Use of sulphur and carbon stable-isotope composition of fish scales and muscles to identify the origin of fish
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|Jul 2012References
- Blanco, A., Deudero, S., & Box, A. (2009). Muscle and scale isotopic offset of three fish species in the Mediterranean Sea:and(15), 2321-2328.
- Charles, K., Roussel, J.-M., & Cunjak, R.A. (2004). Estimating the contribution of sympatric of anadromous and freshwater resident brown trout to juvenile production.(2), 185-191. DOI: 10.1071/MF03173.
- Ciancio, J.E., Pascual, M.A., Lancelotti, J., Riva Rossi, C., & Botto, F. (2005). Natural colonization and establishment of a Chinook salmon,, population in the Santa Cruz River, an Atlantic basin of Patagonia.(2), 219-227.
- Ciancio, J. E., Pascual, M. A., Botto, F., Amaya-Santi, M., O'Neal, S., Riva Rossi, C., & Iribarne, O. (2008). Stable isotope profiles of partially migratory salmonid populations in Atlantic rivers of Patagonia.(7), 1708-1719. DOI: 10.1111/j.1095-8649.2008.01846.x.
- Dempson, J.B., & Power, M. (2004). Use of stable isotopes to distinguish farmed from wild Atlantic salmon,(3): 176-184. DOI: 10.1111/j.1600-0633.2004.00057.x.
- Fry, B. (2002). Stable isotopic indicators of habitat use by Mississippi River fish.(4) 676-685.
- Fry, B. (2006). Stable Isotope Ecology. New York: Springer.
- Halas, S., & Szaran, J. (2001). Improved thermal decomposition of sulfates to SOand mass spectrometric determination of δS IAEA SO-5 and NBS-127 sulfate standards.(17), 1618-1620.
- Halas, S., & Szaran, J. (2004). Use of CuO-NaPOmixtures for SOextraction from BaSOfor sulfur isotope analysis.(3), 229-231.
- Hobson, K. A. (1999). Tracing origins and migration of wildlife using stable isotopes: a review.(3), 314-326.
- Hutchinson, J. J., & Trueman, C. N. (2006). Stable isotope analyses of collagen in fish scales: limitation set by scale architecture.(6), 1874-1880. DOI:10.1111/j.1095-8649.2006.01234.x.
- Jardine, T.D, Cartwright, D.F, Dietrich, J.P., & Cunjak, R.A. (2005a). Resource use by salmonids in riverine, lacustrine and marine environments: Evidence from stable isotope analysis.(3). 309-319.
- Jardine, T.D., Gray, M.A., McWilliam, S.M., & Cunjak, R.A. (2005b). Stable Isotope Variability in Tissues of Temperate Stream Fishes.(5), 1103-1110. DOI: 10.1577/T04-124.1.
- Kennedy, B.P., Chamberlain, C.P., Blum, J.D., Nislow, K.H., & Folt, C.L. (2005). Comparing naturally occurring stable isotopes of nitrogen, carbon, and strontium as markers for the rearing locations of Atlantic salmon ()(1), 48-57.
- McCarthy, I.D, & Waldron, S. (2000). Identifying migratoryusing carbon and nitrogen stable isotope ratios.15), 1325-1331.
- Murchie, K.J., & Power, M. (2004). Growth- and feeding-related isotopic dilution and enrichment patterns in young yellow perch ().(1), 41-54.
- Sinnatamby, R.N., Dempson, J.B., & Power, M. (2008). A comparison of muscle- and scale-derived δC and δN across three life-history stage of Atlantic salmon(18), 2773-2778.
- Solomon, C.T., Carpenter, S.,R., Rusak, J.A., & Zanden, J.V. (2008). Long-term variation in isotopic baselines and implications for estimating consumer trophic niches.(10), 2191-2200.
- Trembaczowski, A., & Niezgoda, H. (2011). Relationship between isotope composition of sulphur in sulphate dissolved in river water and sulphur extracted from fish scales,(2), 189-213.
Language: English
Page range: 33 - 37
Published on: Jul 4, 2012
Published by: Mineralogical Society of Poland
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
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© 2012 Andrzej Trembaczowski, published by Mineralogical Society of Poland
This work is licensed under the Creative Commons License.