The Anatomy of the Atrioventricular Node.

IF 2.4 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Robert H Anderson, Damián Sánchez-Quintana, Jorge Nevado-Medina, Diane E Spicer, Justin T Tretter, Wouter H Lamers, Zihan Hu, Andrew C Cook, Eduardo Back Sternick, Demosthenes G Katritsis
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Abstract

The anatomical arrangement of the atrioventricular node has been likened to a riddle wrapped up in an enigma. There are several reasons for this alleged mystery, not least the marked variability in structure between different species. Lack of detailed knowledge of the location of the node relative to the atrial and ventricular septal structures has also contributed to previous misunderstandings. Recent studies comparing the findings of gross dissection with virtual dissection of living datasets, combined with access to a large number of serially sectioned human and animal hearts, have served to provide the evidence to solve the riddle. We summarise these findings in this review. We explain how the node is located within the atrial walls of the inferior pyramidal space. It becomes the non-branching component of the atrioventricular conduction axis as the axis extends through the plane of atrioventricular insulation to enter the infero-septal recess of the left ventricular outflow tract. The node itself is formed by contributions from the tricuspid and mitral vestibules, with extensive additional inputs from the base of the atrial septum. We show how knowledge of development enhances the appreciation of the arrangements and offers an explanation as to why, on occasion, there can be persisting nodoventricular connections. We discuss the findings relative to the circuits producing atrioventricular re-entry tachycardia. We conclude by emphasising the significance of the variation of the anatomical arrangements within different mammalian species.

房室结解剖。
房室结的解剖安排被比作一个谜中之谜。这种所谓的神秘有几个原因,尤其是不同物种之间结构的显著差异。缺乏与心房和室间隔结构相关的淋巴结位置的详细知识也导致了以前的误解。最近的研究比较了活体数据集的大体解剖和虚拟解剖的结果,并结合了对大量连续切片的人类和动物心脏的访问,为解决这个谜题提供了证据。我们在这篇综述中总结了这些发现。我们解释结是如何位于心房壁的下锥体空间。当房室传导轴穿过房室绝缘平面进入左室流出道室间隔内隐窝时,成为房室传导轴的非分支成分。房结本身是由三尖瓣和二尖瓣前庭的贡献形成的,并有来自房间隔底部的广泛的额外输入。我们展示了发育的知识如何增强对排列的欣赏,并提供了一个解释,为什么有时会有持续的结节-脑室连接。我们讨论了有关产生房室再入性心动过速的电路的发现。我们通过强调在不同哺乳动物物种的解剖安排的变化的意义得出结论。
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来源期刊
Journal of Cardiovascular Development and Disease
Journal of Cardiovascular Development and Disease CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
2.60
自引率
12.50%
发文量
381
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