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Continuous Assessment of Carotid Diameter using an Accelerometer Patch Probe for Ambulatory Arterial Stiffness Monitoring

机译:使用加速度计贴片探针对动态动脉僵硬监测的加速度仪贴剂持续评估颈动脉直径

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We present a system with an accelerometer patch probe design for non-invasive evaluation of carotid arterial stiffness. The proposed system could continuously measure the acceleration signal derived due to the propagation of blood pulse wave through the left carotid artery, double integrating and scaling it to estimate the accelerometer-derived carotid wall displacement. This functional principle was proved by comparing the accelerometer-derived carotid wall displacement with the carotid distension signal from the reference system ARTSENS? (ARTerial Stiffness Evaluation for Noninvasive Screening device) for all the recruited human subjects. Assuming the relationship to be linear, a one-time subject-specific calibration was performed with the simultaneously acquired reference distension signal and the accelerometer-derived carotid displacement signals on its anachrotic limbs data points (at systolic phases) for each subject. This calibration equation was tested with latterly acquired accelerometer signals and results in the measurement of accelerometer-derived carotid distension and lumen-diameter values. The ability of the accelerometer system to measure real-time carotid distension and lumen diameter in a repeatable beat-by-beat manner for arterial stiffness index evaluation was validated in-vivo. The accuracy of the obtained results was studied with our clinically validated reference system. The experimental validation study results exhibit the feasibility of using the developed accelerometer system for continuous carotid distension and lumen diameter measurements, whereby the estimation of carotid arterial stiffness.
机译:我们提出了一种具有加速度计贴片探针设计的系统,用于颈动脉刚度的非侵入性评价。所提出的系统可以连续测量由于血脉冲波通过左颈动脉,双积分和扩大它来估计加速度计衍生的颈动脉壁位移而导致的加速信号。通过将加速度计衍生的颈动脉壁位移与来自参考系统艺术的颈动脉扩张信号进行比较,证明了这种功能原理? (非侵袭筛查装置的动脉僵硬评估)对于所有募集的人类受试者。假设与线性的关系,通过同时获取的基准扩散信号和加速度计衍生的颈动脉位移信号对每个受试者的尸体肢体数据点(在收缩阶段处)进行一次性对象特异性校准。使用后置型加速度计信号进行测试,并导致测量加速度计衍生的颈动脉扩张和腔直径值。加速度计系统测量实时颈动脉的能力,以可重复的逐拍方式用于动脉僵硬指数评估的可重复的逐拍的方式进行核对。使用我们的临床验证的参考系统研究了所得结果的准确性。实验验证研究结果表现出使用开发的加速度计系统进行连续颈动脉的可行性和腔直径测量的可行性,从而估计颈动脉僵硬度。

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