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6,040 results for “Caving”

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zenodo40/100

Figs 40‒43 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 40‒43. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 40. Urotergites I–VII and abdominal segment IX, left side, holotype (MZB (MCNB) 2020-1162). 41. First urosternite of a female, holotype (MZB (MCNB) 2020-1162, with glandular a 1 setae. 42. Stylus, right fifth urosternite. 43. Detail stylus, right fifth urosternite.

opencc-by-4.0Jan 2021View details →
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Figs 34‒39 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 34‒39. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 34. Tarsus of metathoracic leg. 35. Medial portion of tarsus. 36. Pretarsus. 37. Detail of the posterior portion of a claw. 38. Detail of the distal part of a lateral process. 39. Detail of the lateral part of a lateral process.

opencc-by-4.0Jan 2021View details →
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Figs 26‒29 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 26‒29. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 26. Detail of the setae and macrosetae on antennomeres. 27. Distal portion of an antenna macroseta. 28. Basal portion of an antenna macroseta. 29. Central portion of an antenna macroseta.

opencc-by-4.0Jan 2021View details →
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Figs 20‒25 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 20‒25. Hubeicampa melissa Sendra & Lips gen. et sp. nov. 20. Apical view of the last antennomere. 21. Ramiform net of the olfactory chemoreceptor in the cupuliform organ. 22. Distal portion of a central antennomere. 23. Detail of the ramiform net of the olfactory chemoreceptor. 24. Detail of the gouge sensillum. 25. Ventral side of the third antennomere with its sensillum (sIII).

opencc-by-4.0Jan 2021View details →
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Figs 16‒19 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 16‒19. Anisuracampa ywangana Sendra & Komerički sp. nov. 16. First urosternite in a female. 17. Detail of the appendage of the first urosternite in a female with glandular a 1 and a 2 setae. 18. Stylus of the lateral right side of the fifth urosternite. 19. Detail of the stylus of the lateral right side of the fifth urosternite.

opencc-by-4.0Jan 2021View details →
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Figs 12‒15 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 12‒15. Anisuracampa ywangana Sendra & Komerički sp. nov. 12. Pretarsus of metathoracic leg. 13. Posterior claw and its lateral processes of pretarsus. 14. Anterior claw and its lateral processes. 15. Detail of lateral processes.

opencc-by-4.0Jan 2021View details →
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Figs 86‒91 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 86‒91. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. 86. Eighth and ninth urosternites. 87. Fourth urosternite. 88. Eighth and ninth urotergites. 89. Urite X and cerci, dorsal side. 90. Cerci, dorsal side. 91. Detail of the cerci, dorsal side. Abbreviations: see Material and methods.

opencc-by-4.0Jan 2021View details →
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Figs 51‒54 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 51‒54. Pacificampa wudonghuii Sendra sp. nov. 51. Gouge sensilla (gs) of antennomeres. 52. Sensillum of the third antennomeree (sIII). 53. Surface of the notum with external glands (eg). 54. Frontal process with anterior (a), intermediate (i) and posterior (p) macrosetae of the insertion line of antennae and x setae.

opencc-by-4.0Jan 2021View details →
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Figs 1‒4 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 1‒4. Cave-adapted diplurans from Win Tin Twin Cave, Ywangan karst, Shan State, Myanmar. 1. Anisuracampa ywangana Sendra & Komerički sp. nov., with Diplopoda at 300 m from the entrance. 2. Mueggejapyx brehieri Sendra & Komerički gen. et sp. nov. at the same site. 3. Speleothems in the main passage of the cave. 4. Entrance to the cave. (Photographs: Ana Komerički).

opencc-by-4.0Jan 2021View details →
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Figs 9‒11 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 9‒11. Anisuracampa ywangana Sendra & Komerički sp. nov., holotype (MZB (MCNAB) 2020- 1152) 9. Pronotum, mesonotum, and metanotum, left side. 10. Frontal process. 11. Detail of the base of medial anterior mesonotal macroseta.

opencc-by-4.0Jan 2021View details →
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Figs 5‒8 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 5‒8. Anisuracampa ywangana Sendra & Komerički sp. nov. 5. Apical view of last antennomere. 6. Olfactory chemoreceptor of the cupuliform organ. 7. Central antennemeres. 8. Lateral distal medial antenomere with gouge sensilla (gs).

opencc-by-4.0Jan 2021View details →
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Figures 8-11 in A new Savignia from Cretan caves (Araneae: Linyphiidae)

<p>FIGURES 8-11. Savignia naniplopi sp. nov., female paratype. 8, epigyne, ventral view; 9, epigyne, posterior view; 10, epigyne, lateral view; 11, cleared vulva, ventral view. Scale bar: 8-10, 0.30 mm; 11, 0.13 mm.</p>

opencc-by-4.0Nov 2002View details →
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Figures 1-7 in A new Savignia from Cretan caves (Araneae: Linyphiidae)

<p>FIGURES 1-7. Savignia naniplopi sp. nov., male holotype. 1, male palp, retrolateral view; 2, male palp, ventral view; 3, male palp, prolateral view, see text for explanation of appendages a-d; 4, male palpal tibia, dorsal view; 5, male carapace, lateral view; 6, male carapace, frontal view; 7, male carapace, dorsal view. Scale bar: 1-4, 0.30 mm; 5-7, 0.40 mm.</p>

opencc-by-4.0Nov 2002View details →
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FIGURE 2 in Cyrtodactylus thirakhupti (Squamata: Gekkonidae), a new cave­dwelling gecko from southern Thailand

FIGURE 2. Specimen of Cyrtodactylus thirakhupti, sp. nov. in life, showing the long tail, elongate, slender limbs and digits, and characteristic dorsal banding pattern of the species. Photo by Montri Sumontha.

opencc-zeroDec 2004View details →
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FIGURE 6. Yoshiiphorura bellingeri new species. A in A new genus and species of Collembola from caves of south Iberian Peninsula (Collembola, Poduromorpha, Onychiuridae)

FIGURE 6. Yoshiiphorura bellingeri new species. A: Pseudopore on ventral antennal basis and detail; B: Pseudopore of the ventral side of the thoracic sternite I; C: Microstructure of a dorsal pseudocelli; D: Microstructure of a dorsal pseudopore. Scales: A – B, 20 m; C – D, 2 m

opencc-zeroDec 2004View details →
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FIGURE 5 in Cave species of the genus Anurida (Collembola: Neanuridae) from Korea, with the description of new species

FIGURE 5. SEM microphotographs: A, Postantennal organ, Anurida decipiens Yosii, 1966; B, Postantennal organ, Anurida plurichaetotica Yosii, 1966; C, Detail of a PAO vesicle, showing perforations, Anurida decipiens Yosii, 1966; D, sensory pegs of sensory organ of Ant. III, Anurida decipiens Yosii, 1966.

opencc-zeroDec 2016View details →
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Figure 3c. from: New records of two endemic troglobitic and threatened arachnids (Amblypygi and Opiliones) from limestone caves of Minas Gerais state, southeast Brazil - Biodiversity Data Journal 3: e5260 (10 November 2015) https://doi.org/10.3897/BDJ.3.e5260

Figure 3c. - Iandumoemauai, male from Lapa do Cipó cave.Figure 3a.Dorsal view of pedipalpal tibia-tarsus ectal and mesal setae IiIiFigure 3b.Dorsal view of habitus, showing coxa IV tuberculate laterally, with robust apical external apophysis and curved at 1/3 distal (on male) and femurIV curved laterally and dorsally at 1/3 from base (on male)Figure 3c.Lateral view of habitus, showing eye mound with erect high spine, with acuminate apex pointing slightly backwards. <br> Lateral view of habitus, showing eye mound with erect high spine, with acuminate apex pointing slightly backwards.

opencc-by-4.0Feb 2017View details →
zenodo40/100

Figure 4a. from: New records of two endemic troglobitic and threatened arachnids (Amblypygi and Opiliones) from limestone caves of Minas Gerais state, southeast Brazil - Biodiversity Data Journal 3: e5260 (10 November 2015) https://doi.org/10.3897/BDJ.3.e5260

Figure 4a. - Charinuseleonorae, female from Lapa do Cipó cave.Figure 4a.Carapace, dorsal view, showing mid-portion of carapace without median eyesFigure 4b.Habitus, dorsal viewFigure 4c.Lateral view of right pedipalp showing spines. <br> Carapace, dorsal view, showing mid-portion of carapace without median eyes

opencc-by-4.0Feb 2017View details →
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Figure 2. from: New records of two endemic troglobitic and threatened arachnids (Amblypygi and Opiliones) from limestone caves of Minas Gerais state, southeast Brazil - Biodiversity Data Journal 3: e5260 (10 November 2015) https://doi.org/10.3897/BDJ.3.e5260

Figure 2. - Lapa do Cipó cave entrance; ca. 20 meters high. Both people in the bottom right are for scale.

opencc-by-4.0Feb 2017View details →
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Figure 3b. from: New records of two endemic troglobitic and threatened arachnids (Amblypygi and Opiliones) from limestone caves of Minas Gerais state, southeast Brazil - Biodiversity Data Journal 3: e5260 (10 November 2015) https://doi.org/10.3897/BDJ.3.e5260

Figure 3b. - Iandumoemauai, male from Lapa do Cipó cave.Figure 3a.Dorsal view of pedipalpal tibia-tarsus ectal and mesal setae IiIiFigure 3b.Dorsal view of habitus, showing coxa IV tuberculate laterally, with robust apical external apophysis and curved at 1/3 distal (on male) and femurIV curved laterally and dorsally at 1/3 from base (on male)Figure 3c.Lateral view of habitus, showing eye mound with erect high spine, with acuminate apex pointing slightly backwards. <br> Dorsal view of habitus, showing coxa IV tuberculate laterally, with robust apical external apophysis and curved at 1/3 distal (on male) and femurIV curved laterally and dorsally at 1/3 from base (on male)

opencc-by-4.0Feb 2017View details →

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