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457 results for “Cave 4”
Fig. 4. Distribution maps. A in A new semi-cryptic Filistata from caves in the Levant with comments on the limits of Filistata insidiatrix (Forsskål, 1775) (Arachnida: Araneae: Filistatidae)
Fig. 4. Distribution maps. A. Filistata insidiatrix (Forsskål, 1775) in the Mediterranean and Middle East (note the species has been recorded from Angola, Venezuela and the islands of Socotra, Azores and Cabo Verde, but these records seem to be introduced); literature records have been taken from Benoit (1968), Brignoli (1982), Marusik & Zonstein (2014), Marusik & Zamani (2015a) and Zonstein & Marusik (2019). B. Filistata insidiatrix (circles) and F. betarif sp. nov. (star) in Israel and Palestine; only specimens examined by us are included in the map. Darker shades of orange are records that include at least one male specimen. C. Other species of Filistata Latreille, 1810 in Israel (except F. insidiatrix).
Figure 4 in A new genus and new species of macronyssid mite (Mesostigmata: Gamasina: Macronyssidae) from Brazilian caves including molecular data and key for genera occurring in Brazil
Figure 4 Chiasmanyssus cavernicolan. sp. female. A – Gnathosomatic dorsal; B – Gnathosomatic ventral; C – Venter palpal genu with distinct circular (spatulate) and membranous seta; D – Dorsal palpal genu with lyrifissure; E – Palpal trochanter with ventral process; F – Chelicera. Scale bars: 50 µm.
Fig. 4. Barbodes pyrpholeos, PNM 15649 in Barbodes pyrpholeos, new species, the first cave-dwelling cyprinid fish in the Philippines, with redescription of B. montanoi (Teleostei: Cyprinidae)
Fig. 4. Barbodes pyrpholeos, PNM 15649, holotype, 104.1 mm SL; radiograph below. (Photograph and radiograph by Tan Heok Hui)
FIGURE 4. Ellobius right lower m1. A in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar
FIGURE 4. Ellobius right lower m1. A) 14 landmarks: Landmarks on the outermost turning point of buccal (2, 4, 6) and lingual (8, 10, 12, 14) salient angles, and on the innermost turning point of buccal (3, 5) and lingual (9, 11, 13) reentrant angle. B) 60 semi-landmarks on the anterior cap.
Fig. 4 in New giant genus of Parabathynellidae (Crustacea: Bathynellacea): first record of Bathynellacea in an Australian cave
Fig. 4. Megabathynella totemensis Camacho & Abrams gen. et sp. nov. A. Holotype, ♂ (NTM Cr19141) thoracopod I. B. Allotype, ♀ (NTM Cr19142), thoracopod I. C–D. Last article of endopod of ThVII of two male paratypes (WAMC73466H and MNCN 20.04/20931). Scale bar in mm.
Fig. 4 in Biological response to geochemical and hydrological processes in a shallow submarine cave
Fig. 4: Living communities inside the Y-Cave: A) the entrance part of the cave, vertical wall, depth 9 m, biocenosis of semi-dark caves (GSO, see text for explanation of acronym) dominated by numerous sponge species; B) the entrance part of the cave, ceiling, depth 6 m, GSO dominated by scleractinian coral Leptopsammia pruvoti; C) the entrance part of the cave, overhang, depth 7 m, GSO dominated by scleractinian coral Madracis pharensis; D) the entrance part of the cave, vertical wall (near the bottom), depth 9 m, GSO, a large specimen of the orange sponge Agelas oroides dominates the photo; E) the middle part of the cave, in front of the section C-C', bottom, depth 10 m, a massive white specimen of the sponge Chondrosia reniformis; F) the middle part of the cave, between sections C-C' and D-D', vertical wall and overhang, depth 5 m, the transition from GSO to biocenosis of caves and ducts in total darkness (GO, see text for explanation of acronym), the community is dominated by serpulids; G) the middle part of the cave, between sections C-C' and D-D', vertical wall, depth 5 m, transition from GSO to GO, a dense population of brachiopod Novocrania anomala, encrusting sponge Placospongia decorticans and serpulids; H) the end part of the cave, near the section G-G', vertical wall with overhang and horizontal shelf, depth 6 m, GO with scarce calcareous sponges and serpulids (see Fig. 2 for position of the sections).
Figure 4 in Karstsinnectes cehengensis (Cypriniformes: Nemacheilidae), a new species of cave fish from Guizhou, China
Figure 4. The three-dimensional reconstructed model of the skeleton of Karstsinnectes cehengensis Luo, Zhao & Zhou, sp. nov. (paratype GZNU20230223003, standard length 33.5 mm). A. Dorsal view; B. Ventral view; C. Latera view.
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.
FIGURE 4 in A new cave-dwelling hadzioid amphipod (Senticaudata, Hadzioidea, Melitidae) from sulFIdic groundwaters in Iran
FIGURE 4 Photographs of Tegano tashanensis sp. FIGURE 5 Tegano tashanensis sp. nov.: (A) holotype, nov.: male (A) and female (B) living in male (4.7 mm), habitus, lateral view; Chah Kabootari Cave, Iran. (B Downloaded) epimeralfrom Brill plates.com I-III.06/21/2024 06:09:11PM via Open Access. This is an open access article distributed under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/
Fig. 4 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.
Fig. 4. Biodiversity of protozoa in various cave habitat types (TAM – testate amoebae, CIL – ciliates, NAM – naked amoebae, FLG – heterotrophic flagellates, HEL – heliozoans)
Fig. 4 in The blind catfish from the caves of Chapada Diamantina, Bahia, Brazil (Siluriformes: Heptapteridae): description, anatomy, phylogenetic relationships, natural history, and biogeography
Fig. 4. Cranium of Rhamdiopsis krugi, LIRP 5928, 33.9 mm SL, paratype. a) dorsal view; b) ventral view. Abbreviations: AF) anterior fontanel; AN) antorbital; AP) autopalatine; AT) antorbital tubule; BL) Baudelot's ligament; BO) basioccipital; EC) ethmoidean cartilage; EP) epioccipital; ES) extrascapula; EX) exoccipital; FR) frontal; HF) hyomandibular facet; i1-6) infraorbital sensory branches 1 to 6; LE) lateral ethmoid; ME) mesethmoid; MX) maxilla; NA) nasal; OF) optic foramen (rudiment); OS) orbitosphenoid; PA) parasphenoid; PF) posterior fontanel; PM) premaxilla; PO) prootic; po1-3) postotic sensory branches 1 to 3; PT) pterotic; PS) pterosphenoid; s1-3) supraorbital sensory branches 1 to 3; s6) supraorbital sensory branch 6 (epiphyseal branch); s7) supraorbital sensory branch 7 (postorbital branch); s8) supraorbital sensory branch 8 (parietal branch); SC) supracleithrum; SP) sphenotic; ST1-4) suborbital tubules 1 to 4; SU) supraoccipital; TF) trigeminofacial foramen; VL) ventrolateral limb of supracleithrum; VM) ventromedial limb of supracleithrum; and VO) vomer. Scale bars = 1.5 mm.
FIGURE 4 in Pleistocene rhinoceros from Bogovina Cave: The first report of Stephanorhinus hundsheimensis Toula, 1902 (Mammalia, Rhinocerotidae) from Serbia
FIGURE 4. Upper molars of Stephanorhinus hundsheimensis from Bogovina Cave: right M1/M2 HMP-131 in (A) occlusal, (B) vestibular, (C) lingual, (D) mesial and (E) distal views; right M1/M2 HMP-X in (F) occlusal, (G) vestibular, (H) lingual, (I) mesial and (J) distal views; left M1/M2 HMP-135 in (K) occlusal, (L) vestibular, (M) lingual, (N) mesial, and (O) distal views.
Fig. 4 in Population density and habitat of an endangered cave fish Eigenmannia vicentespelaea Triques, 1996 (Ostariophysi: Gymnotiformes) from a karst area in central Brazil
Fig. 4. Box-plots showing the means and standard deviations (Sd) of population densities data for Eigenmannia vicentespelaea along the years 1999, 2000 and 2001 (a) and between the dry seasons, independent of the years (b) BDS, beginning of dry season; MDS, middle of dry season; EDS, end of dry season.
Рис. 1. Разрез верхней пачки рыхΛых отΛожений пещеры МеΑвежий КΛык. ΑегенΑа: 1 — извΛеченные отΛожения; 2 — материнская пороΑа; 3 — камни; 4 — неизвΛеченные отΛожения Fig. 1. Cross-section of the upper part pit of the Medvezhyi Klyk Cave. Legend: 1 — excavated deposits; 2 — limestone; 3 — limestone blocks; 4 — unexcavated deposits in Late Holocene amphibians from the Medvezhiy Klyk Cave of the Lozovy Ridge (Southern Sikhote-Alin, Primorsky Krai)
Рис. 1. Разрез верхней пачки рыхΛых отΛожений пещеры МеΑвежий КΛык. ΑегенΑа: 1 — извΛеченные отΛожения; 2 — материнская пороΑа; 3 — камни; 4 — неизвΛеченные отΛожения Fig. 1. Cross-section of the upper part pit of the Medvezhyi Klyk Cave. Legend: 1 — excavated deposits; 2 — limestone; 3 — limestone blocks; 4 — unexcavated deposits
FIGURE 4. A caver rappels into Fossil Cave, Lava Beds National Monument. The lava tube has a in The Cave Fauna of California
FIGURE 4. A caver rappels into Fossil Cave, Lava Beds National Monument. The lava tube has a moist microclimate that sustains ferns in the entrance. Jean Krejca and Steve Taylor.
Fig. 4 in A new genus and two new species of cave-dwelling cyclopoids (Crustacea, Copepoda) from the epikarst zone of Thailand and up-to-date keys to genera and subgenera of the Bryocyclops and Microcyclops groups
Fig. 4. Siamcyclops cavernicolus gen. et sp. nov., allotype, ♂. A. Habitus, dorsal view. B. Urosome, ventral view. C. Urosome, lateral view. D. Urosome, dorsal view. E. Antennule. Scale bars: 100 μm.
Fig. 4 in The genus Jeekelosoma Mauriès, 1985 - Moroccan cave millipedes (Diplopoda, Polydesmida, Paradoxosomatidae)
Fig. 4. Jeekelosoma abadi (Mauriès, 1985) comb. nov., male topotype (NHMD 302021), left gonopod in situ. A. Ventral view. B. Slightly meso-ventral view to show the keel a. C. Subapical view. D. Lateral view. E. Mesal view. Abbreviations: a = posterior-median keel of gonopod aperture; app = terminal appendage of solenophore; map = mesal acropodital process; prf = prefemoral part; slm = solenomere; sph = solenophore; sph‑a = apical lamella of solenophore. Scale bars: A–B, D–E = 0.05 mm; C = 0.01 mm.
Concordance of the Qumran Cave 4 'Unidentified fragments' on PAM 43691 (IAA # 96)
<p>Lists of agreement with the PAM 43691 (IAA # 96) Qumran Cave 4 unidentified fragments with fragments on earlier photographs in the series of Unidentified fragments (cf. DJD 33) </p>
Fig. 4 in Two new species of Fridericia (Annelida: Enchytraeidae) from Hungarian caves
Fig. 4. Micrograph of Fridericia spelaeophila sp. nov. A. Brain. B. Head pore (marked with arrow). C. Chaetae in V–VII. D. Clitellar glands, dorsal view. E. Chaetae in VII–VIII. F. Detached chaetae in coelom. G. Coelomocytes. H. Nephridium at 7/8 (pre- and postseptale marked with arrows). I. Fragments of decaying wood in the intestine (marked with arrow). J. Male copulatory organs, lateral view. K–L. Sperm funnels. (A, K in vivo, B–J, L fixed, stained. Scale bars: 50 μm. B, G from holotype, K from DNA 1283.)
Fig. 4 in Diversity and distribution of Pleioplectron Hutton cave wētā (Orthoptera: Rhaphidophoridae: Macropathinae), with the synonymy of Weta Chopard and the description of seven new species
Fig. 4. Head of cave wētā in the genus Pleioplectron Hutton, 1896 showing sexual dimorphism. A–B. P. simplex Hutton, 1896. A. Adult ♂, Hinewai Reserve, Banks Peninsula (MPN CW4118). B. Adult ♀, Helicopter Hill Track, Craigieburn (MPN CW3914). C–D. P. crystallae sp. nov. C. Adult ♂, Branch Creek Hut, Mt Owen (MPN CW4271). D. Adult ♀, Salisbury Lodge, Mt Arthur Tablelands (MPN CW3941). Scale bar = 5 mm.
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