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525 results for “Cyprus”
Resistivity Tomography Imaging of the Substratum of the Bedestan Monumental Complex at Nicosia, Cyprus
<p>M. Cossolino et al., "Resistivity Tomography Imaging of the Substratum of the Bedestan Monumental Complex at Nicosia, Cyprus." Substratum from a depth of 0.25m to 4.0m.</p>
Antimicrobial resistance monitoring results complementing the European Union Summary Report on Antimicrobial Resistance in zoonotic and indicator bacteria from humans, animals and food in 2020/2021 – Cyprus
<p>This dataset contains AMR monitoring results in animals and food at the isolate level pursuant to Article 9 of Directive 2003/99/EC and to Annex, part B, of Commission implementing Decision (EU) 2020/1729. In addition, the dataset includes any other results from isolates than the ones mentioned in the Commission implementing Decision (EU) 2020/172. The quantitative minimum inhibitory concentration (MIC) data from dilution methods are included.</p> <p>Reporting authorities contributing to 2021 AMR data collection: Ministry of Agriculture, Rural Development and Environment</p>
Primary ciliary dyskinesia multigene NGS diagnostic testing in Cyprus
Open the record for dataset details and reuse information.
Subspecies and Distribution. R m. mehelyi Matschie, 1901 - S Europe (S Iberian Peninsula, Sardinia, E Sicily, SE Italy, S Albania, E Serbia, S Romania, E North Macedonia, Bulgaria, and Greece), SW Asia (Caucasus, Anatolia, N Iraq, and Zagros Mts in W Iran), and N Africa (N Morocco, N Algeria, and N Tunisia); possibly a record from SE France, and there are apparently records from Afghanistan, although exact localities are uncertain. R m. judaicus K. Andersen & Matschie, 1904 - Levant in Cyprus, N Syria, W Jordan, Israel, NE Egypt (including NW Sinai based on echolocation), and NE Libya. in Rhinolophidae
Subspecies and Distribution. R m. mehelyi Matschie, 1901 - S Europe (S Iberian Peninsula, Sardinia, E Sicily, SE Italy, S Albania, E Serbia, S Romania, E North Macedonia, Bulgaria, and Greece), SW Asia (Caucasus, Anatolia, N Iraq, and Zagros Mts in W Iran), and N Africa (N Morocco, N Algeria, and N Tunisia); possibly a record from SE France, and there are apparently records from Afghanistan, although exact localities are uncertain. R m. judaicus K. Andersen & Matschie, 1904 - Levant in Cyprus, N Syria, W Jordan, Israel, NE Egypt (including NW Sinai based on echolocation), and NE Libya.
Nicosia, Cyprus. Bedesten, east-west section, looking south.
<p>Nicosia, Cyprus. Bedesten, east-west section at the nave, looking south.</p>
Nicosia, Cyprus. Bedesten, east-west section, looking north.
<p>Nicosia, Cyprus. Bedesten, east-west section, looking north.</p>
Nicosia, Cyprus. Bedesten. Drawing of the west front elevation.
<p>Nicosia, Cyprus. Bedesten. Drawing of the west front elevation.</p>
FIGURE 2 in Discovery of a new species of Lacon Laporte (Coleoptera: Elateridae: Agrypninae) endemic to Cyprus, with a modified tarsal morphology
FIGURE 2. Abdominal terminal segments and genitalia of Lacon cyprius sp. nov. A–E. Holotype, male. A. Aedeagus, dorsal view. B. Aedeagus, ventral view. C. Abdominal terminal segments. D. Abdominal tergite VIII. E. Abdominal sternite VIII. F–I. Paratype, female. F. Abdominal tergite VIII. G. Abdominal sternite VIII. H. Ovipositor. I. Bursa copulatrix with inner sclerites. Scale bars = 0.5 mm.
FIGURE 3 in Discovery of a new species of Lacon Laporte (Coleoptera: Elateridae: Agrypninae) endemic to Cyprus, with a modified tarsal morphology
FIGURE 3. Habitus images and body parts of Lacon punctatus from Cyprus. A–B. Dorsal view of male and female, respectively. C–D. Pronotum of male and female, respectively. E–F. Basal and medial antennomeres of male and female, respectively. G. Fore tarsomeres of male. H. Hind tarsomeres of male. Scale bars = 0.5 mm (Figs G–H), 1 mm (Figs E–F), 2 mm (Figs C–D), 3 mm (Figs A–B).
FIGURE 1 in Discovery of a new species of Lacon Laporte (Coleoptera: Elateridae: Agrypninae) endemic to Cyprus, with a modified tarsal morphology
FIGURE 1. Habitus images and body parts of Lacon cyprius sp. nov. A–C. Male holotype in dorsal, ventral and lateral view, respectively. D. Female paratype in dorsal view. E–F. Basal and medial antennomeres, male holotype and female paratype, respectively. G–H. Pronotum, male holotype and female paratype, respectively. I–J. Scutellar shield, male holotype and female paratype, respectively. K–L. Fore tarsomeres, male holotype and female paratype, respectively. M. Hind leg, male holotype. Scale bars = 0.5 mm (Figs I–M), 1 mm (Figs E–F), 2 mm (Figs G–H), 3 mm (Figs A–D).
Supplementary material 2 from: Macher J-N, Drakou K, Papatheodoulou A, Hoorn B, Vasquez M (2020) The mitochondrial genomes of 11 aquatic macroinvertebrate species from Cyprus. Metabarcoding and Metagenomics 4: e58259. https://doi.org/10.3897/mbmg.4.58259
Supplementary tables showing reads numbers, coverage and length of mitochondrial genomes, and length and blast results of 18S and 28S rRNAs
FIGURE 3 in Amphipoda species (Suborders: Amphilochidea and Senticaudata) from Vasiliko Bay, Cyprus: New records, information on their biogeography and an annotated checklist from the coasts of Cyprus
FIGURE 3. Number of species per family (individuals classified to higher taxa are not included in the figure).
FIGURE 2 in Amphipoda species (Suborders: Amphilochidea and Senticaudata) from Vasiliko Bay, Cyprus: New records, information on their biogeography and an annotated checklist from the coasts of Cyprus
FIGURE 2. Number of individuals per family. (80 individuals that were classified to higher taxa (Amphilochidea) are not included in the figure).
FIGURE 1 in Amphipoda species (Suborders: Amphilochidea and Senticaudata) from Vasiliko Bay, Cyprus: New records, information on their biogeography and an annotated checklist from the coasts of Cyprus
FIGURE 1. Study area, sampling stations and Posidonia oceanica distribution in Vasiliko Bay, Cyprus.
Breeding success of Eleonora's falcon in Cyprus revisited using survey techniques for cliff-nesting species
<p>The global breeding population of Eleonora's Falcon (Falco eleonorae) is distributed from the Canary Islands in the west, across the Mediterranean Sea, to Cyprus in the east. The remoteness of nesting colonies, which are predominantly lo- cated on sea cliffs and islets, renders breeding success estimation a challenging task, requiring a composite approach to assess each of the breeding stages. Early estimates of the breeding success of Eleonora's Falcon suggested that the Akrotiri colony in Cyprus had the lowest breeding success among all the colonies throughout the species' breeding range, at a level seemingly unsustainable, suggesting the colony might have been in danger of gradual extinction. Here we use a diversity of survey methods including boat, ground, and aerial surveys, with the incorporation of photog- raphy and photogrammetry, to reassess the breeding success and the effect of nest characteristics on the Eleonora's Falcon breeding population in Cyprus. During a 6-yr study, we found that Cyprus hosts ~138 ± 8 breeding pairs and that breeding success equals 1.54 ± 0.85 fledglings per breeding pair, and thus is considerably higher than previous es- timates. In addition, by analyzing temporal variation in breeding and nest characteristics, we found that early breeding and reuse of nests positively influence breeding success, but physical nest characteristics have a limited effect on colony productivity. The range of survey methods employed, as well as the array of photography techniques utilized, enhanced the efficiency and accuracy of this study, allowing us to overcome the challenge of inaccessibility of nesting cliffs.</p>
Data from: Cyprus wheatears Oenanthe cypriaca likely reach sub-Saharan African wintering grounds in a single migratory flight
Long-distance migratory flights with multiple stop-overs, multiple wintering sites, and small-scale connectivity in Afro-Palearctic migrants are likely to increase their vulnerability to environmental change and lead to declining populations. Here we present the migration tracks and wintering locations of the first six Cyprus wheatears to be tracked with geolocators: a species with high survival and a stable population. We therefore predicted a non-stop flight from Cyprus to sub-Saharan wintering grounds, a single wintering area for each individual and a wide spread of wintering locations representing low migratory connectivity at the population level. The sub-Saharan wintering grounds in south Sudan, Sudan and Ethiopia were likely reached by a single flight of an average straight-line distance of 2538 km in ca 60 h, with an average minimum speed of 43.1 km h–1. The high speed of migration probably ruled out stop-overs greater than a few hours. Cyprus wheatears migrated from Cyprus in mid-late October and most probably remained at a single location throughout winter; three out of five birds with available data may have used a second site < 100 km away during February; all returned between 7–22 March when accurate geolocation data are not possible due to the equinox. Wintering locations were spread over at least 950 km. There were no tag effects on survival. Cyprus wheatears showed a migratory strategy in accordance with their observed high survival rate and demonstrated a routine flight range that allows much of the Mediterranean and the Sahara to be crossed in a rapid two and a half-day flight.
FIGURE 2 in Macrobiotus dariae sp. n., a new species of eutardigrade (Eutardigrada, Macrobiotidae) from Cyprus
FIGURE 2. Macrobiotus recens: A, Buccopharyngeal apparatus; B, claws of the third pair of legs; C, egg; D, detail of the egg. (A–D: phase contrast). A, scale bar = 20 µm; B–D, scale bar 10 µm.
FIGURE 1 in Macrobiotus dariae sp. n., a new species of eutardigrade (Eutardigrada, Macrobiotidae) from Cyprus
FIGURE 1. Macrobiotus dariae sp. n.: A, habitus (holotype); B, buccopharyngeal apparatus (paratype); C, claws of the third pair of legs (paratype); D, detail of the egg; E, claws of the fourth pair of legs (holotype). (A–E: phase contrast). A, scale bar = 30 µm; B, scale bar = 20 µm; C–E, scale bar = 10 µm.
FIGURE 2 in Sipunculans from the coast of northern Cyprus (eastern Mediterranean Sea)
FIGURE 2. MDS plot showing similarity among sipuncula species found on different habitats and depths along the coast of Cyprus.
FIGURE 3 in Sipunculans from the coast of northern Cyprus (eastern Mediterranean Sea)
FIGURE 3. The species new to the eastern Mediterranean fauna. A. Trunk and partly everted introvert of the specimen (ESFM–SIP/97–20) of Nephasoma (Nephasoma) constrictum. B. Trunk and partly everted introvert of the specimen (ESFM–SIP/98–35) of Phascolosoma (Phascolosoma) agassizii agassizii. C. Trunk and partly everted introvert of the specimen (ESFM–SIP/98–42) of Phascolosoma (Phascolosoma) scolops. D. Trunk and partly everted introvert of the specimen (E SFM–SIP/98–2) of Phascolosoma (Phascolosoma) stephensoni. Scale line 1 mm
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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