首页> 外文会议>IEEE Engineering in Medicine and Biology Society., Conference. >Timing and source of the maximum of the transthoracic impedance cardiogram (dZ/dt) in relation to the H-I-J complex of the longitudinal ballistocardiogram under gravity and microgravity conditions
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Timing and source of the maximum of the transthoracic impedance cardiogram (dZ/dt) in relation to the H-I-J complex of the longitudinal ballistocardiogram under gravity and microgravity conditions

机译:Transthoracic阻抗心电图(DZ / DT)的定时和来源与重力和微刻度条件下的纵向脉珠上的H-I-J复合物相关

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The transthoracic impedance cardiogram (ICG) and the acceleration ballistocardiogram (BCG) measured close to the center of mass of the human body are generated by changes of blood distribution. The transthoracic ICG is an integrated signal covering the whole thorax and spatial resolution is poor. Comparison between both signals can be used to elucidate the source of the ICG signal. We recorded the ECG, ICG, and BCG simultaneously in healthy subjects under resting and microgravity conditions during parabolic flights. The time interval between the R-peak of the ECG and the maximum of the ICG (R-dZ/dtmax) and the time interval between the R-peak of the ECG and the I-peak in the BCG (R-I) differed significantly (p<0.0001). The I-peak in the BCG always occurred earlier during systole than dZ/dtmax. The delay of dZ/dtmax ranged between 23 and 28 ms at rest and was lowest under microgravity conditions (12±4 ms, p<0.02). Our results suggest that both signals have different sources. Combination of modern imaging techniques with classical non invasive approaches to detect changes of blood distribution may provide new insights into the complex interaction between blood flow and mechanocardiographic signals like the BCG.
机译:通过血液分布的变化产生靠近人体的质量中心测量的Transthoracic阻抗心电图(ICG)和加速脉珠通心图(BCG)。 Transthoracic ICG是覆盖整个胸部和空间分辨率差的集成信号。两个信号之间的比较可用于阐明ICG信号的源。我们在抛物面飞行期间在休息和微匍匐条件下的健康受试者中同时录制了ECG,ICG和BCG。 ECG的R峰值与ICG(R-DZ / DTMAX的最大值之间的时间间隔和ECG的R峰值与BCG(RI)中的I峰值之间的时间间隔显着不同( P <0.0001)。 BCG中的I-峰值在Systole期间始终发生于Systole而不是DZ / DTMAX。 DZ / DTmax的延迟在23至28ms之间,在微疱疹条件下最低(12±4 ms,P <0.02)。我们的结果表明,两个信号都有不同的来源。现代成像技术与经典的非侵入性方法检测血液分布变化的方法可以为血流和机械造影信号的复杂相互作用提供新的见解,如BCG。

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