Data for: Arctic seabirds exposed to acute stress display state- and environment-dependent patterns of surface temperature change, independent of mercury contamination
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| Formato: | Recurso digital |
| Lenguaje: | inglés |
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2025
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| _version_ | 1866902298042564608 |
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| author | Grunst, Melissa |
| author_facet | Grunst, Melissa |
| contents | <p><span>This dataset contains the information necessary to run analyses regarding the effect of environmental and physiological state variables on the ocular temperature of an Artic seabird, the little auk (<em>Alle alle</em>). We used infrared thermography to measure ocular temperature (T<sub>EYE</sub>) following capture stress, reflective of a thermal stress response (TSR). Measurements were made on 42 little auks (or dovekie) breeding at a large colony situated at Ukaleqarteq (Kap Höegh), East Greenland (</span><span lang="EN-GB">70°44′N, 21°35′W</span><span>). We examined interactive effects of climate change-sensitive environmental conditions (ambient temperature (T<sub>a</sub>; </span><span><span><span>°</span></span></span><span>C)), mercury (Hg; </span><span><span><span>m</span></span></span><span>g/g dw) exposure, and body condition (as assessed by the scaled mass index; SMI; g) on patterns of change in T<sub>EYE</sub>. In addition, for a smaller subset of birds, we also examined whether five blood chemistry parameters which have been implicated in thermoregulation: albumin (ALB; g/dL), </span><span lang="EN-GB">aspartate aminotransferase (AST; U/L), </span><span>total</span><span> calcium (Ca<sup>2+</sup>; mg/dL), </span><span lang="EN-GB">creatine kinase (CK; U/L), and potassium (K<sup>+</sup>; mmol/L),</span><span lang="EN-GB"> </span><span>affected the nature of surface temperature change following capture, as assessed by change in T<sub>EYE</sub>. </span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17561347 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Data for: Arctic seabirds exposed to acute stress display state- and environment-dependent patterns of surface temperature change, independent of mercury contamination Grunst, Melissa Body surface temperature infrared thermal imagery global change interactive effects Alle alle Arctic seabirds state-dependency <p><span>This dataset contains the information necessary to run analyses regarding the effect of environmental and physiological state variables on the ocular temperature of an Artic seabird, the little auk (<em>Alle alle</em>). We used infrared thermography to measure ocular temperature (T<sub>EYE</sub>) following capture stress, reflective of a thermal stress response (TSR). Measurements were made on 42 little auks (or dovekie) breeding at a large colony situated at Ukaleqarteq (Kap Höegh), East Greenland (</span><span lang="EN-GB">70°44′N, 21°35′W</span><span>). We examined interactive effects of climate change-sensitive environmental conditions (ambient temperature (T<sub>a</sub>; </span><span><span><span>°</span></span></span><span>C)), mercury (Hg; </span><span><span><span>m</span></span></span><span>g/g dw) exposure, and body condition (as assessed by the scaled mass index; SMI; g) on patterns of change in T<sub>EYE</sub>. In addition, for a smaller subset of birds, we also examined whether five blood chemistry parameters which have been implicated in thermoregulation: albumin (ALB; g/dL), </span><span lang="EN-GB">aspartate aminotransferase (AST; U/L), </span><span>total</span><span> calcium (Ca<sup>2+</sup>; mg/dL), </span><span lang="EN-GB">creatine kinase (CK; U/L), and potassium (K<sup>+</sup>; mmol/L),</span><span lang="EN-GB"> </span><span>affected the nature of surface temperature change following capture, as assessed by change in T<sub>EYE</sub>. </span></p> |
| title | Data for: Arctic seabirds exposed to acute stress display state- and environment-dependent patterns of surface temperature change, independent of mercury contamination |
| topic | Body surface temperature infrared thermal imagery global change interactive effects Alle alle Arctic seabirds state-dependency |
| url | https://doi.org/10.5281/zenodo.17561347 |