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3D anatomical reconstruction of human cardiac conduction system and simulation of bundle branch block after TAVI procedure

机译:TAVI手术后人体心脏传导系统的3D解剖重建和束支传导阻滞的仿真

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The cardiac conduction system (CCS) is responsible for the initiation and propagation of action potentials through the heart ensuring efficient pumping of blood. Understanding the anatomy of the CCS and its relationship with other major cardiac components is important to help understand arrhythmias and how certain procedures may increase the incidence of arrhythmias developing. We sectioned a whole human heart and performed Masson's trichrome histology in order to identify the components of the CCS. The histology images were used to construct a 3D anatomical model. We have shown that it is possible to create a 3D anatomical model of the human heart incorporating the CCS based on histological images, and that this model can be used to perform computer simulations of cardiac excitation. From the reconstruction we have been able to show the relative positions of the CCS components to each other. We have also shown how the close proximity of the CCS to the aortic valve can explain some of the conduction complications, such as left bundle branch block, that arise after aortic valve replacement procedures.
机译:心脏传导系统(CCS)负责动作电位通过心脏的启动和传播,从而确保有效地抽血。了解CCS的解剖结构及其与其他主要心脏组件的关系对于帮助了解心律不齐以及某些程序如何增加心律不齐的发生率非常重要。我们将整个人的心脏切开,并进行了Masson的三色组织学检查,以识别CCS的组成部分。组织学图像用于构建3D解剖模型。我们已经表明,可以基于组织学图像创建包含CCS的人心脏的3D解剖模型,并且该模型可用于执行心脏兴奋的计算机模拟。通过重建,我们已经能够显示CCS组件彼此之间的相对位置。我们还显示了CCS与主动脉瓣的紧密接近如何解释主动脉瓣置换手术后出现的一些传导并发症,例如左束支传导阻滞。

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