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心电图仿真模型的研究现状 被引量:3
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作者 徐振耀 符影杰 杨福生 《国外医学(生物医学工程分册)》 北大核心 1989年第3期127-132,共6页
本文讨论了有关心电图仿真模型的发展概况。从双域(bidomain)模型出发提出了构成ECG仿真模型基础的生物物理知识,讨论了ECG仿真模型的种类及研究方法,论述了当前ECG仿真模型研究的发展现状,并指出了ECG仿真模型的发展趋势及所要解决的... 本文讨论了有关心电图仿真模型的发展概况。从双域(bidomain)模型出发提出了构成ECG仿真模型基础的生物物理知识,讨论了ECG仿真模型的种类及研究方法,论述了当前ECG仿真模型研究的发展现状,并指出了ECG仿真模型的发展趋势及所要解决的问题。 展开更多
关键词 心电图 心电图仿真模型
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心肌缺血下人体心室电生理建模和心电图仿真 被引量:3
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作者 吕伟刚 王宽全 +2 位作者 左旺孟 黎捷 张恒贵 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2011年第6期1200-1206,共7页
为了分析心肌缺血下心肌细胞电生理变化以及对心室传导波的影响,本文考虑了缺血情况下高钾、酸液过多、局部缺氧的实际情况,开发了一个人体心室缺血模型。基于该模型,文中模拟了不同缺血程度下心内膜细胞、M细胞和心外膜细胞的动作电位(... 为了分析心肌缺血下心肌细胞电生理变化以及对心室传导波的影响,本文考虑了缺血情况下高钾、酸液过多、局部缺氧的实际情况,开发了一个人体心室缺血模型。基于该模型,文中模拟了不同缺血程度下心内膜细胞、M细胞和心外膜细胞的动作电位(AP),并探讨了心肌缺血的三个单一因素分别对细胞AP的影响,最后定量分析了二维人体左心室组织心肌缺血下心电图(ECG)的改变情况。实验结果表明,在缺血情况下,心肌细胞动作电位时程(APD)均有不同程度的缩短。大多数情况下,缺血区域越大,或者缺血情况越严重,ECG的ST-T波变化幅度也越大。在上述三个心肌缺血因素中,高钾对ST-T波变化起到关键的作用,这与之前在动物模型上得到的实验结论保持一致。 展开更多
关键词 电生理 人体心室 缺血 心电图仿真
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心室电传导模型的心律失常机制仿真分析 被引量:4
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作者 宋俊雅 袁永峰 王宽全 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2014年第1期34-39,共6页
心律失常是最为常见的心血管疾病,严重的心律失常甚至可能导致患者猝死.浦肯野氏纤维细胞与心室肌细胞的动作电位有很大差异,在许多情况下被认为是严重室性心律失常发生的源头.针对此问题建立了理想化二维心室电传导计算模型来模拟浦肯... 心律失常是最为常见的心血管疾病,严重的心律失常甚至可能导致患者猝死.浦肯野氏纤维细胞与心室肌细胞的动作电位有很大差异,在许多情况下被认为是严重室性心律失常发生的源头.针对此问题建立了理想化二维心室电传导计算模型来模拟浦肯野氏纤维与心室组织耦合连接以及电兴奋在心脏组织中的传导过程.仿真结果发现虽然浦肯野氏纤维细胞会产生心动过速的电兴奋传导,但也可以抑制极慢或者极快的电兴奋,对心室组织维持正常节律起到重要的保护作用.本模型还可以用于先天性基因变异的心律失常机制以及药物的抗心律失常作用的研究,对心律失常诱发机制研究提供了新的研究手段. 展开更多
关键词 计算模型 浦肯野氏纤维-心室肌连接 心电图仿真 心律失常
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基于DT-MRI数据的三维心室组织分层方法
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作者 肖立邦 王宽全 袁永峰 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2011年第7期80-84,共5页
为了更精确地对心室组织进行分层,提出了一种线性分层填充方法,利用高分辨率的DT-MRI人体心脏成像数据,基于心肌纤维走向由内向外的旋转角与心室细胞类型之间线性对应关系,对所有心室组织切片,逐片进行层间划分,重建了具有非均匀性细胞... 为了更精确地对心室组织进行分层,提出了一种线性分层填充方法,利用高分辨率的DT-MRI人体心脏成像数据,基于心肌纤维走向由内向外的旋转角与心室细胞类型之间线性对应关系,对所有心室组织切片,逐片进行层间划分,重建了具有非均匀性细胞分布的三维心室精细解剖结构.然后,将非均匀性单心室细胞计算模型和建立的三维心室解剖结构相结合,进行伪心电图仿真以检验本分层方法的有效性.仿真结果显示伪心电图在QRS波群和T波的形态和间期上与真实心电图吻合,从而证明心室组织分层方法的有效性,可以用于心脏生理、病理相关问题的计算模型仿真研究. 展开更多
关键词 DT-MRI 线性对应关系 心室组织分层 心电图仿真
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Simulation of inter atrial block based on a human atrial model 被引量:1
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作者 Yuan GAO Ying-lan GONG +1 位作者 Ling XIA Ding-chang ZHENG 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2019年第4期300-309,共10页
Inter atrial block(IAB) is a prevailing cardiac conduction abnormality that is under-recognized in clinical practice. IAB has strong association with atrial arrhythmia, left atrial enlargement, and electromechanical d... Inter atrial block(IAB) is a prevailing cardiac conduction abnormality that is under-recognized in clinical practice. IAB has strong association with atrial arrhythmia, left atrial enlargement, and electromechanical discordance, increasing the risk of atrial fibrillation(AF) and myocardial ischemia. IAB was generally believed to be caused by impaired conduction along the Bachmann bundle(BB). However, there are three other conduction pathways, including the fibers posteriorly in the vicinity of the right pulmonary veins(VRPV), transseptal fibers in the fossa ovalis(FO), and muscular bundles on the inferior atrial surface near the coronary sinus(CS). We hypothesized that the importance of BB on IAB might have been overestimated. To test this hypothesis, various combinations of conduction pathway blocks were simulated based on a realistic human atrial model to investigate their effects on the index of clinical diagnosis standard of IAB using a simulated 12-lead electrocardiogram(ECG). Firstly, the results showed that the BB block alone could not generate typical P wave morphology of IAB, and that the combination of BB and VRPV pathway block played important roles in the occurrence of IAB. Secondly, although single FO and CS pathways play subordinate roles in inter atrial conduction, their combination with BB and VRPV block could also produce severe IAB. In summary, this simulation study has demonstrated that the combinations of different inter atrial conduction pathways, rather than BB alone, resulted in ECG morphology of IAB. Attention needs to be paid to this in future pathophysiological and clinical studies of IAB. 展开更多
关键词 Inter atrial block ELECTROCARDIOGRAM SIMULATION Heart model
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Electrocardiogram(ECG) patterns of left anterior fascicular block and conduction impairment in ventricular myocardium: a whole-heart model-based simulation study 被引量:1
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作者 Yuan GAO Ling XIA +1 位作者 Ying-lan GONG Ding-chang ZHENG 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2018年第1期49-56,共8页
Left anterior fascicular block(LAFB) is a heart disease identifiable from an abnormal electrocardiogram(ECG). It has been reported that LAFB is associated with an increased risk of heart failure. Non-specific intr... Left anterior fascicular block(LAFB) is a heart disease identifiable from an abnormal electrocardiogram(ECG). It has been reported that LAFB is associated with an increased risk of heart failure. Non-specific intraventricular conduction delay due to the lesions of the conduction bundles and slow cell to cell conduction has also been considered as another cause of heart failure. Since the location and mechanism of conduction delay have notable variability between individual patients, we hypothesized that the impaired conduction in the ventricular myocardium may lead to abnormal ECGs similar to LAFB ECG patterns. To test this hypothesis, based on a computer model with a three dimensional whole-heart anatomical structure, we simulated the cardiac exciting sequence map and 12-lead ECG caused by the block in the left anterior fascicle and by the slowed conduction velocity in the ventricular myocardium. The simulation results showed that the typical LAFB ECG patterns can also be observed from cases with slowed conduction velocity in the ventricular myocardium. The main differences were the duration of QRS and wave amplitude. In conclusion, our simulations provide a promising starting point to further investigate the underlying mechanism of heart failure with LAFB, which would provide a potential reference for LAFB diagnosis. 展开更多
关键词 Electrocardiogram (ECG) Simulation Heart model Left anterior fascicular block (LAFB)
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