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      An Appraisal of the Use of Hydrogen-Isotope Methods to Delineate Origins of Migratory Saw-whet Owls in North America

      , , , ,
      The Condor
      University of California Press

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          Links between worlds: unraveling migratory connectivity

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            From birds to butterflies: animal movement patterns and stable isotopes.

            Establishing patterns of movement of wild animals is crucial for our understanding of their ecology, life history and behavior, and is a prerequisite for their effective conservation. Advances in the use of stable isotope markers make it possible to track a diversity of animal species in a variety of habitats. This approach is revolutionizing the way in which we make connections between phases of the annual cycle of migratory animals. However, researchers must exercise care in their application of isotopic methods. Here, we review stable isotope patterns in nature and discuss recent tracking applications in a range of taxa. To aid in the interpretation and design of effective and insightful isotope movement studies, we discuss a series of key issues and assumptions. This exciting field will advance rapidly if researchers consider these aspects of study design and interpretation carefully.
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              Comparative equilibration and online technique for determination of non-exchangeable hydrogen of keratins for use in animal migration studies.

              Stable hydrogen-isotope ratios (deltaD) of keratin provide a novel means for tracking geographical movements of birds and other species. Here we describe a rapid, low cost, analytical approach to facilitate online continuous-flow isotope-ratio mass spectrometry (CF-IRMS) deltaD analyses of keratins (120-160 samples per day) through the use of calibrated keratin working standards and "comparative equilibration" to correct for the effects of moisture on exchangeable hydrogen. It is anticipated that this analytical approach and CF-IRMS will greatly aid in providing cost effective and directly comparable deltaD results on keratins and feathers among various laboratories and researchers involved in animal migration studies.
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                Author and article information

                Journal
                The Condor
                The Condor
                University of California Press
                00105422
                1938-5129
                May 2013
                May 2013
                : 115
                : 2
                : 366-374
                Article
                10.1525/cond.2013.120019
                cd2a26cf-6a67-41b3-a2f7-2e74fbe807a4
                © 2013
                History

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