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The multigate Doppler approach for assessing hemodynamics in a forearm vascular access for hemodialysis purposes

机译:用于评估前臂血管动力学对血液透析目的评估血流动力学的多格多普勒方法

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We compared the multigate and single gate pulsed wave Doppler (PWD) approach to assess the hemodynamics in an arteriovenous fistula for hemodialysis purposes. In particular, we evaluated volume flow and wall shear rate measurements based on PWD because: (i) volume flow measurements are typically performed to assess the maturation of the arteriovenous fistula (AVF), with low postoperative fistula flow being a prognostic marker for failure of the AVF; (ii) wall shear stress may play an important role in vascular remodeling processes of the fistula. As in-vivo validation of fistula flow measurements is cumbersome, we performed simulations integrating computational fluid dynamics with an ultrasound (US) simulator. Flow in the arm was calculated, based on a patient-specific model of the arm vasculature pre and post AVF creation. Next, raw ultrasound signals were simulated and processed using a multigate and single gate Doppler approach in the radial artery, both for the preop and postop setting. Results showed that the extreme postop flow conditions (high velocity magnitudes and complex flow profiles) hampered accurate assessment of both wall shear rate and volume flow, while reasonable estimates were obtained preop (lower velocity magnitudes and laminar flow).
机译:我们比较了多格和单门脉冲波多普勒(PWD)方法来评估动静脉瘘中的血流动力学,用于血液透析目的。特别地,我们评估了基于PWD的体积流量和壁剪切速率测量,因为:(i)体积流量测量通常进行以评估动静脉瘘(AVF)的成熟,具有低术后瘘流量是失败的预后标志物avf; (ii)壁剪切应力可能在瘘管的血管重塑过程中起重要作用。随着瘘管流量测量的体内验证是麻烦的,我们通过超声(US)模拟器进行了集成计算流体动力学的模拟。基于ARM脉管系统预先创建的患者特定模型,计算臂中的流动。接下来,在径向动脉中使用Comperigar和单栅多普勒方法进行模拟和处理原始超声信号,用于射程和柱塞设置。结果表明,极端的邮政流动条件(高速幅度和复杂的流动轮廓)阻碍了墙面剪切速率和体积流量的准确评估,而合理的估计是获得的(较低的速度幅度和层流)。

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