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Yuri M. Marusik, Francesco Ballarin, Mikhail M. Omelko
Zookeys
Figures 1–2.Male of Amaurobius koponeni sp. n. 1 habitus 2 left palp, retrolateral.
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Mykola M. Kovblyuk, Zoya A. Kastrygina, Mikhail M. Omelko
Zookeys
Figures 1–9.Males of Haplodrassus bohemicus (1–3 from Rostov Area, 4–6 from Crimea) and Haplodrassus pugnans (7–9 from Magadan Area): 1, 4, 7 RTA, retrolateral view 2, 5, 8 palp, ventral view 3, 6, 9 bulbus, apical view. Abbreviations: Coconductor; Emembolus; Ettooth of embolus; Mamedian apophysis; Ri ridgeof terminal apophysis; RTA retrolateral tibial apophysis; St“step”-like keel of RTA; Taterminal apophysis.
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Figures 1–4.General habitus of Cambalida dippenaarae sp. n., indicating colour variations: 1 and 2 females and 3 male from Wildlives Game Farm, Zambia 4 male from Lesideng Research Camp, Botswana.
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Figures 13–24.Scanning electron microscope photographs of Copa flavoplumosa Simon, 1885 female (13, 14, 16) and male (15, 17, 18) and Copa kei sp. n. female (19–24): 13 dorsal carapace setae 14, 15, 19 eye region and clypeus, anterolateral (14, 15) and anterior (19) views 16, 17, 20 cheliceral promarginal bent setae, anterior view 18, 22 mouthparts, ventral view 21 chelicerae, ventral view 23 serrula 24 femur, patella and tibia of leg II, indicating erect ventral setae on femora (EVS) and proximal and distal dorsal patellar setae (PS).
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Figures 22–24.Mallinella pluma sp. n., 22 left male palp, ventral view 23 same, retrolateral view 24 a plumose hair (magnified). Scale bars: 0.5 mm (22–23); 0.05 mm (24).
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Dan Quan, Jian Chen, Jie Liu
Zookeys
Figures 13–16.Sinopoda serrata (Wang, 1990), holotype, from Mt. Lushan (Jiangxi Province, China). 13 Left male palp, prolateral view 14 Left male palp, ventral view 15 Left male palp, retrolateral view 16 Male habitus, dorsal view. Scales = 0.2 mm (13–15), scale = 1 mm (16).
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Feng Zhang, Bao-Shi Zhang, Zhi-Sheng Zhang
Zookeys
Figures 18–21.Pseudopoda emei sp. n., Male (SP–SC–03–0050): 18–19 Body (18 dorsal 19 ventral) 20–21 Left palp (20 prolateral 21 ventral). Abbreviations: C conductor; dRTA dorsal branch of retrolateral tibial apophysis; E embolus; EP embolic projection; SD sperm duct; ST subtegulum; T tegulum; vRTA ventral branch of retrolateral tibial apophysis. Scale bars: 2 mm (18–19); 1 mm (20–21).
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Dmitri V. Logunov, Yuri M. Marusik
Zookeys
Figures 47–54.Copulatory organs of Eupoa lehtineni sp. n. 47–48 epigyne, ventral view 49 male palp, retrolateral view 50 ditto, dorsal view 51 ditto, apical view 52 ditto, median view 53–54 vulva, dorsal view. Abbreviations as explained in ‘Material and methods’. Specimens: 49–53 – India; 47–48, 54– Viet-Nam. Scale bars: 50 μm (27, 29), 0.1 mm (25–26, 28, 30–32).
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Cyril Courtial, Lionel Picard, Frédéric Ysnel, Julien Pétillon
Zookeys
Figure 3.Drawing of Eustiromastix guianae epigyne (A dorsal view B ventral view). Scale 0.5 mm.
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Yuri M. Marusik, Alexander A. Fomichev, Mikhail M. Omelko
Zookeys
Figures 7–12.Holotype of Gnaphosa esyunini sp. n. 7–9 male palp, ventral, retro and prolateral 10–11 bulbus, ventral and from above 12 habitus. Scale = 0.2 mm if not otherwise indicated. Be – base of embolus; Es – embolic spine; Ma – median apophysis; Se – serrated edge of embolus.
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Yuri M. Marusik, Mikhail M. Omelko
Zookeys
Figures 8–21.Male palp of Acantholycosa azarkinae sp. n. (8–12), Acantholycosa oligerae (13–14, 20–21) and Acantholycosa sundukovi (15–16, 17–19). 8 bulbus, from above 9, 13, 15 terminal part of palp, ventral 10 terminal part of palp, from above 11 tegulum, from above 12, 14, 16 terminal part of palp, retrolateral 17, 20 tegular apophysis, ventral 18, 21 embolus, from above 19 terminal part of embolus and terminal apophysis. 13–21 after Marusik et al. (2004). Scale = 0.1 mm if not otherwise indicated.Abbreviations: Bs = basal spine of embolus.
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Sarah C. Crews, Mark S. Harvey
Zookeys
Map 6.The southwest coast of Western Australia (inset) showing the distribution of Karaops gen. n. Karaops francesae sp. n. (white circles), Karaops toolbrunup sp. n. (white star), Karaops jarrit sp. n.(white triangles), and Karaops ellenae sp. n.(white squares).
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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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Jernhatten
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Madum Sø V
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Asker, Akershus, Norge
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Asker, Akershus, Norge
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Staksrode Skov
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Randers privat have
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Asker, Akershus, Norge