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使用偏心球模型研究电导率和几何参数变化对心电图的影响。

The effects of variations in conductivity and geometrical parameters on the electrocardiogram, using an eccentric spheres model.

作者信息

Rudy Y, Plonsey R, Liebman J

出版信息

Circ Res. 1979 Jan;44(1):104-11. doi: 10.1161/01.res.44.1.104.

Abstract

The effects of variations in the volume conductor properties of the torso on the electrocardiogram were studied by means of a theoretical eccentric spheres model. The model includes a blood cavity, cardiac muscle layer, pericardium, lung region, skeletal muscle layer, and subcutaneous fat. The source of the field is a double-layer spherical cap located within the myocardium. The following effects regarding the electrocardiogram (ECG) potentials were determined: (1) blood augments the potential, but less than predicted by simpler published models; (2) in anemia, high potentials are expected, whereas in polycythemia, voltages are reduced; (3) abnormally low lung conductivity (emphysema) causes low surface potentials whose magnitude is controlled by the low conductivity skeletal muscle layer; (4) low voltages result both from low and high pericardial conductivities; (5) the surface potential increases with increasing myocardial conductivity; (6) low skeletal muscle conductivity (Pompe's disease) causes high surface potentials; (7) obesity lowers the potential only slightly; (8) a thick myocardium, protruding into the lung region, slightly augments the potential; (9) an increase in the thickness of the myocardium at the expense of the blood cavity causes a decrease in potential; (10) the potential increases with increasing heart size; and (11) the location of the heart within the torso has a very significant effect on the surface potential distribution.

摘要

通过理论偏心球模型研究了躯干容积导体特性变化对心电图的影响。该模型包括血腔、心肌层、心包、肺区域、骨骼肌层和皮下脂肪。场源是位于心肌内的双层球帽。确定了以下关于心电图(ECG)电位的影响:(1)血液增强电位,但低于已发表的简单模型预测值;(2)贫血时预期电位高,而红细胞增多症时电压降低;(3)肺电导率异常低(肺气肿)导致体表电位低,其幅度由低电导率的骨骼肌层控制;(4)心包电导率低和高都会导致低电压;(5)体表电位随心肌电导率增加而增加;(6)骨骼肌电导率低(庞贝病)导致体表电位高;(7)肥胖仅使电位略有降低;(8)厚心肌突入肺区域会使电位略有增加;(9)以牺牲血腔为代价增加心肌厚度会导致电位降低;(10)电位随心脏大小增加而增加;(11)心脏在躯干内的位置对体表电位分布有非常显著的影响。

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