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88 results for “Dinaric karst”

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Fig. 5 in Nemaspela borkoae sp. nov. (Opiliones: Nemastomatidae), the second species of the genus from the Dinaric Karst

Fig. 5. Nemaspela borkoae sp. nov., ♀, allotype (PMSL-Opiliones-PK&TN 7/2019). A. Ovipositor, ventral view. B. Receptacula seminis, lateral (left) and ventral (right) views. C. Pseudoarticles in femur II, and distal tarsomerae I̅IV with claws, lateral views. D. Female (PMSL-Opiliones-PK&TN 8/2019) in the natural habitat in Vodna jama u Dragalju Cave. Photograph by T. Delić.

opencc-by-4.0Sep 2020View details →
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Fig. 3 in Nemaspela borkoae sp. nov. (Opiliones: Nemastomatidae), the second species of the genus from the Dinaric Karst

Fig. 3. Nemaspela borkoae sp. nov., ♂ holotype (PMSL-Opiliones-PK&TN 4/2019). A. Right pedipalp, lateral (left) and medial (right) views. B. Penis, ventral, lateral and dorsal view. C. Penis protruding through genital opening. D. Pseudoarticles in femur II, and distal tarsomerae I̅IV with claws, lateral views.

opencc-by-4.0Sep 2020View details →
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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)

opencc-by-4.0Dec 2019View details →
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Fig. 3 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.

Fig. 3. Examples of species found during this research (A. Centropyxis elongata; B. Lacogromia sp.; C. Cyclopyxis sp.; D–E. Paramphitrema sp.; F. Diplochlamys sp.; G–H. cf. Conicocassis sp.; Scale bars B 100 µm, all other 20 µm)

opencc-by-4.0Dec 2019View details →
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Fig. 5 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.

Fig. 5. Centropyxis bipilata sp. nov. A–C. Ventral view, arrows point to the position of the struts; D, F. Frontal view, showing the two struts connected to the dorsal part; E. Side view, showing one strut. A, C–E stacked images. Scale bars: 20 µm.

opencc-by-4.0Dec 2019View details →
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Figure 5 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)

Figure 5. Maximum likelihood (ML) phylogram based on 658 bp long fragment of the mt COI DNA barcode region showing the relationships between species of the genus Setodess. Numbers above the branches represent bootstrap support (BS) for Neighbor-Joining (NJ) and ML analysis (NJ/ML). BS values less than 60 are not shown. Specimen ID from sequences obtained in this study are written with bold letters.

opencc-by-4.0Nov 2020View details →
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Figure 3 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)

Figure 3. NMDS similarity analysis of caddisflies fauna at the study area (sampling sites correspond to the list in Tab. 1).

opencc-by-4.0Nov 2020View details →
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Figure 2 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)

Figure 2. Dobra - spring (D1), Dobra - upper Dobra (D2), Dobra - canyon (D4), Kamačnik - spring (K1), Zagorska Mrežnica - spring (ZM), Sabljaci - reservoir (SR).

opencc-by-4.0Nov 2020View details →
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Figure 3 in Gastropod assemblages in the harsh environment of Mediterranean Dinaric karst intermittent rivers

Figure 3. Redundancy analysis (RDA) ordination biplot showing the relationships between freshwater gastropods (blue arrow symbols) and environmental variables (red arrow symbols) in four intermittent rivers in the Mediterranean, Croatia. Environmental variables: Water temperature (°C); Concentration of dissolved oxygen in water (O mg L−1); pH; Conductivity (μS cm−1); Water velocity (m s−1); Concentration of ortho-phosphates in 2 water (mg P L−1), Chemical oxygen demand (mg O L-1), Alkalinity (mg CaCO L-1).

opencc-by-4.0Feb 2024View details →
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Figure 2 in Gastropod assemblages in the harsh environment of Mediterranean Dinaric karst intermittent rivers

Figure 2. Freshwater gastropod assemblage metrics in four intermittent rivers in the Mediterranean, Croatia: a) taxa richness and b) log-transformed abundance shown as mean with standard deviation (SD).

opencc-by-4.0Feb 2024View details →
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Figure 1 in Gastropod assemblages in the harsh environment of Mediterranean Dinaric karst intermittent rivers

Figure 1. Map of the study area with photographs showing the examples of sampling sites at the four studied Mediterranean intermittent karst rivers, Croatia.

opencc-by-4.0Feb 2024View details →
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Fig. 2 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.

Fig. 2. Total number of detected testate amoebae per cave

opencc-by-4.0Dec 2019View details →
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Fig. 1 in Testate Amoebae in Karst Caves of the Dinaric Arc (South-Eastern Europe) with a Description of Centropyxis bipilata sp. nov.

Fig. 1. Cave locations

opencc-by-4.0Dec 2019View details →
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Figure 6 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)

Figure 6. Dobra - spring (D1). A) before channelization (2010), B) after channelization (2020).

opencc-by-4.0Nov 2020View details →
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Figure 1 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)

Figure 1. Map of the study area with sampling sites which correspond to the list in Tab. 1.

opencc-by-4.0Nov 2020View details →
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FIGURES 1–9. Seoda cavernicola. 1 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst

FIGURES 1–9. Seoda cavernicola. 1. Eyebridge of holotype. 2–3. Eyebridges of 2♂ paratypes. 4. Scape, pedicel, 1st and 2nd flagellomeres. 5. Basal palpus segment. 6. Wing. 7. Hypandrium, styles and aedeagus ventral view. 8. Epandrium, epandrial processes and proctiger, ventral view. 9. Basiphallus sclerite and dorsal parameral bridge with 'furca', ventral view. Scale: 1.0 mm (6), 0.1 mm (1–4, 7–9), 0.05 mm (5).

opennotspecifiedSep 2020View details →
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FIGURES 22–26. Psychoda glamocensis. 22 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst

FIGURES 22–26. Psychoda glamocensis. 22. Hypandrium, gonostyli and aedeagus, holotype. 23. Epandrium, subepandrial plate and bases of epandrial processes. 24. Right epandrial process with retinaculum. 25. Left gonocoxite, parameral bridges and position of distiphallus sclerite, holotype. 26. Basiphallus and distiphallus sclerites and periaedeagal membrane. Scale: 0.1 mm (22–26).

opennotspecifiedSep 2020View details →
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FIGURES 10–21. Psychoda glamocensis. 10 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst

FIGURES 10–21. Psychoda glamocensis. 10. Eyebridge of male holotype. 11–12. Eyebridges of male paratypes. 13. Same of female paratype. 14. Flagellomeres 10–13. 15. 2nd flagellomere with ascoid. 16. Male mouth parts.17–18. Female mouth parts. 19. Wing. 20. Female subgenital plate. 21. Internal genital sclerites, female. Scale: 1.0 mm (19), 0.1 mm (10–15, 20–21), 0.05 mm (16–18).

opennotspecifiedSep 2020View details →
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Figure 13 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst

Figure 13. Lasiochernes pavlekae sp. nov., male, scanning electron micrographs. A, left pedipalp, dorsal. B, right chela, dorsal. C, chelicera, dorsal. Scale lines = 1 mm (A), 0.5 mm (B), 150 μm (C).

opennotspecifiedAug 2023View details →
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Figure 14 in Integrative taxonomy of the pseudoscorpion family Chernetidae (Pseudoscorpiones: Cheliferoidea): evidence for new range-restricted species in the Dinaric Karst

Figure 14. Genetic and morphological variability of Lasiochernes pavlekae sp. nov.. A, MJ haplotype network for L. pavlekae sp. nov. based on the COI gene. Haplotype circles are colour-coded according to localities and circle size is proportional to overall haplotype frequency. Numbers of mutational steps are given as hatch marks. B, sampling localities (colour coding matches insert in Fig. 14A). C, visualization of PCA results performed on morphometric data deriving from the two populations of L. pavlekae sp. nov.. Polygonal shapes indicate the range of variability found in a given population. The points and polygons are coloured according to localities. D, visualization of PCA results performed on morphometric data deriving from male and female specimens of L. pavlekae sp. nov..

opennotspecifiedAug 2023View details →

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