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Locating the Human Cardiac Conduction System Using a 3D Model of Its Nutritious Arteries

机译:使用其营养性动脉的3D模型定位人体心脏传导系统

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摘要

It is difficult for anatomists to dissect the human cardiac conduction system (CCS) on specimens as well as for cardiovascular clinicians to locate the CCS during cardiac operations. Here, we demonstrate a new method for locating the CCS using a 3D model of its nutritious arteries. First, we perfused the coronary arteries with contrast material and then acquired a set of data of thin computer tomography (CT) scans. Then, we generated a 3D model of the coronary artery and distinguished the arteries that supply the CCS. We then located the CCS on the 3D model via its nutritious arteries and dissected the CCS. Finally, the structures that were dissected were removed for histological and immunofluorescent staining. The results of histological and immunofluorescence examination proved the structure to be the CCS. Thus, we successfully located the CCS using a 3D model of its nutritious arteries. We suggest that with this new method, cardiac surgeons can locate a patient’s CCS during cardiac surgeries such as transcatheter aortic valve implantation (TAVI) or radiofrequency catheter ablation (RFCA).
机译:解剖学家很难在标本上解剖人类心脏传导系统(CCS),也很难使心血管临床医生在心脏手术期间找到CCS。在这里,我们演示了一种使用其营养性动脉的3D模型定位CCS的新方法。首先,我们用造影剂灌注冠状动脉,然后获取一组薄计算机断层扫描(CT)扫描的数据。然后,我们生成了冠状动脉的3D模型并区分了供应CCS的动脉。然后,我们通过其营养丰富的动脉将CCS定位在3D模型上,并解剖CCS。最后,将解剖后的结构取出进行组织学和免疫荧光染色。组织学和免疫荧光检查的结果证明该结构为CCS。因此,我们使用其营养动脉的3D模型成功定位了CCS。我们建议,通过这种新方法,心脏外科医师可以在心脏外科手术(例如经导管主动脉瓣植入(TAVI)或射频导管消融(RFCA))期间定位患者的CCS。

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