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Wave intensity wall analysis: a novel noninvasive method to measure wave intensity

机译:波浪强度墙分析:一种测量波浪强度的新型无创方法

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Wave intensity analysis is a concept providing information about the interaction of the heart and the vascular system. Originally, the technique was invasive. Since then new noninvasive methods have been developed. A recently developed ultrasound technique to estimate tissue motion and deformation is speckle-tracking echocardiography. Speckle tracking-based techniques allow for accurate measurement of movement and deformation variables in the arterial wall in both the radial and the longitudinal direction. The aim of this study was to test if speckle tracking-derived deformation data could be used as input for wave intensity calculations. The new concept was to approximate changes of flow and pressure by deformation changes of the arterial wall in longitudinal and radial directions. Flow changes (dU/dt) were approximated by strain rate (sr, 1/s) of the arterial wall in the longitudinal direction, whereas pressure changes (dP/dt) were approximated by sign reversed strain rate (1/s) in the arterial wall in the radial direction. To validate the new concept, a comparison between the newly developed Wave Intensity Wall Analysis (WIWA) algorithm and a commonly used and validated wave intensity system (SSD-5500, Aloka, Tokyo, Japan) was performed. The studied population consisted of ten healthy individuals (three women, seven men) and ten patients (all men) with coronary artery disease. The present validation study indicates that the mechanical properties of the arterial wall, as measured by a speckle tracking-based technique are a possible input for wave intensity calculations. The study demonstrates good visual agreement between the two systems and the time interval between the two positive peaks (W1–W2) measured by the Aloka system and the WIWA system correlated for the total group (r = 0.595, P < 0.001). The correlation for the diseased subgroup was r = 0.797, P 0.05). The results of the study indicate that the mechanical properties of the arterial wall could be used as input for wave intensity calculations. The WIWA concept is a promising new method that potentially provides several advantages over earlier wave intensity methods, but it still has limitations and needs further refinement and larger studies to find the optimal clinical use.
机译:波强度分析是一个概念,提供有关心脏和血管系统相互作用的信息。最初,该技术是侵入性的。从那时起,已经开发出新的非侵入性方法。最近开发的用于估计组织运动和变形的超声技术是斑点跟踪超声心动图。基于斑点跟踪的技术可以在径向和纵向两个方向上精确测量动脉壁中的运动和变形变量。这项研究的目的是测试散斑跟踪衍生的变形数据是否可以用作波强度计算的输入。新概念是通过动脉壁在纵向和径向上的变形变化来近似流量和压力的变化。流量变化(dU / dt)用纵向动脉壁的应变率(sr,1 / s)近似,而压力变化(dP / dt)用符号反向应变率(1 / s)近似。径向的动脉壁。为了验证新概念,在新开发的波浪强度墙分析(WIWA)算法和常用且经过验证的波浪强度系统(SSD-5500,日本东京,Aloka)之间进行了比较。所研究的人群包括十名健康个体(三名女性,七名男性)和十名冠心病患者(均为男性)。当前的验证研究表明,通过基于斑点跟踪的技术测量的动脉壁的机械性能是波强度计算的可能输入。该研究表明,两个系统之间具有良好的视觉一致性,并且由Aloka系统和WIWA系统测得的两个正峰值(W1-W2)之间的时间间隔与整个组相关(r = 0.595,P <0.001)。患病亚组的相关性为r = 0.797,P = 0.05)。研究结果表明,动脉壁的机械性能可用作波强度计算的输入。 WIWA概念是一种很有前途的新方法,与早期的波强度方法相比,它可能具有一些优势,但它仍然有局限性,需要进一步完善和进行更大的研究才能找到最佳的临床用途。

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