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247 results for “Anchialine caves”
Figure 2 from: Benítez S, Illife TM, Quiroz-Martínez B, Alvarez F (2019) How is the anchialine fauna distributed within a cave? A study of the Ox Bel Ha System, Yucatan Peninsula, Mexico. Subterranean Biology 31: 15-28. https://doi.org/10.3897/subtbiol.31.34347
Figure 2 Ecological parameters of the anchialine fauna in the Ox Bel Ha anchialine cave system along a transect A mean ± one standard error of the abundance B mean ± one standard error of the species richness C Shannon's diversity index. The sites are: T, Tábano; O, Odyssey; M, Muknal; B, Bang.
Figure 1 from: Benítez S, Illife TM, Quiroz-Martínez B, Alvarez F (2019) How is the anchialine fauna distributed within a cave? A study of the Ox Bel Ha System, Yucatan Peninsula, Mexico. Subterranean Biology 31: 15-28. https://doi.org/10.3897/subtbiol.31.34347
Figure 1 Map of the Ox Bel Ha anchialine cave system near the town of Tulum. Quintana Roo, Mexico. The four cenotes used to access the cave were: Tábano, Odyssey, Muknal and Bang.
Figure 4 from: Benítez S, Illife TM, Quiroz-Martínez B, Alvarez F (2019) How is the anchialine fauna distributed within a cave? A study of the Ox Bel Ha System, Yucatan Peninsula, Mexico. Subterranean Biology 31: 15-28. https://doi.org/10.3897/subtbiol.31.34347
Figure 4 A Dendrogram and B non-metrical multidimensional scaling (nMDS) ordination plot, both resulting from the similarity matrix based on Jaccard's similarity index.
Figure 3 from: Benítez S, Illife TM, Quiroz-Martínez B, Alvarez F (2019) How is the anchialine fauna distributed within a cave? A study of the Ox Bel Ha System, Yucatan Peninsula, Mexico. Subterranean Biology 31: 15-28. https://doi.org/10.3897/subtbiol.31.34347
Figure 3 Distribution of organisms by species in relation to depth in the four cenotes studied in the Ox Bel Ha cave: A, cenote Tábano; B, cenote Odyssey; C, cenote Muknal; and D, cenote Bang. The red band depicts the halocline, its width represents the thickness of the interface.
Fig. 8. Macrobrachium xmas n in A new stygobitic prawn of the genus Macrobrachium Spence Bate, 1864, from anchialine caves in Christmas Island, Indian Ocean; with a rediagnosis of M. miyakoense Komai & Fujita, 2005 (Crustacea: Decapoda: Caridea: Palaemonidae)
Fig. 8. Macrobrachium xmas n. sp., paratype male (pocl 21.75 mm) (OUMNH.ZC.2015-02-048). A, rostrum, carapace, and cephalic appendages, lateral view; B, eye (left side), ventral view; C, left second pereiopod, lateral view; D, right second pereiopod, lateral view; E, same, basal part of fingers, dorsal view. Scale bars = 1.0 mm.
Figure 13 in A new species of Typhlatya (Crustacea: Decapoda: Atyidae) from anchialine caves on the French Mediterranean coast
Figure 13. Typhlatya arfeae sp. nov., specimen 17.60 mm, sex unknown. A, general view of right third maxilliped with corresponding arthrobranch, anteromedial. B, detail of bipectinate spine on medial surface of carpus. C-E, detail of several spines of heterogeneous array comprising medial armature of propodus. F, left first pereiopod and fourth thoracomere pleurobranch, anteromedial. B-E not to scale.
Figure 12 in A new species of Typhlatya (Crustacea: Decapoda: Atyidae) from anchialine caves on the French Mediterranean coast
Figure 12. Typhlatya arfeae sp. nov., specimen 17.60 mm, sex unknown, left second maxilliped. A, general view with dactylus outlined only, anterior. B, detail of denticulate tip of seta on medial margin of ischium. C, detail of denticulate tip of plumose seta on distal margin of propodus. D, detail of armature on anteromedial surface of dactylus, armature on medial margin omitted. E, detail of latter armature, with ornamentation of spines omitted except for two most proximal spines. F, detail of one of latter. G, left and proximal part of right paragnath, posterior (= ventral view). Scale bar: A, D, E = 0.125 mm; G = 0.25 mm; B, C and F not to scale.
Fig. 2. Whip Cave. A in Uropterygius cyamommatus, a new moray eel (Anguilliformes: Muraenidae) from anchialine caves in Christmas Island, Australia, and Panglao Island, the Philippines
Fig. 2. Whip Cave. A, terrestrial entrance; B, internal view of the cave, arrow indicates the set-up fish trap. Photographs by HHT.
Figure 3 from: Gerovasileiou V, Martínez A, Álvarez F, Boxshall G, Humphreys W, Jaume D, Becking L, Muricy G, van Hengstum P, Dekeyzer S, Decock W, Vanhoorne B, Vandepitte L, Bailly N, Iliffe T (2016) World Register of marine Cave Species (WoRCS): a new Thematic Species Database for marine and anchialine cave biodiversity. Research Ideas and Outcomes 2: e10451. https://doi.org/10.3897/rio.2.e10451
Figure 3 - Descriptions of the content of the WoRCS database.
Figure 1 from: Gerovasileiou V, Martínez A, Álvarez F, Boxshall G, Humphreys W, Jaume D, Becking L, Muricy G, van Hengstum P, Dekeyzer S, Decock W, Vanhoorne B, Vandepitte L, Bailly N, Iliffe T (2016) World Register of marine Cave Species (WoRCS): a new Thematic Species Database for marine and anchialine cave biodiversity. Research Ideas and Outcomes 2: e10451. https://doi.org/10.3897/rio.2.e10451
Figure 1 - The WoRCS webpage.
Figure 2 from: Gerovasileiou V, Martínez A, Álvarez F, Boxshall G, Humphreys W, Jaume D, Becking L, Muricy G, van Hengstum P, Dekeyzer S, Decock W, Vanhoorne B, Vandepitte L, Bailly N, Iliffe T (2016) World Register of marine Cave Species (WoRCS): a new Thematic Species Database for marine and anchialine cave biodiversity. Research Ideas and Outcomes 2: e10451. https://doi.org/10.3897/rio.2.e10451
Figure 2 - The WoRCS search engine (advanced search option).
Figure 1 from: Bruce NL, Brix S, Balfour N, Kihara TC, Weigand AM, Mehterian S, Iliffe TM (2017) A new genus for Cirolana troglexuma Botosaneanu & Iliffe, 1997, an anchialine cave dwelling cirolanid isopod (Crustacea, Isopoda, Cirolanidae) from the Bahamas. Subterranean Biology 21: 57-92. https://doi.org/10.3897/subtbiol.21.11181
Figure 1 - Hatchet Bay Cave Main Gallery, Eleuthera, The Bahamas (Photograph).
FIGURE 12 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 12. Diplastrella cozumella sp. nov. a) Holotype CNPGG‒1496 in vivo; b) surface with protruding tylostyles (ethanol); c) overall set of spicules (LM); d) tylostyle endings (LM); e) diplaster to spheraster (SEM); f) tylostyle with blunt end (LM); g) tylostyles with multilobed tylo, and concave endings (SEM).
FIGURE 10 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 10. Neosiphonia microtriaeneae sp. nov. a) Holotype CNPGG-1487 (ethanol); b) skeletal arrangement (transversal section, LM); c) ectosomal skeleton (tangential section, SEM).
FIGURE 6 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 6. Svenzea germanyanezi sp. nov. a) Holotype CNPGG‒2342 (ethanol); b) choanosomal skeleton (cross section, LM); c) granulous cells (LM); d) ectosomal skeleton, note the dermis and punctate surface at the upper flank (tangential section, LM); e) strongyles (LM); f) common spicule oxea II (LM); g) thinner oxea I (LM).
FIGURE 8 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 8. Cinachyrellla kuekenthali (Uliczca, 1929). a) CNPGG‒1479 (ethanol); b) eggs setting around porocalice; c-d) choanosomal skeleton (cross section, LM).
FIGURE 5 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 5. Haliclona (Halichoclona) chankanaabiis sp. nov. a) sponge in situ; b) Holotype CNPGG‒1631 (ethanol), note the osculum on top; c) ectosomal skeleton (tangential section, LM); d) choanosomal skeleton (cross section, LM); e) strongyle spicules (LM); f) oxea spicule (LM).
FIGURE 7 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 7. Siphonidium ramosum (Schmidt, 1870). a) CNPGG‒1624 habitus, CNPGG‒1625 (ethanol), notice the two siphonlike apertures; b) skeletal detail assembled by desmas (SEM); c) tetraclone desmas with smooth clones (SEM); d) tetraclone desmas with warty clones (LM); e) spined tylos of tylostyles (SEM).
FIGURE 3 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 3. Calyx maya sp. nov. a) Holotype CNPGG‒1630 (ethanol); b) ectosome (tangential section, LM); c) skeleton, conule-type (arrows) with 3-4 aligned megascleres (longitudinal section, LM); d) oxea spicules (LM); e) strongyle spicules (LM).
FIGURE 2 in Anchialine cave-dwelling sponge fauna (Porifera) from La Quebrada, Mexico with the description of the first Mexican stygobiont sponges
FIGURE 2. Anchialine cave La Quebrada; a) Cenote S-1 with German Yáñez; b) Cenote Km-1; c) iinterior of the cave, near Cenote Km-1, photo by Laurent Miroult.
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