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An Ultrasonic Probe to Measure Both Radial Arterial Pressure and Diameter at Identical Position for Early Diagnosis of Arteriosclerosis

机译:用于在动脉硬化的早期诊断中同时测量Rad动脉压和直径的超声波探头

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We have proposed an evaluation method of the viscoelastic parameters of blood walls by measuring a relationship between radial arterial pressure and diameter to evaluate vascular endothelial functions. In our previous study, those were measured at different position, which caused timing errors because of the difference of pulse wave velocity during a heartbeat. In the present study, a novel probe was developed to measure both radial arterial pressure and diameter at identical position. One cord connecting the central piezoelectric element of the linear array probe and the ultrasonic diagnosis equipment was cut off to measure the arterial pressure. The output from the element was amplified 100 times, filtered with a low pass filter, and acquired with an oscilloscope. The output was obtained as the differential form of the blood pressure waveform. To obtain the blood pressure waveform, the output was integrated and calibrated with the systolic and diastolic blood pressures measured by the tonometry. The arterial diameter was measured using the other 127 elements with the ultrasonic diagnosis apparatus by the phased-tracking method. The hysteresis loop between the diameter and pressure during a heartbeat, which reflect the viscoelasticity of the blood wall, was successfully confirmed.
机译:我们已经提出了一种通过测量radial动脉压和直径之间的关系来评估血管内皮功能的血液壁粘弹性参数的评估方法。在我们以前的研究中,这些是在不同位置进行测量的,由于心跳期间脉搏波速度的差异,这导致了计时误差。在本研究中,开发了一种新型探针来测量同一位置的radial动脉压和直径。切断连接线性阵列探针的中央压电元件和超声诊断设备的一根绳索以测量动脉压。元件的输出被放大100倍,用低通滤波器滤波,并用示波器采集。获得的输出是血压波形的微分形式。为了获得血压波形,对输出进行积分并与通过眼压计测量的收缩压和舒张压进行校准。利用超声波诊断装置,使用其他127个要素,通过阶段追踪法测定动脉直径。成功确定了心跳期间直径和压力之间的磁滞回线,该磁滞回线反映了血液壁的粘弹性。

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