Literature DB >> 35129046

Thermophysical and mechanical properties of biological tissues as a function of temperature: a systematic literature review.

Leonardo Bianchi1, Fabiana Cavarzan1, Lucia Ciampitti1, Matteo Cremonesi1, Francesca Grilli1, Paola Saccomandi1.   

Abstract

BACKGROUND: Detailed information on the temperature dependence of tissue thermophysical and mechanical properties is pivotal for the optimal implementation of mathematical models and simulation-based tools for the pre-planning of thermal ablation therapies. These models require in-depth knowledge of the temperature sensitivity of these properties and other influential terms (e.g., blood perfusion and metabolic heat) to maximize the treatment prediction outcome.
METHODOLOGY: A systematic literature review of experimental trials investigating thermophysical and mechanical properties of biological media, as well as blood perfusion and metabolic heat, as a function of temperature in hyperthermic and ablative thermal range, was conducted up to June 2021.
RESULTS: A total of 61 articles was selected, thus enabling a comprehensive overview of the temperature dependence of thermophysical properties (i.e. thermal conductivity, specific heat, volumetric heat capacity, density, thermal diffusivity), and mechanical properties (shear, elastic, storage, loss and complex moduli, loss factor, stiffness) along with the principal measurement techniques. The reviewed studies considered different tissues, e.g., liver, fat, cartilage, brain, myocardium, muscle, bone, skin, pancreas tissues, and also some tumorous tissues.
CONCLUSIONS: The thermophysical properties of soft tissues appear rather constant until 90 °C, with slight differences ascribable to tissues characteristics and measurement methods. Conversely, the information on mechanical properties is heterogeneous because most of the articles investigated different types of properties in different biological tissues. Furthermore, most of the experiments were conducted ex vivo; only a small percentage concerned in vivo studies. Limited recent information about the temperature dependence of metabolic heat and blood perfusion was observed.

Entities:  

Keywords:  Thermal properties; biological tissue properties; mechanical properties; perfusion; thermal therapy

Mesh:

Year:  2022        PMID: 35129046     DOI: 10.1080/02656736.2022.2028908

Source DB:  PubMed          Journal:  Int J Hyperthermia        ISSN: 0265-6736            Impact factor:   3.914


  4 in total

1.  Estimation of porcine pancreas optical properties in the 600-1100 nm wavelength range for light-based therapies.

Authors:  Pranav Lanka; Leonardo Bianchi; Andrea Farina; Martina De Landro; Antonio Pifferi; Paola Saccomandi
Journal:  Sci Rep       Date:  2022-08-22       Impact factor: 4.996

2.  Intracellular Heat Transfer and Thermal Property Revealed by Kilohertz Temperature Imaging with a Genetically Encoded Nanothermometer.

Authors:  Kai Lu; Tetsuichi Wazawa; Joe Sakamoto; Cong Quang Vu; Masahiro Nakano; Yasuhiro Kamei; Takeharu Nagai
Journal:  Nano Lett       Date:  2022-07-06       Impact factor: 12.262

3.  Survival benefit of thermal ablation therapy for patients with stage II-III non-small cell lung cancer: A propensity-matched analysis.

Authors:  Wei-Yu Yang; Yu He; Qikang Hu; Muyun Peng; Zhe Zhang; Shouzhi Xie; Fenglei Yu
Journal:  Front Oncol       Date:  2022-08-23       Impact factor: 5.738

4.  Experimental Evaluation of Radiation Response and Thermal Properties of NPs-Loaded Tissues-Mimicking Phantoms.

Authors:  Somayeh Asadi; Sanzhar Korganbayev; Wujun Xu; Ana Katrina Mapanao; Valerio Voliani; Vesa-Pekka Lehto; Paola Saccomandi
Journal:  Nanomaterials (Basel)       Date:  2022-03-13       Impact factor: 5.076

  4 in total

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