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241 results for “Scorpiops”
Figures 200–201 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 200–201. Bivariate scatter plot comparing males (abscissa) vs. females (ordinate) with standard error bars; gray line is diagonal. Figure 200. Mean PTC comparison (raw data available on ResearchGate); clustered values amplified in grey rectangles. Figure 201. Mean chela-L/W comparison; clustered values amplified in grey rectangles. Symbols: S. jendeki (●); S. lowei (●); S. puerensis (●); S. shidian (●); S. tongtongi (●); S. vachoni (●); S. validus (●); S. xui (●); S. yangi (●); S. zhangshuyuani (●); S. sp. (Jinghong) (); S. sp. (Menglun) (○).
Figures 155–163. Tergites IV–VI in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 155–163. Tergites IV–VI morphosculpture comparison between males of Scorpiops jendeki (155), S. lowei (156), S. puerensis (157), S. shidian (158), S. vachoni (159), S. validus (160), S. xui (161), S. yangi (162) and S. zhangshuyuani (163) under UV light. Scale normalized by maximum Feret width at this angle.
Figures 55–60 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 55–60. Scorpiops tongtongi, male and left hemispermatophore. Figure 55. Male in vivo habitus under captive condition. Figures 56–60. Left hemispermatophore in convex view (56). Capsule in convex (57, 59) and concave (58, 60) views. Capsule exposed in air (59–60) was coated with clove oil in order to reveal the surface texture before the photos were taken. Abbreviations: dpl (distal posterior lobe), lh (lateral hook), tmsd (terminal membrane of sperm duct), bc (basal carina), bcr (basal crest), cls (crown-like structure), mar (mid-axial rib), dc (distal carina).
Figures 91–92 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 91–92. Scorpiops atomatus, female from Gyaca County, Shannan, Tibet, right chela in dorsal aspect. Figure 91. Comparison of "axis" and "baseline" methods. Red curves: rough fitting of chela outline; blue line: axis (chela-L in this paper); cyan line: maximal distance and orthogonal to axis; green lines: orthogonal to axis and passing the apexes of both arcs; purple line: connection between to apexes; pink line: baseline of the inner arc; yellow lines: orthogonal to baseline and passing the apexes of both arcs. Figure 92. "Squeezing method"; red rectangle confined the chela using four points. The left side of this rectangle is determined by P in (chela-W) (or P te (chela-L)) and P te (chela-W); its right side is a parallel line tangential to the outer arc.
Figures 81–82 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 81–82. Scorpiops cf. wrzecionkoi, male from Lhasa, Tibet, right chela in dorsal (81) and external (82) aspects. Green line: shortest distance between fingertip and proximal margin at the tibio-patellar articulation; red line: chela-L or "axis" defined in this paper; blue circle: region where Stahnke (1970) selected as his P in.
Figures 83–88 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 83–88. Comparison of chelae of Scorpiops. Figure 83. S. jendeki, female, right chela in dorsal aspect with nomenclature of chelal carinae annotated. Figures 84–85. S. langxian, female from Bayi District, Nyingchi, Tibet, right chela in dorsal (84) and ventro-external (85) aspects, showing two movable finger condyles and a strong ventromedian carina. Figures 86–88. S. cf. songi Di & Qiao, 2020, adult male from unknown locality, right chela in dorsal (86), ventral (87) and front (88) aspects, showing a strong ventromedian carina clearly rising above the two movable finger condyles.
Figures 191–193 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 191–193. Right pedipalp femur comparison between males of S. shidian (191), S. xui (192) and S. zhangshuyuani (193) under UV light in dorsal view. Scale normalized by maximum Feret length at this angle.
Figures 173–190 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 173–190. Right pedipalp patella comparison between adult Scorpiops spp. under UV light. Figures 173–174. S. jendeki, male (173) and female (174). Figures 175–176. S. lowei, male (175) and female (176). Figures 177–178. S. puerensis, male (177) and female (178). Figures 179–180. S. shidian, male (179) and female (180). Figures 181–182. S. vachoni, male (181) and female (182). Figures 183–184. S. validus, male (183) and female (184). Figures 185–186. S. xui, male (185) and female (186). Figures 187–188. S. yangi, male (187) and female (188). Figures 187–188. S. zhangshuyuani, male (189) and female (190). Scale normalized by maximum Feret length at this angle.
Figure 156 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figure 156. Maximum Likelihood phylogenetic tree (ML) for Scorpiops. Values along the nodes are bootstraps for 1000 iterations.
Figures 127–138 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 127–138: Figures 127–130: Comparison of left pedipalps. Figures 131–134: Comparison of metasomal segments II-IV in lateral view. Figures 135–138: Comparison of pedipalp patella dorsal view with internal aspect tubercles. Figures 127, 131, 135. Scorpiops vrushchik sp. n., male, holotype. Figures 128, 132, 136. Scorpiops nagphani sp. n., male, holotype. Figures 129, 133, 137. Scorpiops neera sp. n., male, holotype. Figures 130, 134, 138. Scorpiops lioneli sp. n., male, holotype.
Figures 112–117 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 112–117. Scorpiops lioneli sp. n., male, holotype. Figures 112–117. Pedipalp chela dorsal (112), ventral (113) and dorsoexternal (114), patella external (115), dorsal (116) and ventral (117) views under UV fluorescence. Trichobothrial pattern indicated by yellow circles.
Figures 94–95 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 94–95. Type locality of Scorpiops neera sp. n., view of Neera river backwaters very close to the type locality (94) and basaltic rock wall at the type locality from where the type series is collected (95).
Figure 155 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figure 155. Projection of first two Principal Component factors explaining 81.89% variation among the nine species of the genus Scorpiops from Peninsular India (except S. pachmarhicus and S. satarensis due to unavailability of sufficient males).
Figures 66–70 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 66–70. Scorpiops neera sp. n., male, holotype, dorsal (66) and ventral (67) views, sternopectinal area (68), metasomal segment V and telson in lateral view (69) and chelicera in dorsal view (70).
Figures 102–103 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 102–103. Scorpiops lioneli sp. n., male, holotype in dorsal (102) and ventral (103) views under UV light.
Figures 62–64 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 62–64. Type locality of Scorpiops nagphani sp. n., aerial view of semi-evergreen forest inside Bhimashankar wildlife sanctuary (BWLS), very close to the type locality (62), view of Kolvan waterfalls inside BWLS where the new species was observed (63) and Scorpiops nagphani sp. n., female (specimen not collected) in vivo habitus with juveniles (64).
Figures 49–54 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 49–54. Scorpiops nagphani sp. n., male, holotype. Figures 49–54. Pedipalp chela dorsal (49), ventral (50) and dorsoexternal (51), patella external (52), dorsal (53) and ventral (54) views under UV fluorescence. Trichobothrial pattern indicated by yellow circles.
Figures 34–38 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 34–38. Scorpiops nagphani sp. n., male, holotype, dorsal (34) and ventral (35) views, sternopectinal area (36), metasomal segment V and telson in lateral view (37) and chelicera in dorsal view (38).
Figures 30–32 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 30–32. Type locality of Scorpiops vrushchik sp. n., view of mountains surrounding Harishchandragad fort very close to type locality (30, 31) and view of Ganesh caves on top of Harishchandragad fort where population of the new species was observed (32).
Figures 118–124 in Four new lithophilic species of Scorpiops Peters 1861 (Scorpiones Scorpiopidae) from peninsular India
Figures 118–124. Scorpiops lioneli sp. n. Figures 118–121. Scorpiops lioneli sp. n., male, holotype, left legs I-IV, retrolateral aspect. Figures 122–124. Male, paratype, BNHS SC 263, hemispermatophore internal (122), external (123) views and capsular region in internal view (124). Abbrevations: distal lamina (dl), capsule (c), trunk (t), pedicel (p), distal posterior lobe (dpl), lateral hook (lh), terminal membrane of the sperm duct (tmsd) and basal carina (bc).
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