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1,369 results for “sexual dimorphism”
Figure 14 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 14 - Mesocletodes elmari sp. n. A CIV male paratype 5, A1 dorsal view B CIII paratype 6, P1 C CIII paratype 6, P2, outer basal seta supplemented according to counterpart D CIII paratype 6, P3 E CIII paratype 6, P4 F CIII paratype 6, A1. Missing setae indicated by arrows. Scale bars: 50 µm.
Figure 12 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 12 - Mesocletodes elmari sp. n. A CIII paratype 6, habitus lateral view, terminal TP on FR indicated by arrow A1 CIII paratype 6, telson ventral view, internal notch-like pores indicated by arrow B CIV male paratype 5, habitus lateral view, terminal TP on FR indicated by arrow B1 CIV male paratype 5, telson ventral view, internal notch-like pores and setular tuft on FR indicated by arrows C CV female paratype 3, habitus lateral view, terminal TP on FR indicated by arrow C1 CV female paratype 3, telson ventral view, internal notch-like pores indicated by arrow. Scale bar: 100 µm.
Figure 3 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 3 - Mesocletodes elmari sp. n., adult female, holotype. A habitus dorsal view B habitus lateral view C telson ventral view, internal notch-like pores indicated by arrow D detail of urosomal setules E detail of hyaline frill F detail of prosomal setules G FR lateral view, tube pores indicated by arrow. Scale bars: A–C: 100 µm; D–G: 50 µm
Figure 9 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 9 - Mesocletodes elmari sp. n., adult male paratype 1. A habitus dorsal view B habitus lateral view C telson ventral view D detail of hyaline frill E FR, lateral view, arrow indicates terminal tube pore. Scale bars: A–C 100 µm, D+E 50 µm.
Figure 5 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 5 - Mesocletodes elmari sp. n., adult female. A labrum, holotype B+C md, holotype, D paragnaths, holotype E mxl, holotype F mx, holotype, basal seta supplemented after counterpart, dash-depicted endopodal seta supplemented after paratype 2. Arrow dicates the peculiar spinulelike pinna G mxp, paratype 2, unfragmented, G1–G3 mxp details, holotype. Scale bar: 50 µm
Figure 8 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 8 - Mesocletodes elmari sp. n. A adult female holotype, P5, dorsal view B adult female holotype, GF, P6 indicated by asterisk C CV female paratype 3, P5 ventral view C1 CV female paratype 3, P6 ventral view D adult male paratype 1, P5 ventral view D1 adult male paratype 1, P6 ventral view E CV male paratype 4, P5 ventral view, asterisk on the right side of the endopodal lobe indicates where a cuticular protrusion analogous to the one on the left side can be expected E1 CV male paratype 4, P6 ventral view F CIV male paratype 5, P5 ventral view, asterisk marks the inner depression on P5 exp F1 CIV male paratype 5, P6 ventral view. Missing setae indicated by arrows. Scale bars: 50 µm.
Figure 8 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 8 - Bar diagrams showing the extent of pigmentation on the lower whorl: classification (missing, interrupted, continuous) of lower (a), median (b), and upper band (c); blue bars females, red bars males. Significance levels of Fisher's exact test: '***' p < 0.001, '**' p < 0.01, '*' p < 0.05, '.' p < 0.1, ' ' p < 1.
Figure 1 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 1 - The 5 distances measured on the shell of Cochlostoma septemspirale: shell height and width, aperture height and width, and whorl width.
Figure 2 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 2 - Scatterplot of first against second principal component in shape space; blue dots females, red triangles males.
Figure 7 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 7 - Boxplots of rip density. Significance levels of Wilcoxon test: '***' p < 0.001, '**' p < 0.01, '*' p < 0.05, '.' p < 0.1, ' ' p < 1.
Figure 5 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 5 - Scatterplots of isosize against first (a) and isosize against second principal component (b) in shape space; blue dots females, red triangles males. Allometry ratio spectrum (c).
Figure 6 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 6 - Scatterplot of best (shell height:shell width) against second best ratio (aperture height:aperture width) for separating females from males; blue dots females, red triangles males.
Figure 4 from: Baur H, Reichenbach F, Neubert E (2012) Sexual dimorphism in shells of Cochlostoma septemspirale (Caenogastropoda, Cyclophoroidea, Diplommatinidae, Cochlostomatinae). ZooKeys 208: 1-16. https://doi.org/10.3897/zookeys.208.2869
Figure 4 - Boxplots of the ratios shell height:aperture height (a) and shell width:aperture width (b), and aperture protrusion (c). Significance levels of Wilcoxon test: '***' p < 0.001, '**' p < 0.01, '*' p < 0.05, '.' p < 0.1, ' ' p < 1.
Figure 7 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 7 - Paranapiacaba prolongata (Jacoby, 1882), detail of ventral surface of tarsomeres of prothoracic leg, male.
Figure 5 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 5 - Anisobrotica donckieri (Baly, 1889), detail of ventral surface of apical antennomeres, male.
Figure 6 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 6 - Detail of elytral modifications, left, Isotes digna (Gahan, 1891), male, right, Paratriarius batesi (Baly, 1859), male.
Figure 4 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 4 - Male modified antennae in lateral view A Isotes borrei (Baly, 1889) B Cochabamba marginata (Ha-rold, 1875) C Isotes onira (Bechyné & Bechyné, 1961) D Aristobrotica angulicollis (Erichson 1878) E Buckibrotica cinctipennis (Baly, 1886) (detail in ventral view) F Ensiforma caerulea Jacoby, 1876. Scale bar = 1 mm.
Figure 10 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 10 - Zischkaita serrana Moura, 2003, schematic abdomen in ventral view, male. Scale bar = 0,5 mm.
Figure 3 from: Prado L (2013) Review on the use of sexually dimorphic characters in the taxonomy of Diabroticites (Galerucinae, Luperini, Diabroticina). ZooKeys 332: 33-54. https://doi.org/10.3897/zookeys.332.4931
Figure 3 - Isotes onira (Bechyné & Bechyné, 1961), dorsal view, detail of pronotum and head (female, left, male, right).
Figure 9 from: Bauer RT, Okuno J, Thiel M (2014) Inferences on mating and sexual systems of two Pacific Cinetorhynchus shrimps (Decapoda, Rhynchocinetidae) based on sexual dimorphism in body size and cheliped weaponry. In: Wehrtmann IS, Bauer RT (Eds) Proceedings of the Summer Meeting of the Crustacean Society and the Latin American Association of Carcinology, Costa Rica, July 2013. ZooKeys 457: 187-209. https://doi.org/10.3897/zookeys.457.6512
Figure 9 - Fecundity in Cinetorhynchus species A and B. The log10 number of embryos per brood are plotted against log10 female size (carapace length, mm).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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