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首页> 外文期刊>Physics in medicine and biology. >Radiation-force-based estimation of acoustic attenuation using harmonic motion imaging (HMI) in phantoms and in vitro livers before and after HIFU ablation
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Radiation-force-based estimation of acoustic attenuation using harmonic motion imaging (HMI) in phantoms and in vitro livers before and after HIFU ablation

机译:HIFU消融前后在幻影和体外肝脏中使用谐波运动成像(HMI)基于辐射力的声衰减估算

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摘要

Acoustic attenuation represents the energy loss of the propagating wave through biological tissues and plays a significant role in both therapeutic and diagnostic ultrasound applications. Estimation of acoustic attenuation remains challenging but critical for tissue characterization. In this study, an attenuation estimation approach was developed using the radiation-force-based method of harmonic motion imaging (HMI). 2D tissue displacement maps were acquired by moving the transducer in a raster-scan format. A linear regression model was applied on the logarithm of the HMI displacements at different depths in order to estimate the acoustic attenuation. Commercially available phantoms with known attenuations (n = 5) and in vitro canine livers (n = 3) were tested, as well as HIFU lesions in in vitro canine livers (n = 5). Results demonstrated that attenuations obtained from the phantoms showed a good correlation (R-2 = 0.976) with the independently obtained values reported by the manufacturer with an estimation error (compared to the values independently measured) varying within the range of 15-35%. The estimated attenuation in the in vitro canine livers was equal to 0.32 +/- 0.03 dB cm(-1) MHz(-1), which is in good agreement with the existing literature. The attenuation in HIFU lesions was found to be higher (0.58 +/- 0.06 dB cm(-1) MHz(-1)) than that in normal tissues, also in agreement with the results from previous publications. Future potential applications of the proposed method include estimation of attenuation in pathological tissues before and after thermal ablation.
机译:声衰减代表传播波通过生物组织的能量损失,并且在治疗和诊断超声应用中都起着重要作用。声衰减的估计仍然具有挑战性,但对于组织表征至关重要。在这项研究中,开发了一种使用基于辐射力的谐波运动成像(HMI)方法的衰减估计方法。通过以光栅扫描格式移动换能器来获取2D组织位移图。对不同深度的HMI位移的对数应用线性回归模型,以估计声衰减。测试了已知衰减的市售体模(n = 5)和体外犬肝(n = 3),以及体外犬肝HIFU病变(n = 5)。结果表明,从幻像获得的衰减与制造商报告的独立获得的值显示出良好的相关性(R-2 = 0.976),并且估计误差(与独立测量的值相比)在15%至35%的范围内变化。在体外犬肝中估计的衰减等于0.32 +/- 0.03 dB cm(-1)MHz(-1),与现有文献非常吻合。发现HIFU病变的衰减比正常组织的衰减更高(0.58 +/- 0.06 dB cm(-1)MHz(-1)),这也与以前的出版物的结果一致。所提出的方法的未来潜在应用包括估计在热消融之前和之后病理组织的衰减。

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