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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Detection of lumen-intima interface of posterior wall for measurement of elasticity of the human carotid artery
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Detection of lumen-intima interface of posterior wall for measurement of elasticity of the human carotid artery

机译:检测后壁腔 - 内膜接口测量人类颈动脉弹性

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In our series of studies on noninvasive assessment of the regional elasticity of the arterial wall, the displacement gradient (change in thickness) of the arterial wall caused by the heartbeat was measured by the phased tracking method. Because the displacement gradient corresponds to the strain due to the change in blood pressure, the elasticity can be evaluated from the displacement gradient of the arterial wall and the blood pressure, which are noninvasively measured at the upper arm. In the measurement of the elasticity of the arterial wall by our method, the region in which the elastic modulus is estimated must be assigned beforehand; currently, the lumen-intima boundary of the arterial wall is manually determined by the operator. For the real-time measurement of the elasticity of the arterial wall, a fast, automated method is necessary for detection of the boundary. In this paper, a cost function is proposed for differentiation of the arterial wall from the lumen. The proposed cost function was applied to ultrasound data, which were noninvasively obtained for five human carotid arteries. In comparison with the case of detection using only the amplitude of the echo, the root mean square error between the automatically detected lumen-intima boundary and the manually assigned boundary was significantly improved by using the proposed cost function. Furthermore, the lumen- intima boundary was automatically detected in a short period. Such a method is required for real-time measurement of the elasticity of the arterial wall, though detection of the outer boundary of the adventitia, which is not described in this paper, is also necessary to realize real-time elasticity measurement by our method.
机译:在我们的关于动脉壁的区域弹性的非侵入性评估的一系列研究中,通过分阶段的跟踪方法测量由心跳引起的动脉壁的位移梯度(厚度变化)。由于位移梯度对应于由于血压的变化而对应于菌株,所以可以从动脉壁的位移梯度和血压评估弹性,因为在上臂上无血压测量。在通过我们的方法测量动脉壁的弹性中,必须预先分配估计弹性模量的区域;目前,动脉壁的腔 - 内部边界由操作员手动确定。对于动脉壁弹性的实时测量,需要快速,自动化的方法来检测边界。在本文中,提出了一种成本函数,用于将动脉壁与腔中的分化分化。所提出的成本函数应用于超声数据,这对于五个人类颈动脉进行非侵略性地获得。与仅使用回声的幅度的检测情况相比,通过使用所提出的成本函数,自动检测到的腔 - 内部边界和手动分配边界之间的根均方误差显着提高。此外,在短时间内自动检测到腔内边界。这种方法是所需的实时测量动脉壁的弹性的实时测量,但是在本文中未描述的去世的外边界,也需要通过我们的方法实现实时弹性测量。

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