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14 results for “Blastocerus”
FIG. 4 in Blastocerus dichotomus
FIG. 4. Past and present distributions of Blastocerus dichotomas (based on Jungius, 1976; Schaller and Vasconcelos, 1978). Drawing by 1. Pinder.
FIG. 2 in Blastocerus dichotomus
FIG. 2. Frontal view of the skull and antlers of Blastocerus dichotomus (adult male, United States National Museum of Natural History 261017). Courtesy of R. W. Thorington, Jr.
FIG. 1 in Blastocerus dichotomus
FIG. 1. Adult male marsh deer (Blastocerus dichotomus) in the Berlin Zoo. Courtesy of H. Fradrich, Berlin Zoo.
Figure 2. a in Evidence of Ehrlichia chaffeensis in Argentina through molecular detection in marsh deer (Blastocerus dichotomus)
Figure 2. a_Summary of the E. chaffeensis molecular amplification of the 16SrRNA and the VLPT genes in marsh deer and tick samples at different time points. b_ Alignment of a fragment of the 16SrRNA nucleotide sequences from reference Anaplasma and Ehrlichia strains and those amplified from deer (C2, C7, D11 and C12) and a tick (tick1_C7) in the present study. The red line marks the hypervariable V1 region.
Fig. 1 in Evidence of Ehrlichia chaffeensis in Argentina through molecular detection in marsh deer (Blastocerus dichotomus)
Fig. 1. Map of the two marsh deer populations (Paraná River Delta and Ibera Wetlands) located along the alluvial plain of the Paraná River (Argentina).
Figs 2-5 in Accessing camera trap survey feasibility for estimating Blastocerus dichotomus (Cetartiodactyla, Cervidae) demographic parameters
Figs 2-5. Individual discrimination of marsh deer males (Blastocerus dichotomus Illiger, 1815) using antler morphology: a spike-antlered male (2) and two different branched antlers (3 and 4). The arrows indicate the different horn tips. Marsh deer female accompanied by a fawn (5).
Fig. 1 in Accessing camera trap survey feasibility for estimating Blastocerus dichotomus (Cetartiodactyla, Cervidae) demographic parameters
Fig. 1. Map outlining the aerial and camera trap surveys conducted at the Jataí Ecological Station, state of SÃo Paulo, Brazil in order to obtain marsh deer demographic parameters.
Fig. 3 in Identification of a new Sarcocystis sp. in marsh deer (Blastocerus dichotomus) from wetlands of Argentina
Fig. 3. Neighbor-Joining consensus phylogenetic tree. Phylogenetic tree based on an alignment of 41 Sarcocystis spp. 18S rRNA sequences performed with GENEIOUS software (Version R9), using a Tamura-Nei genetic distance model. The three sequences from marsh deer obtained in the present study are in bold. Branch consensus support is expressed as % from 1000 bootstraps. Sequence M97703 from T. gondii used as outgroup.
Fig. 4 in Identification of a new Sarcocystis sp. in marsh deer (Blastocerus dichotomus) from wetlands of Argentina
Fig. 4. Neighbor-Joining consensus phylogenetic tree. Phylogenetic tree based on an alignment of 40 Sarcocystis spp. COI sequences performed with GENEIOUS software (Version R9), using a Tamura-Nei genetic distance model and no outgroup. The three sequences from marsh deer (one from each animal) are in bold. Branch consensus support is expressed as % from 1000 bootstraps. Sequence JX473257 from T. gondii used as outgroup.
Fig. 2 in Identification of a new Sarcocystis sp. in marsh deer (Blastocerus dichotomus) from wetlands of Argentina
Fig. 2. Transmission electron microscopy (TEM) image of the cyst wall from a microscopical sarcocyst in a marsh deer muscle (17-12CDP). Note the primary cyst wall (Pcw) from which arise bent ribbon-like protrusions folded over the cyst surface. The ground substance layer (gs) showed no granules nor microtubules. Electron lucid amylopectin granules (am) appear irregularly distributed within vacuolated bradyzoites (vb). Both, bradyzoites and host muscle cell are decomposed.
Fig. 1. A and B in Identification of a new Sarcocystis sp. in marsh deer (Blastocerus dichotomus) from wetlands of Argentina
Fig. 1. A and B: Microscopical sarcocyst detected in marsh deer muscles. A: Optical microscopy image from a complete cyst. B: higher magnification of a portion from the cyst displayed in A. Note the thin cyst wall without apparent protrusions.
Fig. 3 in Evidence of Ehrlichia chaffeensis in Argentina through molecular detection in marsh deer (Blastocerus dichotomus)
Fig. 3. Dead marsh deer with high tick burden.
FIG. 3 in Blastocerus dichotomus
FIG. 3. Dorsal, ventral, and lateral views of the skull and lateral view of the mandible of Blastocerus dichotomus (adult male, USNM 261017). Greatest length of skull is 328 mm.
On following pages 37 Mule Deer IOdocoı/eııs hemıonus) 38 Marsh Deer (Blastocerus dıchoromus) 39 Pampas Huemul (Hrppocamelus brsulcusl 42 Northern Pudu (Pudu mephıstophılesl. 43 Southern Pudu (Pudu pude) Deer (Ozoroceros bezoartrcusl, 40 North Andean Huomul (Hıppocamelus anrrsensrsl, 41 South Andean in Cervidae
On following pages 37 Mule Deer IOdocoı/eııs hemıonus) 38 Marsh Deer (Blastocerus dıchoromus) 39 Pampas Huemul (Hrppocamelus brsulcusl 42 Northern Pudu (Pudu mephıstophılesl. 43 Southern Pudu (Pudu pude) Deer (Ozoroceros bezoartrcusl, 40 North Andean Huomul (Hıppocamelus anrrsensrsl, 41 South Andean
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