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May 1, 20260 citations

Does mill-grinding affect stable C and N isotopic analysis of animal tissues?

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PBParide BalzaniUniversity of South Bohemia in České BudějoviceTMTravis MeadorUniversity of South Bohemia in České Budějovice

Key Points

  • This research investigates whether mill-grinding affects isotopic analysis of carbon and nitrogen in animal tissues.
  • Four grinding methods were compared for their impact on stable isotopic analysis.
  • Plastic abrasion was estimated during the grinding process.
  • A graphical recommendation was developed for optimal sample size to minimize contamination.
  • Ball milling does not affect stable isotope ratios in approximately 50 mg animal muscle samples.
  • Plastic contamination from grinding was measured at 1.65 mg, indicating minimal impact.
  • Recommendations were provided for sample preparation to avoid analytical bias.

Abstract

C were found among the four grinding methods. We estimated plastic abrasion to be 1.65 mg. Our results show that the use of ball milling for homogenising samples for C and N stable isotope analysis does not affect animal muscle samples with a commonly used amount of material (∼50 mg). Finally, we provided a graphical recommendation on the minimum amount of sample to be ground by milling without incurring in plastic contamination bias.

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Cite This Study

Balzani et al. (2026) studied this question.

synapsesocial.com/papers/69f442fc967e944ac55666aahttps://doi.org/10.1080/10256016.2026.2662051
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