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525 results for “Cyprus”
FIGURES 20–27 in Taxonomic and ecological characterization of two Ulnaria species (Bacillariophyta) from streams in Cyprus
FIGURES 20–27. LM views of two taxa with which Ulnaria monodii comb. nov. can be compared. Figs. 20–23. Morphodeme with narrower, almost rostrate ends occurring in the assemblage used as main reference for this study (cLIM004 DIAT 2136). Figs. 24–27. Ulnaria ungeriana, that appears sporadically together with U. monodii comb. nov., but note the prominent central area and usually shorter cells. Scale bar, 10 μm (all 1500x).
FIGURES 37–46 in Taxonomic and ecological characterization of two Ulnaria species (Bacillariophyta) from streams in Cyprus
FIGURES 37–46. LM views of Ulnaria acuscypriacus sp. nov. Figs. 37–41. Whole valves. Scale bar, 10 μm. Figs. 42–46. Variability of the apices in the populations sampled in Cyprus. Scale bars, 10 μm. Note the central area, and the apical rimoportula.
FIGURES 2–19 in Taxonomic and ecological characterization of two Ulnaria species (Bacillariophyta) from streams in Cyprus
FIGURES 2–19. LM views of Ulnaria monodii comb. nov. Figs. 2–4. Whole valves. White scale bars, 10 μm (750x). Note the complete absence of a central area. Figs. 5–7. Variability of the apices in the population used as main reference for this study (cLIM004 DIAT 2136). Figs. 8–16. Variability of the apices in the populations sampled in Cyprus. Note the apical rimoportula. Figs 17–19. Girdle views. Note the apical spines, the rows of rather large poroids on the copulae, and short-chain formation in Fig. 19. Black scale bar, 10 μm (1500x).
FIGURES 32–36 in Taxonomic and ecological characterization of two Ulnaria species (Bacillariophyta) from streams in Cyprus
FIGURES 32–36. SEM inside views of Ulnaria monodii comb. nov. (Figs. 32–34) + SEM outside views of morphodeme with narrower, almost rostrate ends (Figs. 35–36). Fig. 32. Complete theca: Note complete absence of signs of central area. Fig. 33. Details of the ending: note the prominent rimoportula. Fig. 34. Central part with details of the alveoli, areolae: Note the virgae-vimines structure. Fig. 35. Details of the ending: Note the apical rimoportula and spines, and the ocellolimbus (number and arrangement of porelli). Fig. 36: Details of the apex of an entire frustule: Note girdle bands with a row of rather large poroids. Scale bars: Fig. 32 = 60 μm; Fig. 33 = 4 μm; Fig. 34 = 5 μm; Figs. 35–36 = 3 μm.
FIGURE 5 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 5. Eucypris denktasi sp. nov. (A) Mx1. (B) Mx1 vibratory plate. (C) T1. (D) T2. Scale bar: 100 µm for A. 70 µm for B. 460 µm for C. 40 µm for D.
FIGURE 8 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 8. Eucypris lefkosaensis sp. nov. Female. (A) RV internal view. (B) RV internal view with enlarged anterior margin. (C) RV internal view with enlarged posterior margin. (D) LV internal view. (E) LV internal view with posterior margin extended. (F) LV internal view with anterior margin extended. Scale bars: 200 µm for A and D and C. 100 µm for B. 133 µm for E and F.
FIGURE 9 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 9. Eucypris lefkosaensis sp. nov. (A) A1. (B) A2. (C) Md. Scale bar: 100 µm for A. 95 µm for B. 140 µm for C.
FIGURE 2 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 2. Eucypris denktasi sp. nov. Female. (A) RV, external view. (B) LV, external view. (C) carapace in dorsal view. (D) muscle scars. Scale bar: 133 µm for A and C. 145 µm for B. 94 µm for D.
FIGURE 4 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 4. Eucypris denktasi sp. nov. (A) A1. (B) A2. (C) Md. Scale bar: 75 µm for A. 100 µm for B. 90 µm for C.
FIGURE 1 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 1. Map of the locations where new species were found in the Northern Cyprus (Güzelyurt (GY), Girne (GI), LefkoŞa (LE), Gazimağusa (GM), Dipkarpaz (DK)). The triangle and the circles show the type locality of Eucypris denktasi sp. nov. and Eucypris lefkosaensis sp. nov., respectively.
FIGURE 7 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 7. Eucypris lefkosaensis sp. nov. Female. (A) RV, external view. (B) LV, external view. (C) carapace in dorsal view (leaning slightly to the right). (D) muscle scars. Scale bar: 200 µm for A and B. 160 µm for C. 53 µm for D.
FIGURE 3 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 3. Eucypris denktasi sp. nov. Female. (A) RV internal view. (B) RV internal view with enlarged anterior margin. (C) RV internal view with enlarged posterior margin. (D) LV internal view. (E) LV internal view with posterior margin extended. (F) LV internal view with anterior margin extended. Scale bars: 140 µm for A and D. 88 µm for B and C. 100 µm for E and F.
FIGURE 11 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 11. Eucypris lefkosaensis sp. nov. (A) Terminal part of T3. (B) T3. (C) Rake-like organ. (D) Genital organ. (E) Hypostome. (F) Uropod with attachment. Scale bar: 59 µm for A. 60 µm for B. 186 µm for C. 240 µm for D. 110 µm for E. 93 µm for F.
FIGURE 10 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 10. Eucypris lefkosaensis sp. nov. (A) Mx1. (B) Mx1 vibratory plate. (C) T1. (D) T2. Scale bar: 110 µm for A. 70 µm for B. 90 µm for C. 80 µm for D.
FIGURE 6 in Two new species of the genus Eucypris (Crustacea: Ostracoda) from Northern Cyprus
FIGURE 6. Eucypris denktasi sp. nov. (A) T3. (B) Terminal part of T3. (C) Hypostome. (D) Genital organ. (E) Rake-like organ. (F) Uropod with attachment. Scale bar: 70 µm for A and B. 150 µm for C. 200 µm for D. 155 µm for E.80 µm for F.
Figure 3 in Mitochondrial genetic variation in long-eared hedgehogs, Hemiechinus auritus, from the Anatolian Peninsula and Cyprus
Figure 3: Median-joining network constructed using cyt-b sequences of Hemiechinus auritus. The size of each circle is proportional to the frequency of the haplotype in the sample. Median vectors are indicated by blank circles. Each mutation between haplotypes is represented by a bar. For the geographical origins of the sequences, see Figure 1, Table 1 and Supplementary Table S1.
Figure 2 in Mitochondrial genetic variation in long-eared hedgehogs, Hemiechinus auritus, from the Anatolian Peninsula and Cyprus
Figure 2: Results of MP, ML and BI analyses combined on an ML tree based on cyt-b sequences of Hemiechinus auritus. Numbers at nodes indicate bootstrap support values (MP and ML)/posterior probabilities (BI). Bootstrap values ≥ 90 % and Bayesian posterior probabilities ≥0.90 are shown. For the geographical origins of the sequences, see Figure 1, Table 1 and Supplementary Table S1.
Figure 1 in Mitochondrial genetic variation in long-eared hedgehogs, Hemiechinus auritus, from the Anatolian Peninsula and Cyprus
Figure 1: Map showing the distribution range of the five main geographical lineages (I.–V. MGL) we discussed based on cyt-b data. It shows the match of the mitochondrial genetic structuring with named sub-species that have previously been described. Location numbers on the map for Hemiechinus auritus samples sequenced for the present study are listed in Table 1. For the geographical origins of the published sequences, see Supplementary Table S1.
FIGURE 15 in Scrobipalpa chardonnayi Huemer and Özden, sp. nov.: a new presumably endemic species from Cyprus (Lepidoptera, Gelechiidae)
FIGURE 15. Neighbor-Joining tree of selected species of Scrobipalpa (Kimura 2-parameter, built with MEGA7 (Kumar et al. 2016); Note: the scale bar only applies to internal branches between spcies. Width of triangles represent sample size, depth the genetic variation within the cluster. Source: DNA Barcode data from BOLD, DS-SCROBCYP "Scrobipalpa sp.n.—Cyprus" (Barcode of Life Database; Ratnasingham 2018).
FIGURES 11–12 in Scrobipalpa chardonnayi Huemer and Özden, sp. nov.: a new presumably endemic species from Cyprus (Lepidoptera, Gelechiidae)
FIGURES 11–12. Female genitalia of Scrobipalpa spp., details of segment VIII. 11, S. chardonnayi sp. nov., holotype, gen. slide GEL 1359 P. Huemer. 12, S. vasconiella, Kyrgyzstan, gen. slide GEL 1361 P. Huemer.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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