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High resolution 3-Dimensional imaging of the human cardiac conduction system from microanatomy to mathematical modeling

机译:从显微解剖到数学建模的高分辨率人体三维传导成像系统

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摘要

Cardiac arrhythmias and conduction disturbances are accompanied by structural remodelling of the specialised cardiomyocytes known collectively as the cardiac conduction system. Here, using contrast enhanced micro-computed tomography, we present, in attitudinally appropriate fashion, the first 3-dimensional representations of the cardiac conduction system within the intact human heart. We show that cardiomyocyte orientation can be extracted from these datasets at spatial resolutions approaching the single cell. These data show that commonly accepted anatomical representations are oversimplified. We have incorporated the high-resolution anatomical data into mathematical simulations of cardiac electrical depolarisation. The data presented should have multidisciplinary impact. Since the rate of depolarisation is dictated by cardiac microstructure, and the precise orientation of the cardiomyocytes, our data should improve the fidelity of mathematical models. By showing the precise 3-dimensional relationships between the cardiac conduction system and surrounding structures, we provide new insights relevant to valvar replacement surgery and ablation therapies. We also offer a practical method for investigation of remodelling in disease, and thus, virtual pathology and archiving. Such data presented as 3D images or 3D printed models, will inform discussions between medical teams and their patients, and aid the education of medical and surgical trainees.
机译:心脏心律不齐和传导障碍伴随着专门称为心肌传导系统的特殊心肌细胞的结构重塑。在这里,我们使用对比度增强的微型计算机断层扫描技术,以一种通常合适的方式,呈现了完整人类心脏内心脏传导系统的第一个3维表示。我们显示心肌细胞方向可以从这些数据集中以接近单个细胞的空间分辨率中提取。这些数据表明,普遍接受的解剖学表示过于简单。我们已经将高分辨率解剖数据纳入了心脏电去极化的数学模拟中。所提供的数据应具有多学科的影响。由于去极化率取决于心脏的微结构和心肌细胞的精确方向,因此我们的数据应提高数学模型的保真度。通过显示心脏传导系统与周围结构之间的精确3维关系,我们提供了与瓣膜置换手术和消融疗法有关的新见解。我们还提供了一种实用的方法来研究疾病的重塑,从而研究虚拟病理和存档。这些以3D图像或3D打印模型形式呈现的数据将为医疗团队及其患者之间的讨论提供信息,并有助于医学和外科手术学员的教育。

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