Department of Biomedical Engineering, Tehran University of Medical Sciences, Tehran, Iran.
J Ultrasound Med. 2009 Nov;28(11):1535-47. doi: 10.7863/jum.2009.28.11.1535.
Noninvasive real-time thermal change monitoring of human internal organs can play a critical role in diagnosis and treatment of many disorders, including reperfusion of renal arteries during anticoagulation therapy.
This article focuses on tissue temperature detection using ultrasound velocity changes in different structures and their related speckle shift from their primary locations on high-quality B-mode digital sonography. We evaluated different speckle-tracking techniques and optimized them using appropriate motion estimation methods to determine the best algorithm and parameters.
Performing thermal detection methods on simulated phantoms showed a good correlation between speckle shifts and the ground truth temperature. For the simulated images, average thermal error was 0.5 degrees C with an SD of 0.5 degrees C, where lower errors can be obtained in noiseless (motionless) data. The proposed technique was evaluated on real in vivo cases during surgical occlusion and reopening of the renal segmental artery and showed the potential of the algorithm for observation of internal organ changes using only digital ultrasound systems for diagnosis and therapy.
The adaptive Rood pattern search proved to be the best block-matching technique, whereas the multiresolution Horn-Schunck technique was the best gradient optical flow method. The extracted thermal change during in vivo revascularization therapy is promising. In addition, we present an evaluation of several block-matching and optical flow motion estimation techniques.
非侵入式实时热变化监测可在许多疾病的诊断和治疗中发挥关键作用,包括抗凝治疗期间肾动脉再灌注。
本文重点关注使用不同结构中的超声速度变化以及它们在高质量 B 模式数字超声中的原始位置处的相关斑点移位来检测组织温度。我们评估了不同的斑点跟踪技术,并使用适当的运动估计方法对其进行了优化,以确定最佳算法和参数。
在模拟体模上进行热检测方法显示斑点移位与真实温度之间具有良好的相关性。对于模拟图像,平均热误差为 0.5°C,标准偏差为 0.5°C,在无噪声(无运动)数据中可以获得更低的误差。该技术在肾段动脉手术闭塞和再开放的真实体内病例中进行了评估,表明该算法具有使用仅数字超声系统进行诊断和治疗来观察内部器官变化的潜力。
自适应 Rood 模式搜索被证明是最佳的块匹配技术,而多分辨率 Horn-Schunck 技术是最佳的梯度光流方法。在体内再血管化治疗期间提取的热变化很有前途。此外,我们还对几种块匹配和光流运动估计技术进行了评估。