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Simple fast noninvasive technique for measuring brachial wall mechanics during flow mediated vasodilatation analysis

机译:在流介导的血管舒张分析过程中测量臂壁力学的简单快速无创技术

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Measurement of flow-mediated vasodilatation (FMD) in brachial and other conduit arteries has become a common method to asses the status of endothelial function in vivo. In spite of the direct relationship between the arterial wall multi-component strains and FMD responses, direct measurement of wall strain tensor due to FMD has not yet been reported in the literature. In this work, a noninvasive direct ultrasound-based strain tensor measuring (STM) technique is presented to assess changes in the mechanical parameters of the vascular wall during FMD. The STM technique utilizes only sequences of B-mode ultrasound images, and starts with segmenting a region of interest within the artery and providing the acquisition parameters. Then a block matching technique is employed to measure the frame to frame local velocities. Displacements, diameter change, multi-component strain tensor and strain rates are then calculated by integrating or differentiating velocity components. The accuracy of the STM algorithm was assessed using a phantom study, and was further validated using in vivo data from human subjects. Results indicate the validity and versatility of the STM algorithm, and describe how parameters other than the diameter change are sensitive to pre- and post-occlusion, which can then be used for accurate assessment of atherosclerosis.
机译:肱动脉和其他导管动脉中血流介导的血管舒张(FMD)的测量已成为评估体内内皮功能状态的常用方法。尽管动脉壁多组分应变与FMD响应之间存在直接关系,但尚未有文献报道由FMD引起的壁应变张量的直接测量。在这项工作中,提出了一种基于超声的无创直接超声应变张量测量(STM)技术,以评估FMD期间血管壁力学参数的变化。 STM技术仅利用B模式超声图像序列,并首先在动脉内分割感兴趣区域并提供采集参数。然后,采用块匹配技术来测量帧到帧的局部速度。然后,通过积分或微分速度分量来计算位移,直径变化,多分量应变张量和应变率。 STM算法的准确性是通过幻像研究评估的,并使用来自人类受试者的体内数据进一步进行了验证。结果表明了STM算法的有效性和通用性,并描述了除直径变化以外的其他参数如何对闭塞前后敏感,然后可以将其用于动脉粥样硬化的准确评估。

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