Hobart Healthcare Research Institute, London, United Kingdom.
Virginia Commonwealth University School of Medicine, Richmond, Virginia.
Heart Rhythm. 2024 Dec;21(12):2388-2396. doi: 10.1016/j.hrthm.2024.10.002. Epub 2024 Oct 4.
Much of our understanding of the atrioventricular conduction axis has been derived from early 20th-century histologic investigations. These studies, although foundational, are constrained by their 2-dimensional representation of complex 3-dimensional anatomy. The variability in the course of the atrioventricular conduction axis, and its relationship to surrounding cardiac structures, necessitates a more advanced imaging approach. Using hierarchical phase-contrast tomography of an autopsied heart specimen with cellular resolution, this review provides a contemporary understanding of the atrioventricular conduction axis. By correlating these findings with 3-dimensional computed tomographic reconstructions in living patients, we offer clinicians the insights needed accurately to predict the location of the atrioventricular conduction axis. This novel approach overcomes the inherent limitations of 2-dimensional histology, enhancing our ability to understand and visualize the intricate relationships of the conduction axis within the heart.
我们对房室传导轴的认识在很大程度上源于 20 世纪早期的组织学研究。这些研究虽然具有基础性,但由于其仅为复杂的 3 维解剖结构提供 2 维表示,因此受到限制。房室传导轴的多变性及其与周围心脏结构的关系需要更先进的成像方法。本综述使用具有细胞分辨率的尸检心脏标本的分层相位对比断层扫描,提供了对房室传导轴的现代理解。通过将这些发现与活体患者的 3 维计算机断层扫描重建相关联,我们为临床医生提供了准确预测房室传导轴位置所需的见解。这种新方法克服了 2 维组织学的固有局限性,增强了我们理解和可视化心脏内传导轴复杂关系的能力。