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139 results for “Varanus”
Figure 2 in Skeletochronology in long tubular bones of the Javan water monitor lizard, Varanus salvator bivittatus in the juvenile stage (Lacertilia: Varanidae)
Figure 2. Cross section of the seven long tubular bones of juvenile male Varanus salvator bivittatus with zero LAG (SVL: 14.4 cm). MC: marrow cavity; dotted arrow: endosteal bone.
Fig. 1 in The ecology, distribution, status, threats, and conservation of the Common Water Monitor (Varanus salvator) in the Dhaleswari River of Assam, India
Fig. 1. (A) Map of India, highlighting Assam. (B) Map of Assam, highlighting Hailakandi district. (C) Map of Hailakandi district showing the two rivers, Dhaleswari River and Katakhal River, with distribution of the Common Water Monitor (Varanus salvator). Dots represent sighting locations during the present survey; current distribution in the Dhaleswari River is shown in green. Further downstream, despite no present records, occurrence in the past (1970s–1980s) was reported by several interviewees (shown in yellow). No reports on present occurrence in the Katakhal River (shown in red) could be found. Map by A.S. Choudhury.
Fig. 2 in The ecology, distribution, status, threats, and conservation of the Common Water Monitor (Varanus salvator) in the Dhaleswari River of Assam, India
Fig. 2. Photographs relevant to the habitat and threats of the Common Water Monitor (Varanus salvator) in the Dhaleswari River, Assam, India. (A) Research team interacting with the locals at Rongpur 5, Hailakandi. (B) Habitat of the Common Water Monitor in the Dhaleswari River, showing bushes and other features on the banks. (C) The sandy bank of the Katakhal River, prone to erosion and landslides, is the habitat not preferred by the Common Water Monitor. (D) The sluice gate at the mouth of Dhaleswari River at Shahabad, which prevents water flow into it and diverts the water to the Katakhal River. (E) Encroachment and conversion of the Dhaleswari River into fisheries by the locals building dikes at Rongpur 2. Photos by A.S. Choudhury.
Fig. 3. A in The ecology, distribution, status, threats, and conservation of the Common Water Monitor (Varanus salvator) in the Dhaleswari River of Assam, India
Fig. 3. A Common Water Monitor (Varanus salvator) killed for venturing into a human habitation at Rongpur 6, Hailakandi. It was subsequently buried. Photo by R.A. Barbhuiya.
Fig. 1 in Synonymization of the Miocene varanid lizard Iberovaranus Hoffstetter, 1969 with Varanus Merrem, 1820
Fig. 1. Varanid lizard Varanus sp. from Can Mas, early Miocene, IPS 58437; holotype of Iberovaranus catalaunicus Hoffstetter, 1969, a taxon here considered as taxonomically non valid. Trunk vertebra in dorsal (A), ventral (B), anterior (C), posterior (D), and left lateral (E) views.
Fig. 3 in Synonymization of the Miocene varanid lizard Iberovaranus Hoffstetter, 1969 with Varanus Merrem, 1820
Fig. 3. Trunk vertebrae of extant varanid lizards in ventral view. A. Varanus griseus (Daudin, 1803), ZFMK 53533. B. Varanus salvator (Laurenti, 1768), ZFMK 90471. Note the different development of the precondylar constriction (indicated by the arrows) and the proportions of the centrum and the condyle.
Fig. 2 in Synonymization of the Miocene varanid lizard Iberovaranus Hoffstetter, 1969 with Varanus Merrem, 1820
Fig. 2. Varanid lizard Varanus sp. from Can Mas, early Miocene, IPS 31701. Cervical vertebra dorsal (A), ventral (B), anterior (C), posterior (D), and left lateral (E) views.
Figure 5 in Neurocranial osteology and systematic relationships of Varanus (Megalania) prisca Owen, 1859 (Squamata: Varanidae)
Figure 5. Phylogenetic inter-relationships of Varanus prisca within Varanoidea. The position is based on the optimization of morphological characters onto the molecular tree of Ast (2001). The position of Estesia is based on Norell & Gao (1997). Data for Varanus rudicolis, Varanus keithhornei, Varanus melinus, Varanus doreanus, Varanus yuwonoi, Varanus spenceri, Varanus mertensi, and Varanus panoptes were not available. These taxa were added post hoc. The position of prisca within the Indo-Australian clade unambiguously assigns the taxon to Varanus.
Figure 3 in Neurocranial osteology and systematic relationships of Varanus (Megalania) prisca Owen, 1859 (Squamata: Varanidae)
Figure 3. Stereopairs of the otic region of (A) Varanus prisca (BMNH 39965), (B) Varanus komodoensis (USNM 228163), and (C) Varanus salvator (ROMV-R 1040) in right lateral views. Scale bar: 1 cm. Anatomical abbreviations are defined in Appendix 2.
Figure 4 in Neurocranial osteology and systematic relationships of Varanus (Megalania) prisca Owen, 1859 (Squamata: Varanidae)
Figure 4. Stereopairs of the otic region of (A) Varanus prisca (BMNH 39965) in left ventrolateral view, (B) Varanus komodoensis (USNM 228163), and (C) Varanus salvator (ROMV-R 1040) in right ventrolateral views. Scale bar: 1 cm. Anatomical abbreviations are defined in Appendix 2.
Figure 2 in Neurocranial osteology and systematic relationships of Varanus (Megalania) prisca Owen, 1859 (Squamata: Varanidae)
Figure 2. Neurocranium of Varanus prisca (A, BMNH 39965) compared with Varanus komodoensis (B, USNM 228163) and Varanus salvator (C, ROMV-R 1040) in posterior view. Scale bars: 2 cm for (A) and (B); 1 cm for (C). Anatomical abbreviations are defined in Appendix 2.
Figure 1 in Neurocranial osteology and systematic relationships of Varanus (Megalania) prisca Owen, 1859 (Squamata: Varanidae)
Figure 1. Neurocranium of Varanus prisca (BMNH 39965) in dorsal (A), ventral (B), anterior (C), and left lateral (D) views. Scale bar: 5 cm. Anatomical abbreviations are defined in Appendix 2.
Fig. 4 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 4 Parsimony-based character optimization on the tooth serrations based on the phylogeny of Pyron et al. (2013)
Fig. 2 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 2?Varanus sp. from Hüenerbach. a–f tooth NMBHüe.1 inlingual (a), labial (b), mesial (c), distal (d), occlusal (e), andventral (f) views; g–l) tooth NMBHüe.2 inlingual (g), labial (h), proximal (i), distal (j), occlusal (k), andventral (l) views
Fig. 3 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 3 Pulp cavity of extant varanoids. a–b Middle right dentary tooth (reversed) of Lanthanotus borneensis SMF 336 in lingual (a) and mesial (b) views. c–d Middle left dentary tooth (reversed) of Varanus indicus AMNH 58389 in lingual (c) and mesial (d) views. e–f Middle right maxilla tooth (inverted) of Varanus salvator PIMUZ A/III 1493 in lingual (e) and mesial (f) views
Fig. 5 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 5 Lacertidae indet. from Hüenerbach. Posterior portion of right maxilla NMB Hüe.3 in labial (a) and ventrolingual (b) views
Fig. 1 in First fossil record of Varanus (Reptilia, Squamata) from Switzerland and the earliest occurrences of the genus in Europe
Fig. 1 Location map of Hüenerbach by the city of Langnau im Emmental (Canton of Bern, Switzerland).The Swiss molasse Basin Tertiary Formations are marked highlighting the fact that the Hüenerbach locality is at the transition between the OMM and OSM. Ba. Basel, Be. Bern, Ge. Geneva, Zu. Zurich (modified after Mennecart, 2012)
Figure 10 in Taxonomy of Micronesian monitors (Reptilia: Squamata: Varanus): endemic status of new species argues for caution in pursuing eradication plans
Figure 10. Varanus bennetti sp. nov., Ngarchelong, Palau (photo by Thibaud Aronson).
FIG. 1 in First fossil of Varanus Merrem, 1820 (Squamata: Varanidae) from the Miocene Siwaliks of Pakistan
FIG. 1. — Labels related to SNSB-BSPG 1956 II 2010: original label (A) and inventory label (B).
Figure 8. A. Scincus mitranus. B. Varanus griseus. C in Reptiles and Amphibians along the Coastal Area of the Eastern Province, Saudi Arabia
Figure 8. A. Scincus mitranus. B. Varanus griseus. C. Diplometopon zarudnyi.
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