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正常人体心脏中电刺激引起的振动传播。

Propagation of vibration caused by electrical excitation in the normal human heart.

作者信息

Kanai Hiroshi

机构信息

Graduate Schools of Engineering and Biomedical Engineering, Tohoku University, Sendai, Japan.

出版信息

Ultrasound Med Biol. 2009 Jun;35(6):936-48. doi: 10.1016/j.ultrasmedbio.2008.12.013. Epub 2009 Feb 28.

DOI:10.1016/j.ultrasmedbio.2008.12.013
PMID:19251357
Abstract

The ability to noninvasively detect regional dynamic myocardial damage related to action potentials and mechanical properties affected by heart disease is of great clinical importance. Though there are invaluable clinical tools for diagnosis of a broad range of cardiac conditions, such myocardial properties cannot be evaluated. We have previously shown that pulsive vibration occurs on the myocardium after electrical stimulation of an isolated heart. In this study, using a novel technique for ultrasonic measurement of the myocardial motion, we detected pulsive vibrations spontaneously caused by electrical excitation and by valve closure. Using a sparse sector scan, the vibrations were measured almost simultaneously at about 10,000 points set in the heart wall at a high temporal resolution. The consecutive spatial distributions of the phase of the vibrations revealed wave propagation along the wall in healthy subjects for the first time in vivo. At around the time of the Q-wave of the electrocardiogram, the propagation started from the interventricular septum and extended to both the base and apical sides of the heart with a speed of 1 m/s, which corresponds to the propagation of electrical excitation from the Purkinje fiber-myocyte junction in the interventricular septum. Other vibrations then propagated from the base at several m/s, although some of them had dispersion properties. These are shear waves caused by the mitral-valve closure, corresponding to the first heart sound. These phenomena have potential for detection of regional myocardial tissue damage related to propagation of the action potentials and regional myocardial viscoelasticity.

摘要

无创检测与心脏病影响的动作电位和机械特性相关的局部动态心肌损伤的能力具有重要的临床意义。尽管有用于诊断多种心脏疾病的宝贵临床工具,但此类心肌特性无法评估。我们之前已经表明,在对离体心脏进行电刺激后,心肌会出现脉冲振动。在本研究中,我们使用一种用于超声测量心肌运动的新技术,检测了由电激发和瓣膜关闭自发引起的脉冲振动。使用稀疏扇形扫描,以高时间分辨率在心脏壁上设置的约10000个点几乎同时测量了振动。振动相位的连续空间分布首次在体内揭示了健康受试者心脏壁上的波传播。在心电图Q波前后,传播从室间隔开始,以1米/秒的速度扩展到心脏的基部和心尖侧,这与电兴奋从室间隔的浦肯野纤维 - 心肌连接处的传播相对应。然后其他振动以几米/秒的速度从基部传播,尽管其中一些具有色散特性。这些是由二尖瓣关闭引起的剪切波,对应于第一心音。这些现象具有检测与动作电位传播和局部心肌粘弹性相关的局部心肌组织损伤的潜力。

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