Hierarchical statistical techniques are necessary to draw reliable conclusions from analysis of isolated

Markus B Sikkel1,2, Darrel P Francis1, James Howard1

  • 1Myocardial Function Section, Fourth Floor, Imperial Centre for Translational and Experimental Medicine, National Heart and Lung Institute, Imperial College London, Hammersmith Campus, Du Cane Road, London W12 0NN, UK.

Cardiovascular Research
|October 11, 2017
PubMed

Insights

Post-myocardial infarction heart failure (HF) studies require advanced statistical methods. Hierarchical testing is crucial for accurate analysis of calcium (Ca2+) fluxes in cardiomyocytes, preventing erroneous conclusions from standard statistical approaches.

Area of Science:

  • Cardiology
  • Biophysics
  • Statistical Modeling

Background:

  • Post-myocardial infarction (MI) heart failure (HF) is known to alter cardiomyocyte calcium (Ca2+) handling.
  • Existing research presents conflicting findings regarding the direction of these Ca2+ flux changes.
  • Common statistical methods often assume data independence, which may not hold true for biological samples from the same organism.

Purpose of the Study:

  • To investigate whether the assumption of statistical independence in analyzing cardiomyocyte Ca2+ fluxes can lead to erroneous conclusions in the context of post-MI heart failure.
  • To compare the results of standard statistical analyses with those obtained using hierarchical statistical techniques that account for data clustering.

Main Methods:

  • Calcium (Ca2+) transients were measured using Fura-2AM.
  • Calcium (Ca2+) sparks were measured using Fluo-4AM.
  • Data were analyzed using both standard statistical methods (assuming independence) and hierarchical statistical methodologies.

Main Results:

  • Significant hierarchical clustering was detected within the data, both at the cellular and rat levels.
  • Standard statistical methods, by underestimating standard errors and P values, led to false conclusions about Ca2+ transient and spark properties in HF.
  • Erroneous findings included prolonged time to 50% peak transient amplitude, increased spark amplitude, and reduced spark duration in HF models.

Conclusions:

  • The clustering of Ca2+ flux data in cardiomyocytes is substantial enough to invalidate standard statistical approaches that assume independence.
  • Hierarchical statistical methodologies are essential for obtaining reliable and accurate conclusions in studies of Ca2+ handling.
  • The study provides accessible tools to facilitate the implementation of these necessary hierarchical analyses.
Abstract

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