — frontal view); 30, 31 — parameres and basal plate of aedeagus (30 — dorsal view; 31 — ventral view). Scale bars: 23–25 — 2.5 mm; 26, 27, 30, 31 — 1 mm; 28 — 0.5 mm; 29 —0.3 mm (common bar for 23–25 and for 30 and 31) in On the systematics of the Anomalina subtribe in Southeast Asia (Coleoptera: Scarabaeidae: Rutelinae: Anomalini)

Рис. 23–31. Tonkinilla graminea, gen. et comb. nov., синтип: 23–25, общий виΔ; 26 — верхняя губа, наΛичник и чеΛюстные щупики; 27 — наΔкрыΛья сбоку; 28, 29 — простернаΛьный отросток (28 — сбоку; 29 — спереΔи); 30, 31 — парамеры и базаΛьная пΛастинка эΔеагуса (30 — виΔ сверху; 31 — виΔ снизу). Масштаб: 23–25 — 2,5 мм; 26, 27, 30, 31 — 1 мм; 28 — 0,5 мм; 29 — 0,3 мм (Λинейка общая ΔΛя 23–25 и ΔΛя 30 и 31) Figs. 23–31. Tonkinilla graminea, gen. et comb. nov., syntype: 23–25, habitus; 26 — labrum, clypeus and mandibular palpi; 27 — lateral view of elytron; 28, 29 — prosternal process (28 — lateral view; 29 — frontal view); 30, 31 — parameres and basal plate of aedeagus (30 — dorsal view; 31 — ventral view). Scale bars: 23–25 — 2.5 mm; 26, 27, 30, 31 — 1 mm; 28 — 0.5 mm; 29 —0.3 mm (common bar for 23–25 and for 30 and 31)

opencc-by-4.0Dec 2021View details →
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Fig. 4. Elytron and abdominal ventrite V. A–F. Elytron. G–L. Abdominal ventrite V in The world fauna of Synchroidae Lacordaire, 1859 (Coleoptera, Tenebrionoidea, Synchroidae)

Fig. 4. Elytron and abdominal ventrite V. A–F. Elytron. G–L. Abdominal ventrite V of ♂♂. — A, G. Synchroa punctata Newman, 1838. B, H. S. melanotoides Lewis, 1895. C, I. S. chinensis Nikitsky, 1999. D, J. S. formosana Hsiao, 2015. E, K. S. elongatula Nikitsky, 1999. F, L. Synchroina tenuipennis Fairmaire, 1898. Scale bars: 0.5 mm.

opencc-by-4.0Feb 2018View details →
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FIGURES 90–99. Odontocheila iodopleura Bates, male elytron. 90 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.

FIGURES 90–99. Odontocheila iodopleura Bates, male elytron. 90—Nicaragua, Chontales, LT (BMNH); 91–92—Costa Rica, La Virgen (USNM); 93—Costa Rica, Hang Cerro Cacao (CCJM); 94—Costa Rica, Guácimo Earth (CCJM); 95—Costa Rica, Las Brisas (CCJM); 96—Nicaragua, Cerro Jesus (CCJM); 97—Costa Rica, Rio San Lorenzo (INBIO); 98—Costa Rica, Zurqui Tunnel (DBCN); 99—Costa Rica, Alajuela, Upala (USNM). Bar = 1mm.

opennotspecifiedDec 2017View details →
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FIGURES 100–107. O. iodopleura Bates. 100–104—female elytron. 100 in Taxonomic and nomenclatorial revision within the Neotropical genera of the subtribe Odontocheilina W. Horn in a new sense— 18. Six Mexican and Central American species related to Odontocheila mexicana Laporte de Castelnau and O. ignita Chaudoir, with a description of O. potosiana sp. nov.

FIGURES 100–107. O. iodopleura Bates. 100–104—female elytron. 100—Nicaragua, Chontales, PLT (BMNH); 101–102— Costa Rica, La Virgen (USNM); 103—Costa Rica, La Selva (USNM); 104—Costa Rica, Zurqui Tunnel (DBCN); 105–107— aedeagus: 105—Chontales, LT (BMNH); 106—Costa Rica, Hang Cerro Cacao (CCJM); 107—ditto, internal sac. Bars = 1mm.

opennotspecifiedDec 2017View details →
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FIGURES 33–52. Elytron. 33–36 in Species delimitation of colour polymorphic Cladophorus (Coleoptera: Lycidae) from New Guinea

FIGURES 33–52. Elytron. 33–36, Cladophorus bicolor Kleine; 37, C. boceki sp. nov.; 38, C. craterensis sp. nov.; 39, C. haiaensis sp. nov.; 40, C. humeralis Kleine; 41, C. kailakiensis sp. nov.; 42, C. manokwarensis sp. nov.; 43, C. mindikensis sp. nov.; 44–45, C. motykai sp. nov.; 46, C. pallescens sp. nov.; 47, C. praecipuus Kleine; 48, C. riedeli sp. nov.; 49, C. wasiorensis sp. nov. Structure of elytral costae in C. bicolor Kleine. 50, humeral part of the elytron; 51, transition between the dark and light colored part of the elytron; 52, apical part of the elytron. Scales: elytron 1.5 mm; elytra detail 0.2 mm.

opennotspecifiedSep 2017View details →
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FIGURES 73–78. 73. Pachyrhinus californicus left elytron. 74. Stria. 75. Aedeagus, lateral view. 76. Dorsal view. 77. Ventral view. 78 in A revision of the genus Pachyrhinus Schӧnherr 1823 (Coleoptera: Curculionidae Entiminae) in the Nearctic Region

FIGURES 73–78. 73. Pachyrhinus californicus left elytron. 74. Stria. 75. Aedeagus, lateral view. 76. Dorsal view. 77. Ventral view. 78. Spermatheca.

opennotspecifiedJul 2021View details →
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FIGURES 96–101. 96. Pachyrhinus cinereus left elytron. 97. P. cinereus stria. 98. P. cinereus aedeagus lateral view. 99. Ventral view. 100. Dorsal view. 101 in A revision of the genus Pachyrhinus Schӧnherr 1823 (Coleoptera: Curculionidae Entiminae) in the Nearctic Region

FIGURES 96–101. 96. Pachyrhinus cinereus left elytron. 97. P. cinereus stria. 98. P. cinereus aedeagus lateral view. 99. Ventral view. 100. Dorsal view. 101. Spermatheca.

opennotspecifiedJul 2021View details →
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FIGURES 39–44. Pachyrhinus elegans 39. Left elytron, dorsal view. 40. Stria and interstria. 41. Aedeagus, lateral view. 42. Aedeagus, ventral view. 43. Aedeagus, dorsal view. 44 in A revision of the genus Pachyrhinus Schӧnherr 1823 (Coleoptera: Curculionidae Entiminae) in the Nearctic Region

FIGURES 39–44. Pachyrhinus elegans 39. Left elytron, dorsal view. 40. Stria and interstria. 41. Aedeagus, lateral view. 42. Aedeagus, ventral view. 43. Aedeagus, dorsal view. 44. Spermatheca.

opennotspecifiedJul 2021View details →
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Fig. 4. Marked American burying beetles. A in Elytron-Branding as a Permanent Marking Technique forNicrophorusFabricius (Coleoptera: Silphidae)

Fig. 4. Marked American burying beetles. A) Teneral beetle marked on the distal maculation of the left elytron, B) Senescent beetle marked on the basal maculation of the left elytron.

opennotspecifiedJun 2016View details →
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Fig. 2. Exemplar elytral marks. A in Elytron-Branding as a Permanent Marking Technique forNicrophorusFabricius (Coleoptera: Silphidae)

Fig. 2. Exemplar elytral marks. A) Mark created by elytron-brand, B) Hole burn, C) Queen bee marking tag, D) Elytron-clipping.

opennotspecifiedJun 2016View details →
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Fig. 1. Cauterization technique. A in Elytron-Branding as a Permanent Marking Technique forNicrophorusFabricius (Coleoptera: Silphidae)

Fig. 1. Cauterization technique. A) Cauterizer with the tip bent at a 45° angle, B) Position of the cauterizer on the lower left elytron maculation prior to heating the element to apply a brand.

opennotspecifiedJun 2016View details →
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Fig. 3 in Elytron-Branding as a Permanent Marking Technique forNicrophorusFabricius (Coleoptera: Silphidae)

Fig. 3. Mean time (± 1 SD) required to mark an individual beetle by four marking techniques. Like letters denote means that are not significantly different (a = 0.05).

opennotspecifiedJun 2016View details →
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Supplementary material 1 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164

: Data type: morphometric data

opencc-zeroApr 2019View details →
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Figure 7 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164

Figure 7 Differences in elytron shape among each branch and ancestor, on the basis of principal component analysis. Empty dots indicate the number of the node on the phylogenetic tree; solid dots indicate the average shape of the extant subfamily/tribe of each branch.

opencc-by-4.0Apr 2019View details →
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Figure 6 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164

Figure 6 Differences in pronotum shape among each branch and ancestor, on the basis of principal component analysis. Empty dots indicate the number of the node on the phylogenetic tree; solid dots indicate the average shape of the extant subfamily/tribe of each branch.

opencc-by-4.0Apr 2019View details →
zenodo28/100

Figure 5 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164

Figure 5 Reconstruction of ancestral groundplans of the elytron in Lucanidae and the outgroups. The splines indicate the deformation of the shapes relative to the reference configuration. The phylogenetic tree was summarized and reconstructed from earlier molecular results (Kim and Farrell 2015).

opencc-by-4.0Apr 2019View details →
zenodo28/100

Figure 3 from: Zhang M, Ruan Y, Wan X, Tong Y, Yang X, Bai M (2019) Geometric morphometric analysis of the pronotum and elytron in stag beetles: insight into its diversity and evolution. ZooKeys 833: 21-40. https://doi.org/10.3897/zookeys.833.26164

Figure 3 Differences in elytron shape between outgroups and Lucanidae, on the basis of principal component analysis at the species level. The four circles are 90%-equal frequency ellipses of Lucanidae subfamilies.

opencc-by-4.0Apr 2019View details →

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