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378 results for “troglobitic species”
Figure 7 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 7 Tonkinosoma tiani sp. n., ♂ paratype from Ganhan Cave. A–C left gonopod, mesal, anterior and lateral views, respectively. Abbreviations: fe = femorite; ll = lamella lateralis; lm = lamella medialis; pf = postfemur; s = sulcus; sg = seminal groove; sl = solenomere; sph = solenophore; t = tooth.
Figure 8 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 8 Tonkinosoma tiani sp. n., ♂ paratype from Ganhan Cave. A, B left gonopod, submesal and lateral views, respectively. Abbreviations: s = sulcus; sl = solenomere; sph = solenophore; t = tooth.
Figure 5 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 5 Tonkinosoma tiani sp. n., ♂ paratype from Ganhan Cave. A–C anterior part of body, dorsal, ventral and lateral views, respectively D–F midbody segments; dorsal, ventral and lateral views, respectively G–I posterior part of body, dorsal, ventral and lateral views, respectively. Scale bar: 0.2 mm.
Figure 3 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 3 Tonkinosoma flexipes Jeekel, 1953, ♂. A, B right gonopod, lateral and mesal views, respectively. Abbreviations: fe = femorite; ll = lamella lateralis; lm = lamella medialis; pf = postfemur; sg = seminal groove; sl = solenomere.
Figure 6 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 6 Tonkinosoma tiani sp. n., ♂ paratype from Ganhan Cave. A, B segments 6–8, dorsal and lateral views, respectively C sternite V, ventral view D gonopods in situ, ventral view E legs 4 and 9, anterior view. Abbreviations: b = tarsal brush; o = ozopore; pl = pleurosternal carina.
Figure 2 from: Liu W, Golovatch S (2018) Occurrence of the millipede genus Tonkinosoma Jeekel, 1953 in China, with the description of the first presumed troglobitic species of this genus (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys 742: 23-34. https://doi.org/10.3897/zookeys.742.23471
Figure 2 Tonkinosoma flexipes Jeekel, 1953, ♂. A–C anterior part of body, dorsal, ventral and lateral views, respectively D, E midbody segments; dorsal and subventral views, respectively F sternite V, ventral view G, H posterior part of body, dorsal and ventrolateral views, respectively I legs 3, 9, 16, anterior views. Scale bar: 0.2 mm.
Figures 23-24 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 23-24 Pacificampanipponica Sendra, sp. n. 23 Pro-, meso- and metanotum, right side 24 Urotergites IV–IX, right side.
Figures 26-31 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 26-31 26 Karst landscape in the area where Mejiro-do cave is located 27 Map of Mejiro-do cave, indicating the touristic area (marked in pink), and the locations where specimens of P.daidarabotchi were found (red dots) 28 conduit in the non-touristic area, trespassed by a stream 29 touristic area near the cave entrance 30 speleothems, where some specimens can be observed 31 P.daidarabotchi, living specimen.
Figures 16-17 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 16-17 Pacificampadaidarabotchi Sendra, sp. n. 16 Urotergites V–IX, left side., paratype ME01 17 detail urostergite VIII, paratype.
Figures 1-6 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 1-6 Pacificampadaidarabotchi Sendra, sp. n. 1 Last and penultimate antennomere, paratype ME01 2 olfactory chemoreceptors within the cupuliform organ, paratype 3 detail olfactory chemoreceptor, paratype 4 coniform sensilla on the antennomeres, paratype 5 gouge sensilla on distal whorl on distal antennomere, paratype 6 detail gouge sensillum, paratype.
Figure 25 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 25 Map of Japan highlighting Kyushu (A) and Shikoku (B) Islands. The red star indicates the location of Mejiro-do Cave (habitat of P.daidarabotchi), while the yellow stars indicate the location of Goya Daiichi Shonyu-do (Kyushu) and Inaba-do (Shikoku) caves, both habitats of P.nipponica.
Figures 7-10 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 7-10 Pacificampadaidarabotchi Sendra, sp. n. 7 Pro-, meso- and metanotum, right side, holotype 8 detail epicuticle surface on mesonotum, paratype 9 detail epicuticle surface including external gland in the middle on mesonotum, paratype 10 detail epicuticle surface and the ecdysial suture on metanotum, paratype.
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.
Figure 5 from: Červená M, Šťáhlavský F, Papáč V, Kováč Ľ, Christophoryová J (2019) Morphological and cytogenetic characteristics of Neobisium (Blothrus) slovacum Gulička, 1977 (Pseudoscorpiones, Neobisiidae), the northernmost troglobitic species of the subgenus Blothrus in Europe. ZooKeys 817: 113-130. https://doi.org/10.3897/zookeys.817.27189
Figure 5 Neobisiumslovacum, male karyotype from Šingliarova chasm after Giemsa staining. Inset (black box) shows chromosomes detected by FISH with 18S rDNA (red signal). Based on two sister metaphase II plates. Scale bar: 10 µm.
Figure 4 from: Červená M, Šťáhlavský F, Papáč V, Kováč Ľ, Christophoryová J (2019) Morphological and cytogenetic characteristics of Neobisium (Blothrus) slovacum Gulička, 1977 (Pseudoscorpiones, Neobisiidae), the northernmost troglobitic species of the subgenus Blothrus in Europe. ZooKeys 817: 113-130. https://doi.org/10.3897/zookeys.817.27189
Figure 4 Back part of Hačavská cave, a new locality for the occurrence of N.slovacum in the Slovak Karst (photograph: V. Papáč); northernmost known locality of a member of the subgenus. Indicated as a yellow star on map (Fig. 1).
Figure 2 from: Červená M, Šťáhlavský F, Papáč V, Kováč Ľ, Christophoryová J (2019) Morphological and cytogenetic characteristics of Neobisium (Blothrus) slovacum Gulička, 1977 (Pseudoscorpiones, Neobisiidae), the northernmost troglobitic species of the subgenus Blothrus in Europe. ZooKeys 817: 113-130. https://doi.org/10.3897/zookeys.817.27189
Figure 2 Distribution of Neobisiumslovacum in karst in Slovakia and Hungary. Green star indicates the type locality and red spot the northernmost locality of the subgenus Blothrus. The karyotype is recorded for two localities. Localities numbered as in Table 1.
Figure 1 from: Červená M, Šťáhlavský F, Papáč V, Kováč Ľ, Christophoryová J (2019) Morphological and cytogenetic characteristics of Neobisium (Blothrus) slovacum Gulička, 1977 (Pseudoscorpiones, Neobisiidae), the northernmost troglobitic species of the subgenus Blothrus in Europe. ZooKeys 817: 113-130. https://doi.org/10.3897/zookeys.817.27189
Figure 1 Distribution of the subgenus Blothrus in Europe. Red circles represent type localities of species. Yellow star indicates the northernmost occurrence of the subgenus in Slovakia (Neobisiumslovacum).
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OpenNeuro
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