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心电图空间 QRS 环的平面性是急性心肌梗死的一个关键诊断和预后参数。

Planarity of the spatial QRS loop of vectorcardiogram is a crucial diagnostic and prognostic parameter in acute myocardial infarction.

机构信息

Dept. of Physiology, Calcutta Medical College, 88, College Street, Calcutta 700073, India.

Dept. of Mathematics, Netaji Subhash Engineering College, Panchpota, Garia, Kolkata 700152, West Bengal, India.

出版信息

Med Hypotheses. 2019 Sep;130:109251. doi: 10.1016/j.mehy.2019.109251. Epub 2019 May 31.

Abstract

Vectorcardiogram (VCG) is a recurring, near-periodic pattern of cardiac dynamics that graphically represents the trajectory of the tip of cardiac vectors in three dimensional space with varying time. VCG is constructed by drawing the instantaneous vectors from a zero reference point according to direction, magnitude and polarity in the space. It is more informative and sensitive than conventional ECG as an evaluation tool of the physiology of cardiac dynamics. Each heart cycle consists of three loops corresponding to P, QRS, and T wave activities in VCG. The morphological assessment of the QRS loop was carried out in order to analyze the spatial vectors of the ventricles and their patho-physiological correlation in various cardiac diseases. It was found that, the three dimensional QRS loop in healthy individuals lies in a plane. It is rather surprising that the normal spatial QRS loop lies in a single plane, considering the complex structure of the ventricular musculature together with the numerous possible pathways along which the depolarization impulse passes. The highly curious phenomenon of planarity of the spatial QRS loop was explained by uniform double layer (UDL) theory, which postulates the phenomenon of activation wave-fronts that propagate with a constant & uniform rate throughout the myocardium. Acute myocardial infarction results in loss of structural and functional integrity of the different layers of heart, perturbation of the uniformity in wave propagation due to the disturbance in directional symmetry, development of nonlinear relationships among the concerned variables, loss of homogeneity and complete loss of planarity of the 3D-QRS loop. The planarity of the 3D-QRS loop is a highly restricted and sensitive parameter and a characteristic feature of normal heart and can be utilized as a test for diagnostic screening of cardiac normalcy and the loss of planarity may be a conspicuous feature of AMI. It will be reasonable to study the morphology of the spatial QRS loop in patients of AMI throughout the course of disease and also in a regular interval through the long-term follow up period. It is expected that with the reperfusion, recovery and salvage of the diseased myocardium; the homogeneity and the intensity of the line density of the membrane current of the UDL would gradually recover with retrieval of the planarity of the spatial QRS loop. The temporal pattern of characteristics alteration of the QRS loop planarity with the natural course of the disease requires intensive evaluation. We propose that, the planarity of the spatial QRS loop, its loss, involution and reversal is a temporal series of events in AMI and also a crucial diagnostic and prognostic parameter.

摘要

心向量图(VCG)是一种周期性的心脏动力学模式,以图形方式表示心脏向量在三维空间中的轨迹,随时间变化。VCG 通过从零参考点根据方向、幅度和极性绘制瞬时向量来构建。作为心脏动力学生理学评估工具,它比常规心电图更具信息量和敏感性。每个心动周期由 P、QRS 和 T 波活动在 VCG 中的三个环组成。进行 QRS 环的形态评估是为了分析心室的空间向量及其在各种心脏疾病中的病理生理相关性。结果发现,健康个体的三维 QRS 环位于一个平面内。考虑到心室肌结构的复杂性以及去极化冲动可能通过的众多可能途径,正常的空间 QRS 环位于单个平面内,这是相当令人惊讶的。空间 QRS 环的平面现象用均匀双层(UDL)理论来解释,该理论假定激活波前以心肌内恒定且均匀的速度传播。急性心肌梗死导致心脏不同层的结构和功能完整性丧失,由于方向对称性的干扰,波传播的均匀性受到干扰,相关变量之间的非线性关系发展,均匀性丧失,三维 QRS 环完全丧失平面性。三维 QRS 环的平面性是一个高度受限和敏感的参数,是正常心脏的特征,可以用作心脏正常诊断筛查的测试,平面性丧失可能是 AMI 的显著特征。在整个疾病过程中以及通过长期随访期间,对 AMI 患者的空间 QRS 环形态进行研究是合理的。预计随着再灌注、病变心肌的恢复和挽救,UDL 的膜电流的均匀性和线密度强度将逐渐恢复,空间 QRS 环的平面性也将恢复。QRS 环平面性特征随自然病程的变化的时间模式需要深入评估。我们提出,空间 QRS 环的平面性、丧失、内卷和反转是 AMI 的一系列时间事件,也是关键的诊断和预后参数。

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