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新生和幼年绵羊心脏窦房结和房室结区域的定位。

Localization of the sinoatrial and atrioventricular nodal region in neonatal and juvenile ovine hearts.

机构信息

Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah, United States of America.

Nora Eccles Harrison Cardiovascular Research and Training Institute, Salt Lake City, Utah, United States of America.

出版信息

PLoS One. 2020 May 7;15(5):e0232618. doi: 10.1371/journal.pone.0232618. eCollection 2020.

Abstract

Localization of the components of the cardiac conduction system (CCS) is essential for many therapeutic procedures in cardiac surgery and interventional cardiology. While histological studies provided fundamental insights into CCS localization, this information is incomplete and difficult to translate to aid in intraprocedural localization. To advance our understanding of CCS localization, we set out to establish a framework for quantifying nodal region morphology. Using this framework, we quantitatively analyzed the sinoatrial node (SAN) and atrioventricular node (AVN) in ovine with postmenstrual age ranging from 4.4 to 58.3 months. In particular, we studied the SAN and AVN in relation to the epicardial and endocardial surfaces, respectively. Using anatomical landmarks, we excised the nodes and adjacent tissues, sectioned those at a thickness of 4 μm at 100 μm intervals, and applied Masson's trichrome stain to the sections. These sections were then imaged, segmented to identify nodal tissue, and analyzed to quantify nodal depth and superficial tissue composition. The minimal SAN depth ranged between 20 and 926 μm. AVN minimal depth ranged between 59 and 1192 μm in the AVN extension region, 49 and 980 μm for the compact node, and 148 and 888 μm for the transition to His Bundle region. Using a logarithmic regression model, we found that minimal depth increased logarithmically with age for the AVN (R2 = 0.818, P = 0.002). Also, the myocardial overlay of the AVN was heterogeneous within different regions and decreased with increasing age. Age associated alterations of SAN minimal depth were insignificant. Our study presents examples of characteristic tissue patterns superficial to the AVN and within the SAN. We suggest that the presented framework provides quantitative information for CCS localization. Our studies indicate that procedural methods and localization approaches in regions near the AVN should account for the age of patients in cardiac surgery and interventional cardiology.

摘要

心脏传导系统 (CCS) 组件的定位对于心脏外科和介入心脏病学中的许多治疗程序至关重要。虽然组织学研究为 CCS 定位提供了基本的见解,但这些信息是不完整的,难以转化为术中定位的辅助。为了深入了解 CCS 的定位,我们着手建立一种量化结区形态的框架。使用该框架,我们定量分析了来自妊娠后 4.4 至 58.3 个月的绵羊的窦房结 (SAN) 和房室结 (AVN)。特别是,我们分别研究了 SAN 和 AVN 与心外膜和心内膜表面的关系。使用解剖学标志,我们切除了这些结区和相邻组织,将这些组织切成厚度为 4μm 的切片,每隔 100μm 进行一次切片,并对切片进行 Masson 三色染色。然后对这些切片进行成像、分割以识别结区组织,并进行分析以量化结区深度和浅层组织成分。最小 SAN 深度范围在 20 至 926μm 之间。AVN 最小深度在 AVN 延伸区域为 59 至 1192μm,在致密结区为 49 至 980μm,在向 His 束过渡区为 148 至 888μm。使用对数回归模型,我们发现 AVN 的最小深度随年龄呈对数增长 (R2 = 0.818,P = 0.002)。此外,AVN 不同区域的心肌覆盖是不均匀的,并且随着年龄的增长而减少。SAN 最小深度的年龄相关变化不显著。我们的研究提供了 AVN 浅层和 SAN 内特征性组织模式的示例。我们建议所提出的框架为 CCS 定位提供了定量信息。我们的研究表明,心脏外科和介入心脏病学中接近 AVN 区域的程序方法和定位方法应考虑患者的年龄。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b01c/7205220/fed99d0944e0/pone.0232618.g001.jpg

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