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17 results for “Vipera ammodytes”
Figure 4 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 4. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 55-cm-long Vipera kaznakovi specimen, together with its densitometric tracing curve. For further explanation, see caption of Figure 2.
Figure 1 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 1. Polyacrylamide gel electrophoresis of venoms of V. kaznakovi of different lengths. A. 16.5 cm, B. 30 cm, C. 55 cm (S: Start, junction between the stacking and separation gels).
Figure 3 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 3. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 30-cm-long Vipera kaznakovi specimen, together with its densitometric tracing curve. For further explanation, see caption of Figure 2.
Figure 8 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 8. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 51.5-cm-long Vipera ammodytes specimen, together with its densitometric tracing curve. For further explanation, see caption of Figure 2.
Figure 5 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 5. Polyacrylamide gel electrophoresis of venoms of V. ammodytes of different lengths. A. 28.5 cm, B. 36.7 cm, C. 51.5 cm (S: Start, junction between the stacking and separation gels).
FIGURE 8 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 8. Page from the Royal Swedish Academy of Sciences (KVA) donation catalogue with the Carleson donation entry on 4 October 1746.
FIGURE 4. Coluber ammodytes specimen UPSZTY 95 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 4. Coluber ammodytes specimen UPSZTY 95, collected by Carleson. Details of the lateral side of the head right and left; dorsolateral view of the whole specimen; frontal view of the rostral area; and dorsal view of the head.
FIGURE 7 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 7. Relative position of the lectotype in the projection of the first and the second correspondence axes (qualitative data). Use of names in this figure follows Tomovic (2006) and Hempel et al. (2018).
FIGURE 6 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 6. Relative position of the lectotype in the projection of the first and the second canonical axes (size-adjusted morphometric and meristic data). Use of names in this figure follows Tomovic (2006) and Hempel et al. (2018).
FIGURE 3 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 3. Plate from the dissertation by Linnaeus & Sundius (1748) with Figure II depicting the Coluber ammodytes specimen.
FIGURE 1 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 1 Section of pages 216–217 of Ed. 10 of 'Systema Naturae' describing Coluber ammodytes.
FIGURE 2 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 2 Section of pages 376 of 'Systema Naturae' Ed. 12 describing Coluber ammodytes.
FIGURE 5 in Assessment of the Linnaean type material of the Nose-horned viper, Vipera ammodytes (Linnaeus, 1758)
FIGURE 5. Original jar with the label in Thunberg's handwriting.
Figure 2 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 2. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 16.5-cm-long Vipera kaznakovi specimen, together with its densitometric tracing curve (O.D.: Optical density, S: Start, junction between the stacking and separation gels).
Figure 7 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 7. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 36.7-cm-long Vipera ammodytes specimen, together with its densitometric tracing curve. For further explanation, see caption to Figure 2.
Figure 6 in Age-dependent variations in the venom proteins of Vipera kaznakovi Nikolsky, 1909 and Vipera ammodytes (Linnaeus, 1758) (Ophidia: Viperidae)
Figure 6. Gel photograph showing the electrophoretic separation of the venom protein sample obtained from the 28.5-cm-long Vipera ammodytes specimen, together with its densitometric tracing curve. For further explanation, see caption to Figure 2.
Beyond sexual maturity: Importance of dietary changes in venom variation in Vipera ammodytes
<p>This study explores venom variation in the nose-horned viper (<em>Vipera ammodytes</em>) across different body sizes, examining its relationship with dietary shifts and reproductive status.</p> <p>This data set includes MALDI-TOF-MS data from 40 crude <em>V. ammodytes</em> venoms (folder Lakusic_et_al_MALDI_data.zip)</p> <p>Used instrument: MALDI-ToF/ToF mass spectrometer (ultrafleXtreme, Bruker Daltonics, Bremen, Germany)</p>
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