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989 results for “Cuba”
Figure 15 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 15. Box plots of neanic character states for the Lepidocyclina groups (species). Significant differences checked by the Kruskal-Wallis test. L. group 1 = L. macdonaldi, L. group 2 = L.?macdonaldi (small specimens), L. group 3 = L. ariana, L. group 4 = L. pustulosa, L. group 5 = L. ocalana.
Figure 17 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 17. Box plots of neanic character states for the Lepidocyclina groups (species). Significant differences checked by the Kruskal-Wallis test. L. group 1 = L. macdonaldi, L. group 2 = L.?macdonaldi (small specimens), L. group 3 = L. ariana, L. group 4 = L. pustulosa, L. group 5 = L. ocalana.
Figure 13 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 13. Principal component analysis based on growth-independent characters of nepionts. Grouping by samples (point colours) and groups (background colour of convex hulls). Points with yellow margins represent the position of 'L. group 2'.
Figure 12 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 12. Principal component analysis based on growth-invariant characters of neanic chamberlets. Grouping by samples (point colours) and groups (background colour of convex hulls). Points with yellow margins represent the position of 'L. group 2'.
Figure 11 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 11. Loadings of the first and second axes in principal component analysis based on growth-independent and growth-invariant characters of neanic chamberlets and nepionts.
Figure 14 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 14. Discriminant analysis separating species. Ellipses point to the 95% confidence limits. Axis values of characters shown in Table 3.
Figure 10 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 10. Principal component analysis based on growth-independent and growth-invariant characters of neanic chamberlets and nepionts. Grouping by samples (point colours) and groups (background colour of convex hulls). Points with yellow margins represent the position of 'L. group 2' within 'L. group 1'.
Figure 7 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 7. Growth functions of specimens pictured in Fig. 2, left for L. group 1, specimen 98C-1h(616), right for L. group 5, specimen P562(496).
Figure 8 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 8. Growth functions of specimens pictured in Fig. 2, left for L. group 1, specimen 98C-1h(616), right for L. group 5, specimen P562(496).
Figure 6 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 6. Lepidocyclina specimens with measurements of chamberlets (in sectors). 1070 measurements were taken for first and 1163 measurements for the second specimen demonstrating the high time and effort in measuring a single individual. A, 98C-1h(616) and B, P562(496).
Figure 5 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 5. Measurements in equatorial sections: A, spatulate chamberlet; B, arcuate chamberlet; C, nepiont.
Figure 3 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 3. Distribution of samples and assemblages LBF in Loma El Santo section, central Cuba (modified from Torres-Silva et al., 2019).
Figure 2 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 2. Distribution of the samples and LBF assemblages at Loma Candelaria section, western Cuba (modified from Torres-Silva et al., 2019).
Figure 4 in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 4. Distribution of samples and LBF assemblages at Loma Viǵıa section, central Cuba (modified from Torres-Silva et al., 2019).
Figure 1. A in Objective identification of Lepidocyclina (Foraminifera) species from the Eocene of Cuba based on growth-invariant morphometric characters
Figure 1. A, schematic tectonic map of western and central Cuba (after Iturralde-Vinent, 1994) with locations of the stratigraphical sections and samples. B, stratigraphical relations of the Eocene units in western and central Cuba slightly modified from Garćıa-Delgado & Torres-Silva (1997). Stratigraphical ranges of the studied sections, A (98LC-1), B (LM-52), C (LM-23), D (P-559, P-562), E (CA-215), F (CA-216).
Figure 17. A–G in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 17. A–G, Operculinoides soldadensis Vaughan & Cole; A, Loma El Santo, CA-215-871; B, Loma Candelaria, 98LC-1-669; C– F, Norona; C, NOR-UN 24; D–F, NOR-UN 15/14; G, holotype, Trinidad. H, I, Palaeonummulites trinitatensis (Nutall); H, Loma Candelaria, 98LC-1ICT3; I, holotype of Operculinoides kugleri Vaughan & Cole, Trinidad. J, Operculinoides ocalanus (Cushman), Loma Jabaco, CA-4-724. A–D, G–J, A forms in equatorial section; E, A form in axial section; F, external view.
Figure 18. A, B, D–H in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 18. A, B, D–H, Heterostegina ocalana Cushman; A, Loma Viǵıa, CA-216-D1a; B, Norona, NOR-UN 15/14; D, Loma Viǵıa, CA-216-79; E, F, Loma Jabaco; E, LM-52-756; F, LM-52-752; G, H, Norona, NOR-UN 24. C, Heterostegina cubana Cizancourt, Loma candelaria, 98LC-1H-809. I, Heterostegina sp. indet., Loma Candelaria, 98LC-1H-808. A, B, A forms in axial section; C–G, I, A forms in equatorial section; H, external view.
Figure 14 in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 14. Distribution of larger benthic foraminifera (LBF) in the Loma Viǵıa section, central Cuba.
Figure 12 in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 12. Distribution of larger benthic foraminifera (LBF) in the Loma El Santo section, central Cuba.
Figure 11 in Morphometric analysis of Eocene nummulitids in western and central Cuba: taxonomy, biostratigraphy and evolutionary trends
Figure 11. Distribution of larger benthic foraminifera (LBF) in the Loma Candelaria section, western Cuba (modified from Torres-Silva et al. 2017).
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