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404 results for “Guizhou Province”

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Figures 3 and 4 in Description of a new species of Lysiteles Simon from Guizhou Province, China (Araneae: Thomisidae)

Figures 3 and 4. Lysiteles bicuspidatus sp. nov., holotype male. 3. Left male palp, prolateral view; 4. Left male palp, retrolateral view. Scale bar = 0.5 mm.

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

Figures 7–9 in Description of a new species of Lysiteles Simon from Guizhou Province, China (Araneae: Thomisidae)

Figures 7–9. Lysiteles bicuspidatus sp. nov., female paratype. 7. Epigyne, ventral view; 8. Epigyne, ventral view, condition of epigyne cleared in boiling KOH solution after dissection from the spider bodies, showing visible CD and location of CO; 9. Vulva, dorsal view. Scale bar = 0.1 mm (7–9).

opencc-by-4.0Jul 2017View details →
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Figures 1 and 2 in Description of a new species of Lysiteles Simon from Guizhou Province, China (Araneae: Thomisidae)

Figures 1 and 2. Lysiteles bicuspidatus sp. nov., habitus, dorsal view. 1. Male holotype; 2. Female paratype. Scale bar = 1 mm (1–2).

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

Figures 17–22 in A new species of the genus Songthela from Guizhou Province, China (Araneae: Mesothelae: Liphistiidae)

Figures 17–22. Songthela pluma sp. nov., female paratype (MGEU-LIP-18-01). 17- Epigyne, uncleared, ventral view; 18- Epigyne, cleared, ventral view; 19- Vulva, cleared and deposited in ethanol, dorsal view; 20- Vulva, cleared and deposited in lactic acid, dorsal view; 21- Vulva, cleared and deposited in ethanol, anterior view; 22- Vulva, cleared and embedded in Arabic gum, dorsal view. Scale bar = 0.5 mm (equal for 17–22).

opencc-by-4.0Oct 2018View details →
zenodo40/100

Fig. 3 in Burgess Shale-type microfossils from the middle Cambrian Kaili Formation, Guizhou Province, China

Fig. 3. Sclerites of the problematic lophotrochozoan Wiwaxia (NIGP 153962–153977) from the middle Cambrian Kaili Formation, Guizhou, China. A. KAIL−05−01−N28. B. KAIL−GTBM−9−2−a−M38. C. KAIL−05−01−S43. D. KAIL−GTBM−9−35M−02−F25. E. KAIL−05−01−T15. F. KAIL−A−01−R33. G. KAIL−05−03−L36. H. KAIL−GTBM−9−2−b−D40. I. KAIL−GTBM−9−2−d−P33. J. KAIL−GTBM−9−2−d−N34. K. KAIL−GTBM−9−35M−02−J34. L. KAIL− GTBM−9−37M−01−S46 (image reversed). M. KAIL−07−01−L24. N. KAIL−A−01−P37. O. KAIL−05−05−T6. P. KAIL−GTBM−9−37M−01−M22. Scale bars: A 200 µm, B–P 100 µm.

opencc-by-4.0Jun 2011View details →
zenodo40/100

Fig. 7 in Burgess Shale-type microfossils from the middle Cambrian Kaili Formation, Guizhou Province, China

Fig. 7. Problematic metazoan microfossils (NIGP 153992–154010) from the middle Cambrian Kaili Formation, Guizhou, China. A–F. Ornamented spines cf. Rushtonites/Mongolitubulus. A. KAIL−04−05−M10. B. KAIL−GTBM−9−35M−02−G23. C. KAIL−BP−01−K41. D. KAIL−X−01−P42. E. KAIL−09−01−S31. F−J. Possible elements of a lophotrochozoan jaw apparatus. F. KAIL−05−01−U23. G. KAIL−04−2−T39 (G1); detail (G2). H. KAIL−GTBM−9−2−d−F6 (image reversed). I. KAIL−BP−01−N25 (image reversed). J. KAIL−GTBM−9−2−d−E9. K−O. Diverse spinose forms including possible elements of a radula−like apparatus (M, N). K. KAIL−04−07−Q33. L. KAIL−05−03−J25. M. KAIL−GTBM−9−35M−02−N41. N. KAIL−05−03−M17. O. KAIL−04−09−X27. P, Q. Possible arthropodan seta (P) and setal array (Q). P. KAIL−X−01−M28. Q. KAIL−GTBM−9−35M−01−W29. R, S. Complex forms of unknown affinity. R. KAIL− 05−03−U21. S. KAIL−05−01−F35. Scale bars: A–P, S 100 µm; Q, R 50 µm; G 2 40 µm.

opencc-by-4.0Jun 2011View details →
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Fig. 2 in Burgess Shale-type microfossils from the middle Cambrian Kaili Formation, Guizhou Province, China

Fig. 2. Biomineralizing taxa preserved as small carbonaceous fossils (NIGP 153954–153961) from the middle Cambrian Kaili Formation, Guizhou, China. A. Hyolithid helen (A1), with detail of rounded proximal end (A2), KAIL−BP−01−J38. B. Multi−rayed chancelloriid sclerite, KAIL−A−01−P39. C−E. Single−rayed or disarticulated chancelloriid sclerites. C. KAIL−GTBM− 9−2−b−E39. D. KAIL−05−05−O17 (image reversed). E. KAIL−09−01−U19. F–H. Brachiopod fragments (F1, G1, H1), with details of microstructure (F2, G2, G3, H2). F. KAIL−07−01−U38. G. KAIL−05−05−E17. H. KAIL−GTBM− 9−2−d−K41. Scale bars: A1, B–E 200 µm; A2 40 µm; F1 400 µm; F2 125 µm; G1 250 µm; G2 125 µm; G3 60 µm; H1 500 µm; H2 150 µm.

opencc-by-4.0Jun 2011View details →
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Fig. 4 in Burgess Shale-type microfossils from the middle Cambrian Kaili Formation, Guizhou Province, China

Fig. 4. Pterobranch periderm (NIGP 153978–153979) from the middle Cambrian Kaili Formation, Guizhou, China. A. KAIL−BP−01−N23. B. KAIL−A− 01−R36. A2 is a photographic detail of A1; A3 and B2 are camera lucida drawings highlighting the fusellar microstructure, including characteristic oblique sutures developed locally in a "zig−zag" arrangement. Scale bars: A1 200 µm; A2, A3 100 µm; B1, B2 400 µm.

opencc-by-4.0Jun 2011View details →
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Fig. 1 in Burgess Shale-type microfossils from the middle Cambrian Kaili Formation, Guizhou Province, China

Fig. 1. Filaments and acritarchs (NIGP 153940–153953) from the middle Cambrian Kaili Formation, Guizhou, China. A–G. Cyanobacterial filaments. A–C. Eomicrocoleus Horodyski and Donaldson, 1980/Siphonophycus Schopf, 1968 emended Knoll, Swett, and Mark, 1991 with multiple cellular trichomes enclosed within a common sheath (in C, a double sheath). D,E,G. Siphonophycus spp. exhibiting a variety of growth forms. F. Polytrichoides Hermann, 1974 emend. Knoll, Swett, and Mark, 1991. A. KAIL−04−03−L44. B. KAIL−05−02−V31. C. KAIL−05−05−D13. D. KAIL−GTBM−9−35M−01−T45. E. KAIL− GTBM−9−37M−01−J23. F. KAIL−A−01−K26. G. KAIL−GTBM−9−2−b−M37. H, I. Filaments of uncertain affinity. H. KAIL−GTBM−9−35M−01−E44. I. KAIL− 09−01−H12. J–N. Acritarchs, including forms with medial splitting (K, L) and possible vegetative colony growth (M). J. KAIL−A−01−O25. K. KAIL− 04−05−T17. L. KAIL−04−05−G17. M. KAIL−GTBM−2−9−c−D21. N. KAIL−GTBM−9−2−d−S14. Scale bars A–F, J–L 200 µm; G–I 400 µm; M, N 100 µm.

opencc-by-4.0Jun 2011View details →
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FIG. 5. — Telema oculata n in Four new cave-dwelling species of Telema (Arachnida, Araneae, Telemidae) from Guizhou Province, China

FIG. 5. — Telema oculata n. sp.: A, female endites,labium and sternum in ventral view; B, female genitalia in dorsal view; C, spermatheca in lateral view; D, colulus; E, female genitalia in ventral view; F, chelicerae in ventral view. Scale bars: A-C, F 0.1 mm; D, E, 0.05 mm.

opencc-zeroDec 2008View details →
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FIG. 4. — Telema grandidens n in Four new cave-dwelling species of Telema (Arachnida, Araneae, Telemidae) from Guizhou Province, China

FIG. 4. — Telema grandidens n. sp. A, female endites, labium and sternum in ventral view; B, male left palp in retrolateral view; C, male left palp in prolateral view; D, female genitalia in dorsal view; E, spermatheca in lateral view; F, colulus; G, female genitalia in ventral view; H, chelicerae in ventral view. Scale bars: A-E, H 0.2 mm; F, G, 0.1 mm.

opencc-zeroDec 2008View details →
zenodo40/100

FIG. 3. — Telema claviformis n in Four new cave-dwelling species of Telema (Arachnida, Araneae, Telemidae) from Guizhou Province, China

FIG. 3. — Telema claviformis n. sp.: A, female endites, labium and sternum in ventral view; B, male left palp in retrolateral view; C, male left palp in prolateral view; D, spermatheca in lateral view; E, female genitalia in dorsal view; F, colulus; G, female genitalia in ventral view; H, chelicerae in ventral view. Scale bars: A-E, H, 0.2 mm; F, G, 0.1 mm.

opencc-zeroDec 2008View details →
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FIG. 2. — Telema circularis n in Four new cave-dwelling species of Telema (Arachnida, Araneae, Telemidae) from Guizhou Province, China

FIG. 2. — Telema circularis n. sp.: A, female endites, labium and sternum in ventral view; B, male left palp in retrolateral view; C, male left palp in prolateral view; D, spermatheca in lateral view; E, female genitalia in dorsal view; F, colulus; G, female genitalia in ventral view; H, chelicerae in ventral view. Scale bars: A-C, F, G, 0.1 mm; D, E, H, 0.2 mm.

opencc-zeroDec 2008View details →
zenodo40/100

Fig. 4. A–B in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 4. A–B. Allochthonius lini sp. nov., dorsal views. A. ♂, holotype (MCWNU (Ar-Ps-YN-0082)). B. ♀, paratype (MCWNU (Ar-Ps-YN-0019)). C–D. A. xuae sp. nov., dorsal views. C. ♂, holotype (MCWNU (Ar-Ps-GZ-0056)). D. ♀, paratype (MCWNU (Ar-Ps-GZ-0012)). Scale bar = 1.00 mm.

opencc-by-4.0Mar 2023View details →
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Fig. 3 in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 3. Spelaeochthonius yinae sp. nov. A–L. ♂, holotype (MCWNU (Ar-Ps-YN-0081)). M. ♀, paratype (MCWNU (Ar-Ps-YN-0008)). A. Carapace. B. Epistome C. Right chelicera. D. Coxal spines. E. Rallum of left chelicera. F. Left leg I, lateral view. G. Left leg IV, lateral view. H. Left pedipalp (minus chela). I. Chela, retrolateral view. J. Chela, dorsal view. K. Intercoxal tubercle. L. Male genital area. M. Female genital area. Scale bars = 0.20 mm.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 6 in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 6. The known distribution of Pseudotyrannochthoniidae from China. 1. Allochthonius brevitus Hu & Zhang, 2012. 2. A. exornatus Gao & Zhang, 2013. 3. A. fanjingshan Gao, Zhang & Zhang, 2016. 4. A. fuscus Hu & Zhang, 2011. 5. A. jingyuanus Zhang & Zhang, 2014. 6. A. liaoningensis Hu & Zhang, 2012. 7. A. lini sp. nov. 8. A. sichuanensis (Schawaller, 1995). 9. A. trigonus Hu & Zhang, 2011. 10. A. wui Hu & Zhang, 2011. 11. A. xuae sp. nov. 12. Centrochthonius kozlovi (Redikorzev, 1918). 13. C. cheni (Gao, Zhang & Zhang, 2016). 14. S. yinae sp. nov.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 1 in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 1. Allochthonius lini sp. nov. A–K. ♂, holotype (MCWNU (Ar-Ps-YN-0082)). L. ♀, paratype (MCWNU (Ar-Ps-YN-0019)). A. Carapace. B. Right chelicera. C. Coxal spines. D. Rallum of left chelicera. E. Right leg I, lateral view. F. Right leg IV, lateral view. G. Right pedipalp (minus chela). H. Chela, retrolateral view. I. Chela, dorsal view. J. Intercoxal tubercle. K. Male genital area. L. Female genital area. Scale bars = 0.20 mm.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 5 in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 5. Spelaeochthonius yinae sp. nov., dorsal views. A. ♂, holotype (MCWNU (Ar-Ps-YN-0081)). B. ♀, paratype (MCWNU (Ar-Ps-YN-0008)). Scale bar = 1.00 mm.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 2 in Three new species of pseudoscorpions (Arachnida: Pseudoscorpiones: Pseudotyrannochthoniidae) from caves in Yunnan and Guizhou Provinces, China

Fig. 2. Allochthonius xuae sp. nov. A–H. ♂, holotype (MCWNU (Ar-Ps-GZ-0056)). I. ♀, paratype (MCWNU (Ar-Ps-GZ-0012)). A. Carapace. B. Right chelicera. C. Coxal spines. D. Rallum of left chelicera. E. Left pedipalp (minus chela). F. Chela, retrolateral view. G. Chela, dorsal view. H. Male genital area. I. Female genital area. Scale bars = 0.20 mm.

opencc-by-4.0Mar 2023View details →
zenodo36/100

Fig. 12 in Ostracods (Crustacea) associated with microbialites across the Permian-Triassic boundary in Dajiang (Guizhou Province, South China)

Fig. 12. Height/length diagram of Orthobairdia jeanlouisi sp. nov.

opencc-by-3.0Jul 2012View details →

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