Open Access Library Journal

Open Access Library Journal

ISSN Print: 2333-9705
ISSN Online: 2333-9721
www.scirp.org/journal/oalibj
E-mail: service@oalib.com
"Dielectric Properties of Human Normal and Malignant Liver Tissue: A Non-Equilibrium Thermodynamics Approach"
written by Francesco Farsaci, Annamaria Russo, Silvana Ficarra, Ester Tellone,
published by Open Access Library Journal, Vol.2 No.3, 2015
has been cited by the following article(s):
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[2] Computational Modeling of Microwave Tumor Ablation
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[3] Computational Modeling of Microwave Tumor Ablation. Bioengineering 2022, 9, 656
Radjenovic, N Boškovic, 2022
[4] Thermodynamic Characterization of Red Blood Cell Suspension and Band 3 Protein Oxy-Deoxygenating Functionality: Comparative Study
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[5] Finite Element Analysis of the Microwave Ablation Method for Enhanced Lung Cancer Treatment
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[8] Dielectric spectroscopy signature for cancer diagnosis: A review
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[9] Thermodynamics Characterization of Lung Carcinoma, Entropic Study and Metabolic Correlations
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[10] A new model with internal variables for theoretical thermodynamic characterization of hemoglobin: Entropy determination and comparative study
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[11] A New Model for Thermodynamic Characterization of Hemoglobin
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[12] Electromagnetic waves propagation in normal and pathological hemoglobins: Thermodynamic comparative study of the influence of the relative macromolecular …
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[13] Thermodynamic characterization of RBCs highlights correlations between different hemoglobin types and Band 3 interactions
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[14] Expanding the repertoire of dielectric fractional models: a comprehensive development and functional applications to predict metabolic alterations in …
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[15] Is a dangerous blood clot formation a reversible process? Introduction of new characteristic parameter for thermodynamic clot blood characterization: Possible …
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[16] Molecular characterization of a peculiar blood clot fluidification by theoretical thermodynamic models and entropy production study
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[17] Phenomenological approach on electromagnetic waves propagation in normal and diabetic blood, influence of the relative macromolecular structures
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[18] Expanding the repertoire of dielectric fractional models: a comprehensive development and functional applications to predict metabolic alterations in experimentally …
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[19] Rheological properties of human blood in the network of non-equilibrium thermodynamic with internal variables by means of ultrasound wave perturbation
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[20] A New Non-Equilibrium Thermodynamic Fractional Visco-Inelastic Model to Predict Experimentally Inaccessible Processes and Investigate Pathophysiological …
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[21] A new non-equilibrium thermodynamic fractional visco-inelastic model to predict experimentally inaccessible processes and investigate pathophysiological cellular …
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[22] On evaluation of electric conductivity by mean of non equilibrium thermodynamic approach with internal variables. An application to human erythrocyte suspension for …
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[23] Evaluation of the human blood entropy production: a new thermodynamic approach
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