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健康新生儿人心传导系统的 3D 模型。

3D models of the cardiac conduction system in healthy neonatal human hearts.

机构信息

Department of Biomedical Engineering, University of Utah, 36 S. Wasatch Drive, MBB 3100, Salt Lake City, UT 84112, USA.

Intermountain Health, 5121 S Cottonwood St. Murray, UT 84107, USA.

出版信息

Cardiovasc Pathol. 2024 May-Jun;70:107626. doi: 10.1016/j.carpath.2024.107626. Epub 2024 Mar 6.

Abstract

Iatrogenic damage to the cardiac conduction system (CCS) remains a significant risk during congenital heart surgery. Current surgical best practice involves using superficial anatomical landmarks to locate and avoid damaging the CCS. Prior work indicates inherent variability in the anatomy of the CCS and supporting tissues. This study introduces high-resolution, 3D models of the CCS in normal pediatric human hearts to evaluate variability in the nodes and surrounding structures. Human pediatric hearts were obtained with an average donor age of 2.7 days. A pipeline was developed to excise, section, stain, and image atrioventricular (AVN) and sinus nodal (SN) tissue regions. A convolutional neural network was trained to enable precise multi-class segmentation of whole-slide images, which were subsequently used to generate high- resolution 3D tissue models. Nodal tissue region models were created. All models (10 AVN, 8 SN) contain tissue composition of neural tissue, vasculature, and nodal tissues at micrometer resolution. We describe novel nodal anatomical variations. We found that the depth of the His bundle in females was on average 304 μm shallower than those of male patients. These models provide surgeons with insight into the heterogeneity of the nodal regions and the intricate relationships between the CCS and surrounding structures.

摘要

在先天性心脏病手术中,医源性损伤心脏传导系统(CCS)仍然是一个重大风险。目前的外科最佳实践包括使用浅表解剖标志来定位和避免损伤 CCS。先前的工作表明 CCS 及其支持组织的解剖结构存在固有变异性。本研究引入了正常儿科人心脏的 CCS 的高分辨率、3D 模型,以评估节点和周围结构的变异性。人类儿科心脏取自平均捐赠年龄为 2.7 天的供体。开发了一个管道,用于切除、切片、染色和成像房室(AVN)和窦房结(SN)组织区域。训练了一个卷积神经网络,以实现全幻灯片图像的精确多类分割,随后用于生成高分辨率 3D 组织模型。生成了节点组织区域模型。所有模型(10 个 AVN,8 个 SN)均以微米分辨率包含神经组织、脉管系统和节点组织的组织成分。我们描述了新的节点解剖变异。我们发现女性 His 束的深度比男性患者平均浅 304μm。这些模型为外科医生提供了对节点区域异质性以及 CCS 与周围结构之间复杂关系的深入了解。

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