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269 results for “Scorpiopidae”
Figures 137–145 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 137–145. Carapace morphosculpture comparison between males of Scorpiops jendeki (137), S. lowei (138), S. puerensis (139), S. shidian (140), S. vachoni (141), S. validus (142), S. xui (143), S. yangi (144) and S. zhangshuyuani (145) under UV light. Scale normalized by posterior width.
Figures 196–199 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 196–199. Scorpiops jendeki, male (97, 98) and female (99, 100) pectines. Figures 196–197. Under white light. Figures 198–199. Under UV light.
Figures 77–80 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 77–80. Mensurational methods of scorpion chela applied in several Scorpiops papers. Figure 77. Definition by Stahnke (1970); red circle: region of P in between digital and external secondary carinae. Figure 78. Definition by Sissom et al. (1990); red circle: region of P in without clear reference system; red line: axis defined in this paper; green line: the straight line that passing the fingertip and a point of the inner curve arc; blue line: orthogonal to Sissom's chela-W. Figure 79. Definition in Sun (2010)'s dissertation; red line: extension of Sun's right bar of chela-W annotation. Figure 80. Ambiguity of Sun's method; change of angle influences the length obtained: ∠θ <∠θ (θ + θ > 180°), L > L .
Figures 47–54 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 47–54. Scorpiops tongtongi, male, left legs I–IV in retrolateral view. Figures 47–50. Under white light. Figures 51–54. Under UV light. Scale bar = 2 mm
Figures 89–90 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 89–90. Scorpiops validus, female, right chela in dorsal aspect. Red lines: options 1 (89) and 2 (90) of chela-W.
Figures 97–136 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 97–136. Comparison of adult Yunnan Scorpiops chelae under white light. Figures 97–100. S. jendeki Kovařík, 1994, male (97, 98) and female (99, 100). Figures 101–104. S. lowei Tang, 2022, male (101, 102) and female (103, 104). Figures 105–108. S. puerensis (Di et al., 2010), male (105, 106) and female (107, 108). Figures 109–112. S. shidian (Qi et al., 2005), male (109, 110) and female (111, 112). Figures 113–116. S. tongtongi Tang, 2022, male (113, 114) and female (115, 116). Figures 117–120. S. vachoni (Qi et al., 2005), male (117, 118) and female (119, 120). Figures 121–124. S. validus (Di et al., 2010), male (121, 122) and female (123, 124). Figures 125–128. S. xui (Sun & Zhu, 2010), male (125, 126) and female (127, 128). Figures 129–132. S. yangi (Zhu et al., 2007), male (129, 130) and female (131, 132). Figures 133–136. S. zhangshuyuani (Ythier, 2019), male (133, 134) and female (135, 136).
Figures 63–64 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 63–64. Scorpiops yangi in vivo habitus under captive condition. Figure 63. Male (right) and female (left) in natural resting posture. Figure 64. Male (left) and female (right) displaying thanatosis or catalepsy in rigid posture.
Figures 31–38. Scorpiops tongtongi, male. Figures 31–34 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 31–38. Scorpiops tongtongi, male. Figures 31–34. Dorsal (31, 33) and ventral (32, 34) views of left chelicera in opening status (right chelicera in closing status available in original description) under white (31–32) and UV (33–34) light. Figures 35–38. Left movable finger (35, 37), right movable finger (36, 38), under white (35–36) and UV (37–38) light. Finger dentition indicated in Figures 37–38. Denticle abbreviations: dd = dorsal distal, vd = ventral distal, d = distal, sd = subdistal, m = median, b = basal, va = ventral accessory. Scale bar = 2 mm (31–34) and 3 mm (35–38).
Figures 13–21 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 13–21. Scorpiops tongtongi, male, pedipalp chela in dorsal (13), external (14) and ventral (15) views, patella in dorsal (16), external (17) and ventral (18) views, femur in dorsal (19), external (20) and ventral (21) views, under white light. Scale bar = 10 mm.
Figures 3–4 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 3–4. Scorpiops tongtongi, male, prosoma and mesosoma in dorsal view, under white (3) and UV (4) light. Scale bar = 10 mm.
Figures 5–6 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 5–6. Scorpiops tongtongi, male, prosoma and mesosoma in ventral view, under white (5) and UV (6) light. Scale bar = 10 mm.
Figures 7–12 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 7–12. Scorpiops tongtongi, male, carapace (7, 10), pectines (8, 11) and sternites VI–VII (9, 12). Figures 7–9. Under white light. Figures 10–12. Under UV light.
Figures 164–172. 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 164–172. Tergites IV–VI morphosculpture comparison between females of Scorpiops jendeki (164), S. lowei (165), S. puerensis (166), S. shidian (167), S. vachoni (168), S. validus (169), S. xui (170), S. yangi (171) and S. zhangshuyuani (172) under UV light. Scale normalized by maximum Feret width at this angle.
Figures 1–2 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 1–2. Scorpiops tongtongi, male, habitus in dorsal (1) and ventral (2) views, under white light. Scale bar = 10 mm.
Figures 194–195 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 194–195. Right pedipalp femur comparison between males of S. validus (194) and S. yangi (195) under UV light in dorsal view. Scale normalized by maximum Feret length at this angle.
Figures 39–46 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 39–46. Scorpiops tongtongi, male, metasoma and telson in dorsal (39, 42), lateral (40, 43) and ventral (41, 44) views, telson in lateral view (45, 46). Figures 39–41, 45. Under white light. Figures 42–44, 46. Under UV light. Carina abbreviations: dsm = dorsosubmedian, dl =
Figure 61–62 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figure 61–62. Scorpiops xui, male (61) and female with 1st instar offspring (62) in vivo habitus under captive condition.
Figures 74-76 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 74-76. Measurement of proximal lobe on pedipalp movable finger. Figure 74. Scorpiops novaki, female from Zayü County, Nyingchi, Tibet, left chela in external aspect. Figure 75. The outline of MF-lobe approximated by manual curve fitting of five dots, showing no obvious P in and P te for its length. Figure 76. Denticles on the dentate margin used as the landmarks for P in and P te of length; the apex of lobe arc which decides the depth may be the denticle (red method) or may not (green method); slight deviation may result in the difference in the final ratiometrics (red vs. green).
Figures 69–73. Considerations for denticles. Figure 69 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 69–73. Considerations for denticles. Figure 69. Scorpiops sp. (Menglun), female, left chela, showing the loss of an OD and normal MD-OD-MD combinations. Figure 70. S. validus, female, left chela, showing the linearity is influenced by the included angle. Figure 71. S. lowei, female, right chela, showing the differentiation of IAD (yellow) and MD (green). Figures 72–73. Scorpiops sp. (Menglun), females, showing examples of low-degree proliferations in which the abnormal denticles (purple) flank a certain denticle type as well as their weak
Figures 93–96 in Description of the adult male Scorpiops tongtongi Tang, 2022, with further comments on the genus Scorpiops Peters, 1861 in China (Scorpiones: Scorpiopidae)
Figures 93–96. Application of "condyle method" upon a modified caliper (93–95) using the right chela of an adult male S. xui as the example, and pinned specimens of S. tongtongi (96). In reality, to avoid the deviation caused by the curvature of chelal fingers, the chela needs to be positioned in a vertical direction (Fig. 94); this obviously depends on the width of the L-shaped plate. The chela does not have to be orthogonal to a horizontal plane since the rotation around the pitch axis does not affect the width measured, as long as the roll and yaw axes are fixed (thus defining a 2D plane) based on the rod (however, this could be difficult by manual measurement).
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