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312 results for “Diplura”
Figures 11-15 from: Sendra A, Yoshizawa K, Ferreira RL (2018) New oversize troglobitic species of Campodeidae in Japan (Diplura). Subterranean Biology 27: 53-73. https://doi.org/10.3897/subtbiol.27.28575
Figures 11-15 Pacificampadaidarabotchi Sendra, sp. n. 11 Metathoracic leg, paratype ME01 12 calcars, paratype 13 tibial portion, lateral side, paratype 14 detail claws, dorsal-lateral side, paratype 15 ending telotarsal leg, lateral-anterior side, paratype.
Figures 18-22 from: Sendra A, Yoshizawa K, Ferreira RL (2018) New oversize troglobitic species of Campodeidae in Japan (Diplura). Subterranean Biology 27: 53-73. https://doi.org/10.3897/subtbiol.27.28575
Figures 18-22 Pacificampadaidarabotchi Sendra, sp. n. 18 Urosternite I, ♂paratype ME01 19 Urosternite VII (left side) plus urosternite VIII, ♂ paratype 20 Stylus urosternite II, paratype 21 Urosternite VI, left side, ♀ paratype 22 Urosternite VIII, ♀ paratype.
Figure 33-39 from: Sendra A, Yoshizawa K, Ferreira RL (2018) New oversize troglobitic species of Campodeidae in Japan (Diplura). Subterranean Biology 27: 53-73. https://doi.org/10.3897/subtbiol.27.28575
Figure 33-39 33 Karst landscape in the area where Inaba-do cave is located 34 Inaba-do cave entrance 35 chamber located at the innermost area of Inaba-do cave 36P.nipponica, living specimen from Inaba-do cave 37 stone wall built in Goya Daiichi Shonyu-do cave 38 mettalic stairs in Goya Daiichi Shonyu-do cave 39P.nipponica, living specimen from Goya Daiichi Shonyu-do cave.
Figure 32 from: Sendra A, Yoshizawa K, Ferreira RL (2018) New oversize troglobitic species of Campodeidae in Japan (Diplura). Subterranean Biology 27: 53-73. https://doi.org/10.3897/subtbiol.27.28575
Figure 32 Karst landscape in the area where Mejiro-do cave is located (yellow star). Below, the quarry, whose limits are less than 2km from the Mejiro-do cave entrance.
Figures 6-10 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figures 6-10 Haplocampawagnelli Sendra, sp. n. 6 distal gouge sensilla whorl in a medial antennomere 7 medial antennomere 8 detail of the ending portion of a gouge sensillum 9 detail of external side of a gouge sensillum 10 detail of lateral side of a gouge sensillum.
Supplementary material 1 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
: Data type: multimedia
Figures 29-33 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figures 29-33 29 Map of Fossli Slots caves with spots where Haplocampawagnelli sp. n. was seen 30 entrance of Fossli Slot #2 cave 31 Kiku Pot cave with spots where Haplocampawagnelli sp. n. was seen 32 entrance of Kiku Pot cave with Felix Ossigi-Bonanno and Craig Wagnell after the success finding 33 entrance of Kiku Pot cave viewed from inside the cave.
Figures 1-5 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figures 1-5 Haplocampawagnelli Sendra, sp. n. 1 last and penultimate antennomere 2 olfactory chemoreceptors within the cupuliform organ 3 detail of olfactory chemoreceptor, paratype 4 coniform sensilla on the last antennomeres 5 two rosette sensilla in the last antennomere.
Figures 13-16 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figures 13-16 Haplocampawagnelli Sendra, sp. n. 13 pro-, meso- and metanotum, left side, holotype 14 detail of epicuticle surface on mesonotum 15 detail of epicuticle surface on mesonotum 16 detail of epicuticle surface on metanotum including external gland.
Figure 28 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figure 28 Map of western of North-America, highlighting in red the limestone area near Port Alberni (Vancouver Island, Canada) where Fossli Slots and Kiku Pots caves are located.
Figures 17-21 from: Sendra A, Wagnell C (2019) The cave-dwelling dipluran (Diplura, Campodeidae) on the edge of the Last Glacial Maximum in Vancouver Island caves, North America (Canada). Subterranean Biology 29: 59-77. https://doi.org/10.3897/subtbiol.29.31467
Figures 17-21 Haplocampawagnelli Sendra, sp. n. 17 distal portion of femur and tibia from a metathoracic leg 18 tarsus 19 end of the tarsus and telotarsus 20 detail of posterior claw, lateral side 21 detail of posterior claw, lateral side.
Figs 7-12 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 7-12. Plusiocampa (Pentachaetocampa) inopinata subgen. et sp. nov. 7–8. Metanotum. 7. Macrosetae la1,2,3 and mp. 8. Detail of surface. 9. Cupuliform organ of last antennomere. 10. Sensillum of cupuliform organ. 11. Gouge sensilla. 12. Metathoracic leg. Scale bars in µm.
Figs 1–2 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 1–2. Plusiocampa (Pentachaetocampa) inopinata subgen. et sp. nov. 1. On a clay surface. 2. On the surface of a puddle from Schallsinger Höhle. Courtesy of Mirjam Widmer. Scale bars = 2 mm.
Figure 21 from: Luan Y, Bu Y, Gao Y (2012) Redescription of arenicolous dipluran Parajapyx pauliani (Diplura, Parajapygidae) and DNA barcoding analyses of Parajapyx from China. ZooKeys 221: 19-29. https://doi.org/10.3897/zookeys.221.3207
Figure 21 - Neighbour-joining tree (p-distance, Bootstrap 1000 replicates) of Chinese Parajapyx inferred from COI gene sequences. Numbers on the nodes show the bootstrap values (> 50%).
Figures 18-20 from: Luan Y, Bu Y, Gao Y (2012) Redescription of arenicolous dipluran Parajapyx pauliani (Diplura, Parajapygidae) and DNA barcoding analyses of Parajapyx from China. ZooKeys 221: 19-29. https://doi.org/10.3897/zookeys.221.3207
Figures 18-20 - Habitats of Parajapyx pauliani in Hainan (S China). 18 shingly beach of Ximaozhou Island, inset shows the size of stone 19 sand beach of Ximaozhou Island, inset show the size of sand granules 20 sand beach of Qizi Bay, inset show the size of sand granules ✱ indicates the sample site.
Figures 1-17 from: Luan Y, Bu Y, Gao Y (2012) Redescription of arenicolous dipluran Parajapyx pauliani (Diplura, Parajapygidae) and DNA barcoding analyses of Parajapyx from China. ZooKeys 221: 19-29. https://doi.org/10.3897/zookeys.221.3207
Figures 1-17 - Parajapyx pauliani 1 Habitus 2 head, dorsal view (Di= dorsal interior setae; De= dorsal exterior setae; Dl= dorsal lateral setae) 3 head, ventral view (ad= admentum cx= coxae lp= labial palps area sm= submentum po= pli oral region) 4 pronotum 5 mesonotum 6 metanotum 7 prosternum (al= anterior lobe ml= middlelobe pl= posterior lobe, same for figs 8–9) 8 mesosternum 9 metasternum 10 cerci 11 subcoxal organ of urosternite I, right side 12 urotergite I 13 urotergite II 14 urotergite VII 15 urosternite I (so= subcoxal organ) 16 urosternite II (ev= eversible vesicles) 17 urosternite VII. Scale bar: 0.5 mm in Fig. 1; 0.1 mm in Figs 2–17.
Figure 3 from: Sikes DS, Allen RT (2016) First Alaskan records and a significant northern range extension for two species of Diplura (Diplura, Campodeidae). ZooKeys 563: 147-157. https://doi.org/10.3897/zookeys.563.6404
Figure 3 - Distribution of Tricampa rileyi and Metriocampa allocerca: Tricampa rileyi, circles = previous distribution, triangle = Alaska; Metriocampa allocerca, square = previous distribution, diamond = Alaska distribution.
Figure 17 in Fossil diversity in 'dawn' hexapods (Diplura: Projapygoidea), with direct evidence for being chemically predaceous in the Cretaceous
Figure 17. Scanning electron micrographs of the secretion. A, tangled mass. B, amorphous mass.
Fig. 29 in Life in darkness: an overview of cave-adapted japygids (Hexapoda, Diplura)
Fig. 29. Teljapyx aotearoa Sendra & Sánchez-García sp. nov., ♀1-paratype, ♀ (MZB). A. Abdominal segment X and cerci, dorsal side. B. Cuticle detail of cerci, dorsal side.
Fig. 15 in Life in darkness: an overview of cave-adapted japygids (Hexapoda, Diplura)
Fig. 15. Location and habitat of Imazighenjapyx marocanus Sendra & Sánchez-García gen. et sp. nov. A. External area in the surroundings of the Imi Ougoug cave the arrow indicates the location of the cave entrance). B. Imi Ougoug cave interior general aspect. C–D. Living holotype specimen.
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