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首页> 外文期刊>Journal of Therapeutic Ultrasound >Effects of breast structure on high-intensity focused ultrasound focal error
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Effects of breast structure on high-intensity focused ultrasound focal error

机译:乳房结构对高强度聚焦超声聚焦误差的影响

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Background The development of imaging technologies and breast cancer screening allowed early detection of breast cancers. High-intensity focused ultrasound (HIFU) is a non-invasive cancer treatment, but the success of HIFU ablation was depending on the system type, imaging technique, ablation protocol, and patient selection. Therefore, we aimed to determine the relationship between breast tissue structure and focal error during breast cancer HIFU treatment. Methods Numerical simulations of the breast cancer HIFU ablation were performed using digital breast phantoms constructed using the magnetic resonance imaging data obtained from 12 patients. Results The focal shapes were distorted despite breast tissue representing soft tissue. Focal errors are caused by the complex distribution of fibroglandular tissue, and they depend on the target position and the arrangement of the transducer. We demonstrated that the focusing ratio increases with the decrease in the local acoustic inhomogeneity, implying that it may be used as an indicator to reduce the HIFU focal error depending on the breast structure. Conclusions The obtained results demonstrated that the focal error observed during the breast cancer HIFU treatment is highly dependent on the structure of fibroglandular tissue. The optimal arrangement of the transducer to the target can be obtained by minimizing the local acoustic inhomogeneity before the breast cancer HIFU treatment.
机译:背景技术成像技术的发展和乳腺癌的筛查可以早期发现乳腺癌。高强度聚焦超声(HIFU)是一种非侵入性癌症治疗方法,但是HIFU消融的成功取决于系统类型,成像技术,消融方案和患者选择。因此,我们旨在确定乳腺癌HIFU治疗期间乳房组织结构与局灶性错误之间的关系。方法使用数字乳腺体模对乳腺癌HIFU消融进行数值模拟,该体模使用从12位患者获得的磁共振成像数据构建而成。结果尽管乳腺组织代表软组织,但病灶形状仍变形。焦点错误是由纤维腺组织的复杂分布引起的,它们取决于目标位置和换能器的布置。我们证明了聚焦比随局部声学不均匀性的降低而增加,这意味着它可以根据乳房的结构用作降低HIFU聚焦误差的指标。结论所获得的结果表明,在乳腺癌HIFU治疗期间观察到的聚焦误差高度依赖于纤维腺组织的结构。可以通过在乳腺癌HIFU治疗之前最小化局部声不均匀性来获得换能器到目标的最佳布置。

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