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31 results for “Rhodopes”
Fig.1 in Home range, movements and activity patterns of an exceptionally large male Brown Bear (Ursus arctos L.) in the area of the Bulgarian-Greek border (Western Rhodope Mts.)
Fig.1. Dominant male (supposed age of at least 15 years old) with scars of battles with rivals. Hunting Forestry Adjilarska (photo from a kamera-trap, D. Bukovsky, 17.03.2014 at a game-feeding station).
Fig 2. A in Home range, movements and activity patterns of an exceptionally large male Brown Bear (Ursus arctos L.) in the area of the Bulgarian-Greek border (Western Rhodope Mts.)
Fig 2. A century-old bear marking tree just on the Bulgarian/Greek border. The tree is marked also with white paint as a border pillar (photo N. Spassov).
Fig.2. A in Evidences for the Lynx recovery in Bulgaria: the Lynx discovered in Western Rhodopes
Fig.2. A second photo of the same animal made by the camera trap an hour after the first one. The dark end of the tail is visible.
Fig.1. A in Evidences for the Lynx recovery in Bulgaria: the Lynx discovered in Western Rhodopes
Fig.1. A night picture of a lynx photographed (V.P.) in August, 2014 by a camera trap in the region between Trigrad and Yagodina.
Fig. 1 in Study on the Stone crayfish Austropotamobius torrentium (Schrank, 1803) (Crustacea: Decapoda: Astacidae) population in the Dospat Dam (Western Rhodope Mountains, Bulgaria)
Fig. 1. Views from the collection sites at the area of the Dospat Dam during present study.
FIGURE 1 in Rhodopotyphlus mitovi gen. et sp. nov., a new endogean millipede from the Western Rhodope Mountains, Bulgaria (Diplopoda: Julida: Julidae)
FIGURE 1. Rhodopotyphlus mitovi gen. et sp. nov., habitus. A. ♀ in situ. B, C. ♂ holotype (NMNHS). B. Whole body, lateral view. C. Frontal and caudal body ends, lateral view (epiproct concealed behind right antenna). Pictures taken not to scale.
FIGURE 3 in Rhodopotyphlus mitovi gen. et sp. nov., a new endogean millipede from the Western Rhodope Mountains, Bulgaria (Diplopoda: Julida: Julidae)
FIGURE 3. Rhodopotyphlus mitovi gen. et sp. nov., non-gonopod sexual characters. A–C. ♂ paratype (IBER). D–F. ♀ paratype (IBER). A. Leg-pair 1, oral view. B. Right flange of pleurotergum 7, ventro-lateral view. C. Penis, caudal view. D. Left vulva, meso-caudal view. E. Right vulva, oral-mesal view. F. Same, latero-oral, slightly apical view. Abbreviations: la: lateral ampulla, lt: lateral tube, ma: mesal ampulla, mt: mesal tube, op: operculum. Scale bars: 0.06 mm (D), 0.05 mm (A, E), 0.04 mm (B, C) and 0.02 mm (F).
FIGURE 2 in Rhodopotyphlus mitovi gen. et sp. nov., a new endogean millipede from the Western Rhodope Mountains, Bulgaria (Diplopoda: Julida: Julidae)
FIGURE 2. Rhodopotyphlus mitovi gen. et sp. nov., ♂ paratype (IBER), general morphology. A. Right antenna, sub-mesal view. B. Gnathochilarium, ventral view (left stipes partly broken-off). C. Distal parts of right stipes and lamella lingualis of the same, same aspect. D. Right leg 2, oral view. E. Right leg 3, oral view. F. Telson, lateral view. Arrows indicating vestigial adhesive pads on postfemur and tibia. Scale bars: 0.1 mm (A, B, F), 0.05 mm (D, E) and 0.01 mm (C).
FIGURE 4 in Rhodopotyphlus mitovi gen. et sp. nov., a new endogean millipede from the Western Rhodope Mountains, Bulgaria (Diplopoda: Julida: Julidae)
FIGURE 4. Rhodopotyphlus mitovi gen. et sp. nov., ♂ paratype (IBER), gonopods. A. Left gonopods, mesal view. B. Same, caudo-mesal view. C. Right promere, caudal view. D. Middle section of flagellum. E. Right opisthomere, lateral view. Abbreviations: ag: apical groove, dl: denticulate lobe, el: external lobe, f: flagellum, fc: flagellum channel, il: internal lobe, lo: lamellar outgrowth, mg: median groove, mr: median ridge, P: promere, sf: setiform filaments. Scale bars: 0.02 mm (A–C, E), 0.005 mm (D).
FIGURE 5 in Rhodopotyphlus mitovi gen. et sp. nov., a new endogean millipede from the Western Rhodope Mountains, Bulgaria (Diplopoda: Julida: Julidae)
FIGURE 5. Type locality of Rhodopotyphlus mitovi gen. et sp. nov. A. In April 2016; dot-lines marking the approximate zone from where all type specimens were collected. B. Closer view of part of that same zone, May 2017.
FIGURES 22–25 in A taxonomic contribution to the genus Brachythele Ausserer, 1871 (Araneae, Nemesiidae) with a description of a new species from Rhodope Mountains, Bulgaria
FIGURES 22–25. Brachythele media (22–23 NHML, 24–25 SMF), male palp. 22 prolateral; 23 ventral; 24 retrolateral, 25 proventral. Scale 0.5 mm.
FIGURES 1–6 in A taxonomic contribution to the genus Brachythele Ausserer, 1871 (Araneae, Nemesiidae) with a description of a new species from Rhodope Mountains, Bulgaria
FIGURES 1–6. Brachythele rhodopensis sp. n., holotype male. 1 habitus, dorsal; 2 carapace; 3 sternum; 4 spinnerets, ventral; 5 tibia I, ventral; 6 tibia I, lateral. Scale 2 mm.
FIGURES 16–21 in A taxonomic contribution to the genus Brachythele Ausserer, 1871 (Araneae, Nemesiidae) with a description of a new species from Rhodope Mountains, Bulgaria
FIGURES 16–21. Brachythele media, male (SMF). 16 habitus, dorsal, 17 carapace; 18 sternum; 19 tibia I, ventral; 20 spinnerets, ventral; 21 tibia I, lateral. Scale 16—2 mm, 17–18—1 mm, 19–21—0.5 mm.
FIGURES 13–15 in A taxonomic contribution to the genus Brachythele Ausserer, 1871 (Araneae, Nemesiidae) with a description of a new species from Rhodope Mountains, Bulgaria
FIGURES 13–15. Brachythele rhodopensis sp. n., holotype male, palp. 13 prolateral; 14 ventral; 15 retrolateral. T—tegulum; E—embolus; K—embolic keel. Scale 0.5 mm.
FIGURES 7–12 in A taxonomic contribution to the genus Brachythele Ausserer, 1871 (Araneae, Nemesiidae) with a description of a new species from Rhodope Mountains, Bulgaria
FIGURES 7–12. Brachythele rhodopensis sp. n., holotype male, palp (7–9) and Brachythele langourovi, paratype, male, palp (10–12). 7, 10 prolateral; 8, 11 ventral; 9, 12 retrolateral. Scale 0.5 mm.
Figure 5 from: Mincheva I, Jordanova M, Benbassat N, Aneva I, Kozuharova E (2019) Ethnobotany and exploitation of medicinal plants in the Rhodope Mountains – is there a hazard for Clinopodium dalmaticum? Pharmacia 66(2): 49-52. https://doi.org/10.3897/pharmacia.66.e35139
Figure 5 Traditional knowledge about therapeutic effects of Clinopodiumdalmaticum (% of anecdotal reports).
Figure 2 from: Mincheva I, Jordanova M, Benbassat N, Aneva I, Kozuharova E (2019) Ethnobotany and exploitation of medicinal plants in the Rhodope Mountains – is there a hazard for Clinopodium dalmaticum? Pharmacia 66(2): 49-52. https://doi.org/10.3897/pharmacia.66.e35139
Figure 2 Dried plant material of Clinopodiumdalmaticum known by the informants as "Wild mint"or "White mint".
Supplementary material 5 from: Hristozova M, Lazarova R (2022) Radiation status of soils from the region of the Eastern Rhodopes (Southern Bulgaria). In: Chankova S, Peneva V, Metcheva R, Beltcheva M, Vassilev K, Radeva G, Danova K (Eds) Current trends of ecology. BioRisk 17: 45-57. https://doi.org/10.3897/biorisk.17.77432
Figure S5
Supplementary material 4 from: Hristozova M, Lazarova R (2022) Radiation status of soils from the region of the Eastern Rhodopes (Southern Bulgaria). In: Chankova S, Peneva V, Metcheva R, Beltcheva M, Vassilev K, Radeva G, Danova K (Eds) Current trends of ecology. BioRisk 17: 45-57. https://doi.org/10.3897/biorisk.17.77432
Figure S4
Supplementary material 3 from: Hristozova M, Lazarova R (2022) Radiation status of soils from the region of the Eastern Rhodopes (Southern Bulgaria). In: Chankova S, Peneva V, Metcheva R, Beltcheva M, Vassilev K, Radeva G, Danova K (Eds) Current trends of ecology. BioRisk 17: 45-57. https://doi.org/10.3897/biorisk.17.77432
Figure S3
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