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利用脉冲反转为 HIFU 治疗进行实时监测。

Real-time monitoring of HIFU treatment using pulse inversion.

机构信息

Medical Solutions Institute, Sogang Institutes of Advanced Technology, Sogang University, Seoul, Korea.

出版信息

Phys Med Biol. 2013 Aug 7;58(15):5333-50. doi: 10.1088/0031-9155/58/15/5333. Epub 2013 Jul 17.

Abstract

Ultrasound (US) imaging is widely used for the real-time guidance of high-intensity focused ultrasound (HIFU) treatment at a relatively low cost. However, ultrasound image guided HIFU (USgHIFU) is limited in the real-time monitoring of HIFU treatment due to the large amplitude HIFU signals received by the US imaging transducer. The amplitude of the HIFU scattered signal is generally much higher than the amplitude of the pulse-echo signal received by the imaging transducer. This creates an interference pattern obscuring the image of the tissue. As such, it is difficult to monitor lesion location. This paper proposes a real-time monitoring method to be performed concurrently with the HIFU insonation, but without HIFU interference, which allows for the improvement of treatment accuracy and safety in USgHIFU. The proposed method utilizes the physical properties of pulse inversion which is capable of removing the fundamental and odd harmonic components of the HIFU interference. Therefore, it is possible to secure the desired spectral bandwidth used to construct US images for HIFU treatment monitoring. The performance of the proposed method was evaluated through experiments with both a bovine serum albumin phantom and a chicken breast. The results demonstrated that the proposed method is capable of providing interference-free US images, thus successfully allowing for US imaging during HIFU treatment.

摘要

超声(US)成像广泛用于以相对较低的成本实时引导高强度聚焦超声(HIFU)治疗。然而,由于超声成像换能器接收到的 HIFU 信号幅度较大,超声图像引导的 HIFU(USgHIFU)在实时监测 HIFU 治疗方面受到限制。HIFU 散射信号的幅度通常远高于成像换能器接收到的脉冲回波信号的幅度。这会产生干扰图案,使组织图像变得模糊。因此,很难监测病变位置。本文提出了一种实时监测方法,与 HIFU 照射同时进行,但不会受到 HIFU 干扰,从而可以提高 USgHIFU 治疗的准确性和安全性。所提出的方法利用脉冲反相的物理特性,该特性能够去除 HIFU 干扰的基波和奇次谐波分量。因此,可以确保用于构建 HIFU 治疗监测的 US 图像的所需频谱带宽。通过使用牛血清白蛋白模型和鸡胸肉进行的实验评估了该方法的性能。结果表明,该方法能够提供无干扰的 US 图像,从而成功地允许在 HIFU 治疗期间进行 US 成像。

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