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94 results for “Troglobionts”
Figure 7 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 7 DIC photomicrographs of Foveacheles uralensisn. sp., female: A – distal part of fixed digit with setaechaandchb, posterolateral
Figure 6 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 6 Foveacheles uralensisn. sp., female: A – specimen with an abnormal number of setae on coxisternal fields I and III (arrows point at additional setae); B – variability in the location of solenidia on tibia III.
Figure 10 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 10 Foveacheles uralensisn. sp., deutonymph: A – right leg I, dorsolateral aspect; B – right leg II, posterolateral aspect; C – right leg III, anterolateral aspect; D – right leg IV, dorsal-posterolateral aspect.
Figure 3 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 3 Foveacheles uralensisn. sp., female: A – left palp, dorsolateral aspect; B – chelicera, antiaxial aspect; C – subcapitulum, ventral aspect.
Figure 5 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 5 Foveacheles uralensisn. sp., female: A – right leg III, dorsal aspect; B – right leg III, ventral aspect; C – right leg IV, dorsal aspect; D – right leg IV, ventral aspect.
Figure 11 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 11 Live Foveacheles uralensisn. sp. (in situ) in the Shulgan-Tash Cave, attacking springtail Plutomurus baschkiricus (Skorikow, 1900). Photo by Olga Ya. Chervyatsova.
Figure 4 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 4 Foveacheles uralensisn. sp., female: A – right leg I, dorsal aspect; B – right leg I, ventral aspect; C – left leg II, dorsal aspect; D – left leg II, ventral aspect.
Fig. 1 in Assessing troglomorphic and phylogenetically informative traits in troglobionts: a new cave-dwelling centipede illuminates the evolution of a soil-dwelling lineage (Chilopoda: Geophilidae)
Fig. 1 Hypothetical phylogeny with an evolutionarily relict species and different cases of character state reconstruction. Different shapes indicated different characters. Empty shapes indicate an ancestral state, black shapes indicate a derived state, and gray shapes indicate an intermediate (possibly transitional) state. For the circle-character, the relict species shares a derived state with the most closely related species (synapomorphy). For the square-character, it shares an ancestral state with the other more distantly related species (symplesiomorphy). For the triangle-character, it has an apparently intermediate state between an ancestral state and a derived state (possibly transitional)
Fig. 6 Comparison between Plutogeophilus gen.n in Assessing troglomorphic and phylogenetically informative traits in troglobionts: a new cave-dwelling centipede illuminates the evolution of a soil-dwelling lineage (Chilopoda: Geophilidae)
Fig. 6 Comparison between Plutogeophilus gen.n., Macronicophilus, and another Geophilidae: a–c forcipular segment, ventral view; d–f forcipular segment, dorsal view; g–i ultimate leg-bearing segment of adult ♀, without telopodites, ventral view; j–o, right leg of the ultimate pair, ventral view. Line drawings from photos, setae omitted: a, d, g, j PD-G 1359; b, e, m ISLA 11879; c, f, i, n PD-G 230; h, l ISLA 12866; o PD-G 1510. Redrawn from: k Pereira et al., 2000
Fig. 2 in Assessing troglomorphic and phylogenetically informative traits in troglobionts: a new cave-dwelling centipede illuminates the evolution of a soil-dwelling lineage (Chilopoda: Geophilidae)
Fig. 2 Living specimen of Plutogeophilus jurupariquibaba gen.n. sp.n. in the Areias de Cima cave, 7.IV.2012 (photo by Robson Zampaulo)
Fig. 7 Comparison between Plutogeophilus gen.n in Assessing troglomorphic and phylogenetically informative traits in troglobionts: a new cave-dwelling centipede illuminates the evolution of a soil-dwelling lineage (Chilopoda: Geophilidae)
Fig. 7 Comparison between Plutogeophilus gen.n., Macronicophilus, and another Geophilidae: a–c labrum, ventral view; d–f, left pretarsus of second maxillae, ventral view; g–i, metasternite at ca. 20% of the antero-posterior series of leg-bearing segments, ventral view. Line drawings from photos, setae omitted: a, d, g PD-G 1359; b, e, h ISLA 11879; c, f, i PD-G 230
Figure 2 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 2 Foveacheles uralensisn. sp., female: A – idiosomal dorsum; B – idiosomal venter.
Figure 9 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 9 Foveacheles uralensisn. sp., deutonymph: A – chelicera, posterolateral aspect, dorsal
Figure 1 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 1 The distribution ofFoveacheles uralensisn. sp. in the caves (yellow circles) of the Urals.
Figure 8 in A new troglobiont species of Rhagidiidae (Acari: Eupodoidea) from cave sites in the Ural Mountains (Russia)
Figure 8 Foveacheles uralensisn. sp., deutonymph: A – idiosomal dorsum; B – idiosomal venter.
Figure 4 in Domitius Culsu sp. nov. (Araneae, Nestici-dae), a new troglobiont spider from Italy with notes on Italian nesticids of the genus Domitius Ribera, 2018
Figure 4. Male palps of the Italian Domitius species for comparison. D. speluncarum male palp: A. ventral view; B. dorsal view; C. retrolateral view; D. menozzii male palp: D. ventral view; E. dorsal view; F. retrolateral view; D. sbordonii male palp: G. ventral view; H. dorsal view; I. retrolateral view.
Figure 3 in Domitius Culsu sp. nov. (Araneae, Nestici-dae), a new troglobiont spider from Italy with notes on Italian nesticids of the genus Domitius Ribera, 2018
Figure 3. Habitus and type locality of Domitius culsu sp. nov. A. Habitus of male; B. habitus of female; C. female with prey; D. juvenile in captivity; E. entrance of Tana delle Fate di Coreglia Antelminelli cave; F. map of the cave and detail of the entrance, showing the spatial distribution of the two co-existing nesticid species living inside: green = D. culsu sp. nov., orange = Kryptonesticus eremita, arrow = en- trance of the cave.
Figure 1 in Domitius Culsu sp. nov. (Araneae, Nestici-dae), a new troglobiont spider from Italy with notes on Italian nesticids of the genus Domitius Ribera, 2018
Figure 1. Nesticus culsu sp. nov. Male palp: A. ventral view; B. dorsal view; C. retrolateral view; D. female, cephalic region showing the eye pattern; E. epigyne, ventral view; F. epigyne after clearing, ventral view, the schematic course of internal ducts is outlined with a white line; G. vulva after clearing, dorsal view.
FIGURES 9–14. Cylindroiulus oromii n in Insular species swarm goes underground: two new troglobiont Cylindroiulus millipedes from Madeira (Diplopoda: Julidae)
FIGURES 9–14. Cylindroiulus oromii n. sp. male gonopod. 9–10: mesal view, 11: pro- & mesomerite, anterior view, 12–13: lateral view, 14: opisthomerite, posterior view. afl: anterior flagellum-conducting lamella, f: flagellum, fl: flagelliferous lobe of promerite, fp: finger-shaped projection of promerite, m: mesomerite, p: promerite, pc: lateral rim of paracoxite, pfl: posterior flagellum-conducting lamella, pp: paracoxal process, s: solenomerite, sc: sperm channel, t: apical fringe. Scale bar: 100 µm.
FIGURE 15. Cylindroiulus oromii n in Insular species swarm goes underground: two new troglobiont Cylindroiulus millipedes from Madeira (Diplopoda: Julidae)
FIGURE 15. Cylindroiulus oromii n. sp. vulva. bu: bursa, op: operculum, rs: receptaculum seminis,. Scale bar: 100 µm.
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OpenNeuro
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