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首页> 外文期刊>Ultrasonic Imaging: An International Journal >Ultrasonic noninvasive temperature estimation using echoshift gradient maps: simulation results.
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Ultrasonic noninvasive temperature estimation using echoshift gradient maps: simulation results.

机译:使用回波偏移梯度图的超声无创温度估算:模拟结果。

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摘要

Percutaneous ultrasound-image-guided radiofrequency (rf) ablation is an effective treatment for patients with hepatic malignancies that are excluded from surgical resection due to other complications. However, ablated regions are not clearly differentiated from normal untreated regions using conventional ultrasound imaging due to similar echogenic tissue properties. In this paper, we investigate the statistics that govern the relationship between temperature elevation and the corresponding temperature map obtained from the gradient of the echoshifts obtained using consecutive ultrasound radiofrequency signals. A relationship derived using experimental data on the sound speed and tissue expansion variations measured on canine liver tissue samples at different elevated temperatures is utilized to generate ultrasound radiofrequency simulated data. The simulated data set is then utilized to statistically estimate the accuracy and precision of the temperature distributions obtained. The results show that temperature increases between 37 and 67 degrees C can be estimated with standard deviations of +/- 3 degrees C. Our results also indicate that the correlation coefficient between consecutive radiofrequency signals should be greater than 0.85 to obtain accurate temperature estimates.
机译:经皮超声图像引导的射频(rf)消融术对于因其他并发症而被排除在手术切除范围之外的肝恶性肿瘤患者是一种有效的治疗方法。然而,由于相似的回声组织特性,使用常规超声成像不能将消融区域与正常未治疗区域区分开。在本文中,我们研究了控制温度升高与相应温度图之间关系的统计数据,该温度图是从使用连续超声射频信号获得的回波偏移的梯度获得的。利用关于在不同升高的温度下在犬肝组织样品上测得的声速和组织扩张变化的实验数据得出的关系被用于生成超声射频模拟数据。然后将模拟数据集用于统计估计获得的温度分布的准确性和精确性。结果表明,可以估计温度在37至67摄氏度之间,标准偏差为+/- 3摄氏度。我们的结果还表明,连续射频信号之间的相关系数应大于0.85,以获得准确的温度估算值。

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