Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:5598-5601. doi: 10.1109/EMBC46164.2021.9631078.
Measurement of arterial wall thickness is an integral component of vascular properties and health assessment. State-of-the-art automated or semi-automated techniques are majorly applicable to B-mode images and are not available for entry-level in-expensive devices. Considering this, we have earlier developed and validated an image-free (A-mode) ultrasound device, ARTSENS for the evaluation of vascular properties. In this work, we present a novel gaussian-mixture modeling-based method to measure arterial wall thickness from A-mode frames, which is readily deployable to the existing technology. The method's performance was assessed based on systematic simulations and controlled phantom experiments. Simulations revealed that the method could be confidently applied to A-mode frames with above-moderate SNR (>15 dB). When applied to A-mode frames acquired from the flow-phantom setup (SNR > 25 dB), the mean error was limited to (2 ± 1%), and RMSE was 19 μm, on comparison with B-mode measurements. The measured and reference wall thickness strongly agreed with each other (r = 0.88, insignificant mean bias = 7 μm, p = 0.16). The proposed method was capable of performing real-time measurements.
动脉壁厚度的测量是血管特性和健康评估的一个组成部分。最先进的自动或半自动技术主要适用于 B 模式图像,而对于入门级的经济型设备则不可用。考虑到这一点,我们之前开发并验证了一种无需图像(A 模式)的超声设备 ARTSENS,用于评估血管特性。在这项工作中,我们提出了一种新的基于高斯混合建模的方法,用于从 A 模式帧中测量动脉壁厚度,该方法可以很容易地部署到现有技术中。该方法的性能基于系统模拟和受控的体模实验进行了评估。模拟表明,该方法可以自信地应用于具有中等以上 SNR(> 15 dB)的 A 模式帧。当应用于来自流量体模设置的 A 模式帧(SNR > 25 dB)时,与 B 模式测量相比,平均误差限制在(2 ± 1%)以内,RMSE 为 19 μm。测量的和参考的壁厚度彼此之间强烈一致(r = 0.88,无显著平均偏差 = 7 μm,p = 0.16)。所提出的方法能够进行实时测量。