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43 results for “Emys orbicularis”
Fig. 6 in The First Experience In New Technologies Of Breeding And Semi-Natural Eggs Incubation Of Northern Emys Orbicularis In Glass-House Aquaculture In Latvia
Fig. 6. Temperature condition and different forms of behaviour, observed in the experiment for the first time.
Fig. 1 in The First Experience In New Technologies Of Breeding And Semi-Natural Eggs Incubation Of Northern Emys Orbicularis In Glass-House Aquaculture In Latvia
Fig. 1. Scheme of the construction of the experimental glass-house: 1 – building of the Centre; 2 – filter and air compressor part; 3, 4, 5 – unused in the experiment parts of the basin; 6, 7 – experimental parts of the basin; 8, 9 – places for eggs-laying; two small red-yellow circles – A and B points of measurement of temperature on concrete shore and in water.
Fig. 4 in The First Experience In New Technologies Of Breeding And Semi-Natural Eggs Incubation Of Northern Emys Orbicularis In Glass-House Aquaculture In Latvia
Fig. 4. Plot of fitted model for temperature of sun-basking place (Tsunbask) and temperature of water in the basin (Twater) of the glass-house herpetoculture of E.orbicularis.
Fig. 15. P in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig. 15. P.sinensis laid eggs after breeding in captivity (Latgales Zoo, shelter for exotic turtles).
Fig.13 in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig.13. Old adult female of Emys orbicularis from the habitat, where Pelodiscus sinensis #PeSi0003 was found in 2014 (Daugavpils, Latvia) (Photo: 2003).
Fig. 5 in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig. 5. Olaines lake, habitat of the first P.sinensis #PeSi0001 recorded in Latvia (Photo: Drezina, 2008).
Fig. 7 in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig. 7. Orthophoto of habitat of findings of P.sinensis #PeSi0001 in Olaine, Latvia (Google Earth services).
Fig. 14. Received from owners P in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig. 14. Received from owners P.sinensis breeding in captivity (Latgales Zoo, shelter for exotic turtles).
Fig. 9 in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig. 9. Orthophoto of habitat of findings of P.sinensis #PeSi0003 in Daugavpils, Latvia (Google Earth services).
Fig.12 in First Records Of New Aquatic Predator Pelodiscus Sinensis (Wiegmann 1835) In Latvia And Preliminary Ecological Risk Assessment Of The Invasion For Autochthonic Emys Orbicularis (Linnaeus 1758)
Fig.12. Peculiarities of P.sinensis findings waterbodies anthropogenic influence and distance potential for species distribution in Latvia.
Fig. 5. Emys orbicularis habitat 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 5. Emys orbicularis habitat 3 in Silene Nature Park before restoration (Google Earth service, SAS services).
Fig. 4. Emys orbicularis habitats 1 and 2 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 4. Emys orbicularis habitats 1 and 2 in Silene Nature Park before (a) and after (b) restoration (Google Earth service, SAS services).
Fig. 6. Emys orbicularis habitat 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 6. Emys orbicularis habitat 3 in Silene Nature Park after restoration (Google Earth service, SAS services).
Fig.11 in The Experimental Data On Sun-Basking Activity Of European Pond Turtle Emys Orbicularis In Natural Climate In Latvia: Dynamics And Correlation With The Meteorological Factors
Fig.11. Ranking of meteorological factors by the quantity of significant positive or negative correlations with the number of sun-basking Emys orbicularis in the interval 8d"Nsbd"21.
Fig.3 in The Experimental Data On Sun-Basking Activity Of European Pond Turtle Emys Orbicularis In Natural Climate In Latvia: Dynamics And Correlation With The Meteorological Factors
Fig.3. Basic forms of sun-basking activity of Emys Fig.4. Basic forms of sun-basking activity of Emys orbicularis registered in the study: lying in the orbicularis registered in the study: heating under shadow. the sun in the shoal.
Figure 1. A in Increased haplotype diversity of Emys orbicularis (Linnaeus, 1758) (Reptilia: Emydidae) in northern Iran
Figure 1. A) Map of Eurasia and the samples used for this study. Shaded area at lower right indicates the study area and the colors of the occurrence points correspond to the lineage numbers in the phylogenetic tree. B) Map of Iran, Armenia and Azerbaijan and samples for lineage VII. Red circles indicate samples from Genbank (Fitz et al., 2009), red stars are our new samples.
Figure 2 in Increased haplotype diversity of Emys orbicularis (Linnaeus, 1758) (Reptilia: Emydidae) in northern Iran
Figure 2. Bayesian inference tree (MrBayes) based on the cytochrome b gene fragment. Colors of the branches correspond to the lineage colors in Figure 1. Posterior probabilities and divergence time estimation (n parentheses) are next to the nodes.
Fig. 1. A–C in The first case of Spiroxys contortus in European pond turtle (Emys orbicularis) in the wild in Poland
Fig. 1. A–C Female of Spiroxys contortus (Gnathostomatidae) parasite of wild Emys orbicularis (European pond turtle) in Poland. A. Anterior region (a) median lobe with a tooth; (b) the lip with submedian papilla; (c) cuticular spine on the margin of the collar; B. Posterior region with a conical tip (arrow) C. Vulvar opening (arrow).
Fig. 3 in Fatal spirorchiidosis in European pond turtles (Emys orbicularis) in Switzerland
Fig. 3. Phylogenetic analysis, (a) Maximum likelihood phylogenetic tree of 206 bp of the 28S rRNA gene of members of the family Spirorchiidae, with Alaria alata as outgroup. Members of the Spirorchis genus are boxed. Parasite names are provided, followed by host names (top clade only), GenBank accession numbers and country of parasite discovery. Bootstrap values above 70 are shown, and branch lengths corresponding to the number of base substitutions are indicated by the scale bar. (b) Unrooted phylogenetic network of 274 bp of the ITS2 region of Spirorchis spp. recently described from North Amercian turtle species (Roberts et al., 2019) and Swiss Emys orbicularis. Host names, location of discovery and GenBank accession numbers are given. Note that the unnamed Spirorchis parasite described from Graptemys ernsti (AL, United States) is 100% identical in both the partial 28S rRNA (MH843487), and ITS2 (MH678746) sequences amplified from all Swiss turtle specimens.
Fig. 2 in Fatal spirorchiidosis in European pond turtles (Emys orbicularis) in Switzerland
Fig. 2. Histopathological findings, (a) Five-year-old female European pond turtle (Emys orbicularis, ID2), small intestine. Multiple intravascular trematode eggs (narrow arrowheads) are present in the tunica muscularis, and submucosa associated with severe granulomatous inflammation and acute haemorrhage (large arrowheads). H&E staining, bar 500 μm. (b) Eleven-year-old female European pond turtle (Emys orbicularis, ID4), large intestine. The mucosa displays a focal deep ulceration (arrows) with replacement of the underlying submucosa and tunica muscularis by fibrous tissue (stars) and severe granulomatous coelomitis (asterisks). Multiple trematode eggs are present intravascularly, particularly in the subserosal vasculature (arrowheads). H&E staining, bar 200 μm. (c) ID2, small intestine. Focal granulomatous reaction with multinucleated giant cells (arrows) displaying intracytoplasmic, partially disrupted trematode eggs (arrowheads). H&E staining, bar 100 μm. (d) Adult male European pond turtle (Emys orbicularis ID5), testis. Interstitial granulomatous reaction composed of multinucleated giant cells (arrows) displaying intracytoplasmic embryonated (arrowheads) and non-embryonated (asterisk) trematode eggs. H&E staining, bar 50 μm.
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International Brain Laboratory public data
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