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130 results for “Aquifers”
Figure 2a from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 2a - Individual CS activities (log µmol min-1) on Mass (log gram). Closed symbols denote Palaemonetes kadiakensis (epigean); open symbols denote Palaemonetes antrorum (stygobitic).
Figure 3b from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 3b - Mass-specific LDH activities (log µmol min-1 g-1) on Mass (log gram). Closed symbols denote Palaemonetes kadiakensis (epigean); open symbols denote Palaemonetes antrorum (stygobitic).
Figure 5 from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 5 - Plot of δ15N on δ13C values for the stygobiont Palaemonetes antrorum (PS, red oval and black oval respectively excluding and including two outliers, see text) and the epigean Palaemonetes kadiakensis (PE, small blue oval). The range of values of δ13C derived from different energy sources (see text) is indicated (methane, and photosynthesis from C3 and C4 plants) as well as values typical of marine carbonates and petroleum. The diagonal dotted line denotes a typical trajectory (not the value) of amplification of δ15N values with progression through trophic levels (Vanderklift and Ponsard 2003).
Figure 1 from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 1 - Stable isotope ratio plots, upper to lower: a)δ15N on δ13C; b) δ13C on δ34S; c) δ15N on δ34S. Closed symbols denote Palaemonetes kadiakensis (epigean); open symbols denote Palaemonetes antrorum (stygobitic).
Figure 4b from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 4b - Percent lipid (%) on Mass (gram). Closed symbols denote Palaemonetes kadiakensis (epigean); open symbols denote Palaemonetes antrorum (stygobitic).
Figure 3a from: Bishop R, Humphreys W, Longley G (2014) Epigean and hypogean Palaemonetes sp. (Decapoda, Palaemonidae) from Edwards Aquifer: An examination of trophic structure and metabolism. Subterranean Biology 14: 79-102. https://doi.org/10.3897/subtbiol.14.8202
Figure 3a - Mass-specific CS activities (µmol min-1 g-1) on Mass (log gram). Closed symbols denote Palaemonetes kadiakensis (epigean); open symbols denote Palaemonetes antrorum (stygobitic).
Figure 6 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 6 - Allocyclops spinifer sp. n. A leg 1, frontal view B intercoxal sclerite of leg 1, frontal view C leg 2, frontal view D outer region of coxa and basis of leg2, caudal view E distal segment of leg 3 endopodite, caudal view F leg 4, frontal view G leg 4 protopodite and endopodite, caudal view H distal endopodite segment of leg 3, frontal view. (Female RBINSc COP 10.306: A, B, C, G; female RBINSc COP 10.304: D, F, E; male RBINSc COP 10.305: H).
Figure 9 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 9 - Allocyclops pilosus sp. n. A leg 1, frontal view B leg 1 intercoxal sclerite C leg 2, frontal view (aberrant number of medial setae on endopodite, normal seta complement shown at the left) D distal endopodite segment of leg 3, frontal view E idem F leg 4, frontal view G leg 4 protopodite and endopodite, caudal view H leg 4 intercoxal sclerite, frontal view I–J distal endopodite segment of leg 4 of other specimens (Females RBINSc COP 10.313: F, G; COP 10.310: A–D, G–H, COP 10.318: I; COP 10.316: J; male RBINSc COP 10.312: E).
Figure 3 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 3 - Allocyclops spinifer sp. n. A urosome in ventral view B urosome in ventral view C copulatory pore and duct D leg 5 and lateral part of pediger, in ventral view E leg 5 and lateral side of pediger in ventral view. (Female RBINSc COP 10.304: A, C; RBINSc COP 10.306: E; male RBINSc COP 10.305: B, D).
Figure 2 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 2 - Allocyclops spinifer sp. n. A habitus in dorsal view B principal setae of left caudal ramus C habitus in dorsal view D anal somite and caudal rami, dorsal view. (Female RBINSc COP 10.304: A, B, D; male RBINSc COP 10.305: C).
Figure 5 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 5 - Antennary coxobasis: Allocyclops spinifer sp. n. A frontal view B caudal view C caudal view; Allocyclops pilosus sp. n. D frontal view E caudal view F caudal view; Allocyclops nudus sp. n. G frontal view H caudal view; Allocyclops sakitii sp. n. I caudal view J frontal view (RBINSc COP 10.304: A; COP 10.306B, COP 10.305: C; COP 10.310: D, E; COP 10.312: F; COP 10.3334, COP 10.367; COP 10.355: I, J).
Figure 15 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 15 - Allocyclops sakitii sp. n. A leg 1, frontal view B distal endopodite segment of leg 2, frontal view C leg 3, frontal view D Outer region of coxa and basis of leg 3, caudal view E leg 4, frontal view F leg 4 protopodite and endopodite, caudal view G leg 4 endopodite, caudal view (Female RBINSc COP 10.355: A–C, F; COP 10.358: D, E; male RBINSc COP 10.356: G).
Figure 4 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 4 - Allocyclops spinifer sp. n. A antennulary segment 1 B antennulary segments 8–11; Allocyclops pilosus sp. n. C antennulary segments 8–11 D antennulary segment 1; Allocyclops nudus sp. n. E antennulary segments 8–11 F antennulary segment 1; Allocyclops sakitii sp. n. G antennulary segments 8–11 H antennulary segment 1; Allocyclops spinifer sp. n. I maxillary basis and endpodite; Allocyclops nudus sp. n. J maxillary basis and endopodite; Allocyclops pilosus sp. n. K maxillary basis and endopodite; Allocyclops sakitii sp. n. L maxillary basis and endopodite (RBINSc COP 10.304: A, B, I; COP 10.310: C, D, K; COP 10.367: E, D, J; COP 10.253: G, H, L).
Figure 13 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 13 - Allocyclops sakitii sp. n. A habitus in dorsal view B principal caudal setae of left caudal ramus C anal somite and caudal rami, in dorsal view D habitus in dorsal view (Female RBINSc 10.357: A, B; female RBINSc COP 10.354: C; male RBINSc COP 10.356: D).
Figure 8 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 8 - Allocyclops pilosus sp. n. A urosome in ventral view B urosome in lateral view C urosome in ventral view (Female RBINSc COP 10.310 A, B; male RBINSc COP 10.312: C).
Figure 11 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 11 - Allocyclops nudus sp. n. A urosome in ventral view B urosome, lateral view C urosome in ventral view D copulatory pore and duct E leg 5 and outer edge of pediger 5 (Female RBINSc COP 10.334: A, B, D, E; male RBINSc COP 10.335: C).
Figure 1 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 1 - Map of Bénin indicating the study areas (black triangles): Lokossa stands for 15 sampled wells, Porto Novo for 4 sampled wells, Pobé for 15 sampled wells and Parakou for 18 sampled wells. Grey dashed lines contour the limits of the 4 different drainage basins, from http://eaubenin.bj/docs/Bassins_Versants/Atlas_Hydrographique_Rapport_final.pdf (accessed November 2014).
Figure 10 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 10 - Allocyclops nudus sp. n. A habitus in dorsal view B principal caudal setae of right caudal ramus C habitus in dorsal view (Female RBINSc COP 10.334: A, B; male RBINSc COP 10.335: C).
Figure 14 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 14 - Allocyclops sakitii sp. n. A urosome, ventral view B pediger 5 and genital double-somite, in lateral view C leg 1 intercoxal sclerite, frontal view D leg 2 intercoxal sclerite, frontal view E leg 3 intercoxal sclerite, frontal view F leg 4 intercoxal sclerite, frontal view G pediger 5 and urosomite 2 in ventral view (Female RBINSc COP 10.355: A, B; COP 10.358: C–F; male RBINSc COP 10.356: G).
Figure 12 from: Fiers F, Lagnika M (2015) Four new representatives of the genus Allocyclops Kiefer, 1932 from semi-consolidated subsoil aquifers in Benin (Copepoda, Cyclopoida, Cyclopidae). Subterranean Biology 16: 1-36. https://doi.org/10.3897/subtbiol.16.4467
Figure 12 - Allocyclops nudus sp. n. A leg 1, frontal view B leg 2, frontal view C leg 4, frontal view D leg 4 protopodite and endopodite, caudal view E leg 3 distal endopodite segment, frontal view F leg 4 endopodite, frontal view (Female RBINSc COP 10.367: A, C, E; Female RBINSc COP 10.334: B, D; male RBINSc COP 10.335: E).
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