2012•Unpublished venueRequires access

Ultrasound heating characteristic evaluation for change of ultrasound contrast agent construction ratio and ultrasound input intensity

Jin-Su Kim, Ju Young Kim, Hyun Du Jung, Jung Hwa Min, Heung-Ho Choi, Si-Cheol Noh

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Abstract

High intensity focused ultrasound (HIFU) is method of cancer therapy in which focused ultrasound is applied to, patients with tissue necrosis. However, temperature control is a difficult issue in ultrasound irradiation. To address this challenge ultrasound contrast agents (UCAs) that can be used to control the heating characteristics of ultrasound irradiation have been reported in the literature. In this study, a UCA was fabricated, and an optimum composition ratio offered an excellent heating effect was selected. In addition, heating effect of the UCA with optimum composition ratio was confirmed by changes in the ultrasound irradiation intensity.

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What this paper is about

High intensity focused ultrasound (HIFU) is method of cancer therapy in which focused ultrasound is applied to, patients with tissue necrosis. However, temperature control is a difficult issue in ultrasound irradiation. To address this challenge ultrasound contrast agents (UCAs) that can be used to control the heating characteristics of ultrasound irradiation have been reported in the literature. In this study, a UCA was fabricated, and an optimum composition ratio offered an excellent heating effect was selected. In addition, heating effect of the UCA with optimum composition ratio was confirmed by changes in the ultrasound irradiation intensity.

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Available abstract

High intensity focused ultrasound (HIFU) is method of cancer therapy in which focused ultrasound is applied to, patients with tissue necrosis. However, temperature control is a difficult issue in ultrasound irradiation. To address this challenge ultrasound contrast agents (UCAs) that can be used to control the heating characteristics of ultrasound irradiation have been reported in the literature. In this study, a UCA was fabricated, and an optimum composition ratio offered an excellent heating effect was selected. In addition, heating effect of the UCA with optimum composition ratio was confirmed by changes in the ultrasound irradiation intensity.

Key concepts: Ultrasound, Intensity (physics), Materials science, High-intensity focused ultrasound, Ultrasound treatment, Biomedical engineering, Contrast (vision), Contrast-enhanced ultrasound

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