[Non-invasive estimation of aortic flow by local electrical impedance changes].

Journal of cardiography Pub Date : 1986-09-01
N Okuda, N Ohashi, M Yamada, T Fujinami
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Abstract

Aortic flow velocity was measured by catheter-tip flow transducer in 25 patients who underwent left cardiac catheterization for non-invasive estimates by the impedance method. Disk electrodes were attached to the skin at the levels of the second thoracic vertebra in the posterior median line and the V8 lead position for electrocardiography. Alternating current, 350 micro-amperes, 50 KHz constant, was applied to the outer electrode, and impedance changes were detected via the inner electrode. The e wave, or height of the first derivative dz/dt wave of the electrical impedance was lower in cases of old myocardial infarction and higher in cases of aortic valve regurgitation, as compared with the values of the healthy control group. The time lag between the start of the upward deflection and the peak value of the dz/dt wave coincided with that of the aortic flow curve as measured at the aortic arch and descending aorta. These time lags were about 20 to 30 msec as compared with the ascending aortic flow curve, and were -20 to -30 msec as compared with the abdominal aortic flow curve. There was a close correlation between the maximum flow velocity measured at the aortic arch and the height of the e waves. The regression equation was: Y = 0.21X - 1.53, r = 0.88, p less than 0.01. These data suggest that the first derivative of electrical impedance change as obtained by the disk electrode method reflects aortic flow at the arch and descending aorta.

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[通过局部电阻抗变化无创评估主动脉流量]。
采用导管尖端流量传感器测量25例左心导管患者的主动脉流速,采用阻抗法进行无创评估。盘状电极附着在第二胸椎后正中线和V8导联位的皮肤上,用于心电图。外电极上施加350微安、50 KHz恒定的交流电,通过内电极检测阻抗变化。与健康对照组相比,老年性心肌梗死患者的e波,即电阻抗一阶导数dz/dt波的高度较低,主动脉瓣返流患者的e波较高。向上偏转开始到dz/dt波峰值的时间差与主动脉弓和降主动脉处主动脉流量曲线的时间差一致。与升主动脉流量曲线相比,这些时间滞后约为20至30毫秒,与腹主动脉流量曲线相比,这些时间滞后约为-20至-30毫秒。在主动脉弓处测得的最大流速与e波高度密切相关。回归方程为:Y = 0.21X - 1.53, r = 0.88, p < 0.01。这些数据表明,通过圆盘电极法获得的电阻抗变化的一阶导数反映了动脉弓和降主动脉的主动脉流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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