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应用光学相干断层扫描技术对犬心房起搏复合体中纤维方向进行定量分析。

Quantification of fiber orientation in the canine atrial pacemaker complex using optical coherence tomography.

机构信息

Washington University, Department of Biomedical Engineering, 1 Brookings Drive, Campus Box 1097, St. Louis, Missouri 63130, USA.

出版信息

J Biomed Opt. 2012 Jul;17(7):071309. doi: 10.1117/1.JBO.17.7.071309.

Abstract

The atrial pacemaker complex is responsible for the initiation and early propagation of cardiac impulses. Optical coherence tomography (OCT), a nondestructive imaging modality with spatial resolutions of ∼1 to 15 μm, can be used to identify unique fiber orientation patterns in this region of the heart. Functionally characterized canine sinoatrial nodes (SAN) (n=7) were imaged using OCT up to ∼1  mm below the endocardial tissue surface. OCT images were directly compared to their corresponding histological sections. Fiber orientation patterns unique to the crista terminalis (CT), SAN, and surrounding atrial myocardium were identified with dominant average fiber angles of 89 ± 12 deg, 110 ± 16 deg, and 95 ± 35 deg, respectively. Both the CT and surrounding atrial myocardium displayed predominantly unidirectionally based fiber orientation patterns within each specimen, whereas the SAN displayed an increased amount of fiber disarray manifested quantitatively as a significantly greater standard deviation in fiber angle distribution within specimens [33 ± 7 deg versus 23 ± 5 deg, atrium (p=0.02); 18 ± 3 deg, CT (p=0.0003)]. We also identified unique, local patterns of fiber orientation specific to the functionally characterized block zone. We demonstrate the ability of OCT in detecting components of the atrial pacemaker complex which are intimately involved in both normal and abnormal cardiac conduction.

摘要

心房起博器复合体负责心脏冲动的起始和早期传播。光学相干断层扫描(OCT)是一种无损成像方式,空间分辨率约为 1 至 15μm,可以用来识别心脏这一区域的独特纤维方向模式。利用 OCT 对功能特征明确的犬窦房结(SAN)(n=7)进行成像,成像深度可达心内膜组织表面下约 1mm。OCT 图像与相应的组织学切片直接进行比较。确定了独特的冠状窦(CT)、SAN 和周围心房心肌的纤维方向模式,其优势平均纤维角度分别为 89 ± 12 度、110 ± 16 度和 95 ± 35 度。CT 和周围心房心肌在每个标本中都显示出主要的单向纤维方向模式,而 SAN 显示出纤维紊乱程度增加,表现在标本内纤维角度分布的标准差显著增加[33 ± 7 度与 23 ± 5 度,心房(p=0.02);18 ± 3 度,CT(p=0.0003)]。我们还确定了与功能特征明确的阻滞区有关的独特局部纤维方向模式。我们证明了 OCT 检测与正常和异常心脏传导密切相关的心房起博器复合体组成部分的能力。

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