Abstract
We present an application of wavelet-based Information Theory quantifiers (Normalized Total Shannon Entropy, MPR-Statistical Complexity and Entropy-Complexity plane) on red blood cells membrane viscoelasticity characterization. These quantifiers exhibit important localization advantages provided by the Wavelet Theory. The present approach produces a clear characterization of this dynamical system, finding out an evident manifestation of a random process on the red cell samples of healthy individuals, and its sharp reduction of randomness on analyzing a human haematological disease, such as β-thalassaemia minor.
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CITATION STYLE
Korol, A. M., D’Arrigo, M., Foresto, P., Pérez, S., Martín, M. T., & Rosso, O. A. (2010). Preliminary Characterization of Erythrocytes Deformability on the Entropy-Complexity Plane. The Open Medical Informatics Journal, 4(1), 164–170. https://doi.org/10.2174/1874431101004010164
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