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Figure 1.Nipponosemia terminalis (Matsumura, 1913),male. A habitus, dorsal view B habitus, ventral view C head and thorax, dorsal view D face E abdomen and posterior part of thorax, ventral view F timbal and timbal cover, dorsal view G left fore leg, showing the spines on fore femur.
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Juan-Manuel Nieto Nafría, Milagros-Pilar Mier Durante, Georges Remaudière
Zookeys
Figure 4.A–C Aphidura gallica sp. n. D Aphidura amphorosiphon sp. n. A–B, D apterous viviparous female C alate viviparous femaleA pigmented formB unpigmented form B, D boxes mesosternum with mammariform processes. General scale bars 0.2 mm, boxes scale bar 0.01 mm.
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Marcela Cornelis, María C. Coscarón
Zookeys
Figure 2.Fore leg: a Lasiomerus constrictus b Hoplistoscelis sordida c Nabis argentinus. Scale line 0.05mm.
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Jun Wang, Majid Mirab-balou, Xiao-li Tong
Zookeys
Figures 1−8.Karnyothrips cyathomorphus sp. n. 1 slide mounted apterous adult (dorsal view), female 2 pronotum, female 3 head, female 4 basantra and ferna, female 5 pelta, female 6 abdominal tergum IX and tube, male 7 fore leg, male 8 antenna, female.
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Figures 1–9.Dayus bifurcatus Yu & Yang, sp. n., 1 head and thorax, dorsal view 2 face 3 male genital capsule, lateral view 4 male abdominal apodemes 5 subgenital plate, ventral view 6 paramere 7 aedeagus and connective, dorsal view 8 aedeagus and connective, lateral view 9 anal tube process.
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Figures 1–8.Circinans striata Qin & Lu, sp. n. 1 male adult (abdomen removed), dorsal view 2 same, left lateral view 3 head and thorax, dorsal view 4 face 5 male genitalia, left lateral view 6 same, dorsal view 7 anal tube and anal styli, aedeagus, connective, parameres and subgenital plates, left lateral view 8 abdominal apodeme. Scale bars = 1 mm (Figs 1, 2); 0.2 mm (Figs 3, 4).
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Jichun Xing, Xiangsheng Chen
Zookeys
Figures 1–10.Lacusa fuscofasciata (Stål, 1854). 1 Male habitus, dorsal view 2 Male habitus, lateral view 3 Male, head and thorax, dorsal view 4 Male, frons and clypeus 5 Male, head and thorax, lateral view 6 Male genitalia, lateral view 7 Apex of anal tube, caudal view 8 Left genital style, caudal view 9 Aedeagus, lateral view 10 Aedeagus, caudal view. Scale bars: 6–10 = 0.20 mm.
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Yan-Li Zheng, Lin Yang, Xiang-Sheng Chen
Zookeys
Figures 1–10.1–5 Habitus of Doryphorina conglobatus sp. n. 6–10 Doryphorina guizhouensis sp. n. 1, 6 dorsal view 2, 7 lartral view 3, 8 dorsal view of head, pronotum and mesonotum 4, 9 lateral view of head and pronotum 5,10 ventral view of frons and clypeus. Scale bars: 1–10 = 1 mm.
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Julián F. Petrulevičius, Yuri A. Popov
Zookeys
Figure 1.Habitus of Acanthocephalonotum martinsnetoi gen. n. et sp. n. Holotype specimen MAPBAR 4137 A Photograph B line drawing. Scale bars represent 1 mm.
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Figures 10–15.Tambocerus dentatus Qu & Dai, sp. n. 10 Pygofer in lateral view 11 Valve and subgenital fig in ventral view 12 Pygofer in dorsal view 13 Aedeagus in caudal view 14 Aedeagus in lateral view 15 Connective and style in dorsal view.
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Hu Li, Renhuai Dai, Zizhong Li
Zookeys
Figures 45–52.Pedionis (Pedionis) nankunshanensisLi, Dai & Li sp. n. 45 Male pygofer side, lateral view 46 Subgenital plate, lateral view 47 Aedeagus, ventral view 48 Aedeagus, lateral view 49 Style, dorsal view 50 Dorsal connective 51 Connective, dorsal view 52 Connective, lateral view.
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Montmorency Co., Michigan
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size: 25mm
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.