Ultrasonic Measurement of Temperature Rise in Breast Cyst and in Neighbouring Tissues as a Method of Tissue Differentiation

Author:

Gambin Barbara,Byra Michał,Kruglenko Eleonora,Doubrovina Olga,Nowicki Andrzej

Abstract

Abstract Texture of ultrasound images contain information about the properties of examined tissues. The analysis of statistical properties of backscattered ultrasonic echoes has been recently successfully applied to differentiate healthy breast tissue from the benign and malignant lesions. We propose a novel procedure of tissue characterization based on acquiring backscattered echoes from the heated breast. We have proved that the temperature increase inside the breast modifies the intensity, spectrum of the backscattered signals and the probability density function of envelope samples. We discuss the differences in probability density functions in two types of tissue regions, e.g. cysts and the surrounding glandular tissue regions. Independently, Pennes bioheat equation in heterogeneous breast tissue was used to describe the heating process. We applied the finite element method to solve this equation. Results have been compared with the ultrasonic predictions of the temperature distribution. The results confirm the possibility of distinguishing the differences in thermal and acoustical properties of breast cyst and surrounding glandular tissues.

Publisher

Walter de Gruyter GmbH

Subject

Acoustics and Ultrasonics

Reference8 articles.

1. Thermometry and Ablation Monitoring with Ultrasound;LewisM;Int J,2015

2. An Artificial Immune System - Based Support Vector Machine Approach for Classifying Ultrasound Breast Tumor Images Imaging;WuW;Digit,2015

3. Classification of breast lesions using segmented quantitative ultrasound maps of homodyned K distribution parameters;ByraM;Med Phys,2016

4. Differentiation of normal tissue and tissue lesions using statistical properties of backscattered ultrasound in breast in International;NowickiA;Ultrasonics Symposium IEEE,2015

5. Temperature Measurement by Statistical Parameters of Ultrasound Signal Backscattered from Tissue Samples Polonica A;GambinB;Acta Physica,2015

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