evaluation of soft tissue sarcoma tumors electrical conductivity anisotropy using diffusion tensor imaging for numerical modeling on electroporation
Authors
abstract
introduction: there is many ways to assessing the electrical conductivity anisotropy of a tumor. applying the values of tissue electrical conductivity anisotropy is crucial in numerical modeling of the electric and thermal field distribution in electroporation treatments. this study aims to calculate the tissues electrical conductivity anisotropy in patients with sarcoma tumors using diffusion tensor imaging technique. materials and method: a total of 3 subjects were involved in this study. all of patients had clinically apparent sarcoma tumors at the extremities. the t1, t2 and dti images were performed using a 3-tesla multi-coil, multi-channel mri system. the fractional anisotropy (fa) maps were performed using the fsl (fmri software library) software regarding the dti images. the 3d matrix of the fa maps of each area (tumor, normal soft tissue and bone/s) was reconstructed and the anisotropy matrix was calculated regarding to the fa values. result: the mean fa values in direction of main axis in sarcoma tumors were ranged between 0.475–0.690. with assumption of isotropy of the electrical conductivity, the fa value of electrical conductivity at each x, y and z coordinate axes would be equal to 0.577. the gathered results showed that there is a mean error band of 20% in electrical conductivity, if the electrical conductivity anisotropy not concluded at the calculations. the comparison of fa values showed that there is a significant statistical difference between the mean fa value of tumor and normal soft tissues (p< 0.05). conclusion: dti is a feasible technique for the assessment of electrical conductivity anisotropy of tissues. it is crucial to quantify the electrical conductivity anisotropy data of tissues for numerical modeling of electroporation treatments.
similar resources
Evaluation of Soft Tissue Sarcoma Tumors Electrical Conductivity Anisotropy Using Diffusion Tensor Imaging for Numerical Modeling on Electroporation
Introduction: There is many ways to assessing the electrical conductivity anisotropyof a tumor. Applying the values of tissue electrical conductivity anisotropyis crucial in numerical modeling of the electric and thermal field distribution in electroporationtreatments. This study aims to calculate the tissues electrical conductivityanisotropy in patients with sarcoma tumors using diffusion tens...
full textEvaluation of Soft Tissue Sarcoma Tumors Electrical Conductivity Anisotropy Using Diffusion Tensor Imaging for Numerical Modeling on Electroporation
INTRODUCTION There is many ways to assessing the electrical conductivity anisotropy of a tumor. Applying the values of tissue electrical conductivity anisotropy is crucial in numerical modeling of the electric and thermal field distribution in electroporation treatments. This study aims to calculate the tissues electrical conductivity anisotropy in patients with sarcoma tumors using diffusion t...
full textcharacterization of soft tissue tumors by diffusion-weighted imaging
conclusion our preliminary results have shown that although there is some overlap between benign and malignant tumors, adding dwi, mr imaging to routine soft tissue tumor protocols may improve diagnostic accuracy. results there was only one patient with a malignant cystic tumor and was not included in the statistical analysis. the median adc values of benign and malignant tumors were 2.31 ± 1.2...
full textElectrical modeling of the influence of medium conductivity on electroporation.
Electroporation is the phenomenon in which cell membrane permeability is increased by exposing the cell to short high electric field pulses. Experimental data show that the amount of permeabilization depends on the conductivity of the extracellular medium. If medium conductivity decreases then it is necessary to deliver a pulse of larger field amplitude in order to achieve the same effect. Mode...
full textEvaluation of Diffusion Anisotropy and Diffusion Shape in Grading of Glial Tumors
Background: The most common primary tumors of brain are gliomas. Grading of tumor is vital for designing proper treatment plans. The gold standard choice to determine the grade of glial tumor is biopsy which is an invasive method.Objective: In this study, we try to investigate the role of fractional anisotropy (diffusion anisotropy) and linear anisotropy ...
full textCharacterization of Soft Tissue Tumors by Diffusion-Weighted Imaging
BACKGROUND Diffusion-weighted imaging (DWI) is a noninvasive method for investigation of tumor histological content. It has been applied for some musculoskeletal tumors and reported to be useful. OBJECTIVES The aim of the present study was to prospectively evaluate the apparent diffusion coefficient (ADC) values of benign and malignant soft tissue tumors and to determine if ADC can help diffe...
full textMy Resources
Save resource for easier access later
Journal title:
journal of biomedical physics and engineeringجلد ۶، شماره ۲ Jun، صفحات ۰-۰
Hosted on Doprax cloud platform doprax.com
copyright © 2015-2023