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Virtual histology of the human heart using optical coherence tomography

机译:使用光学相干断层扫描技术对人心脏进行虚拟组织学检查

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摘要

Optical coherence tomography (OCT) allows for the visualization of micron-scale structures within nontransparent biological tissues. For the first time, we demonstrate the use of OCT in identifying components of the cardiac conduction system and other structures in the explanted human heart. Reconstructions of cardiac structures up to 2 mm below the tissue surface were achieved and validated with Masson Trichrome histology in atrial, ventricular, sinoatrial nodal, and atrioventricular nodal preparations. The high spatial resolution of OCT provides visualization of cardiac fibers within the myocardium, as well as elements of the cardiac conduction system; however, a limiting factor remains its depth penetration, demonstrated to be ∼2 mm in cardiac tissues. Despite its currently limited imaging depth, the use of OCT to identify the structural determinants of both normal and abnormal function in the intact human heart is critical in its development as a potential aid to intracardiac arrhythmia diagnosis and therapy.
机译:光学相干断层扫描(OCT)可以可视化非透明生物组织内的微米级结构。首次,我们证明了使用OCT来识别植入人心脏中的心脏传导系统和其他结构的组件。在心房,心室,窦房结和房室结的准备工作中,通过在组织表面以下2 mm处完成了心脏结构的重建,并用Masson Trichrome组织学进行了验证。 OCT的高空间分辨率提供了心肌内心肌纤维以及心脏传导系统要素的可视化;然而,限制因素仍然是其深度渗透,在心脏组织中已证明约为2 mm。尽管目前的成像深度有限,但使用OCT来识别完整的人心脏中正常和异常功能的结构决定因素对于其发展至关重要,因为它可能有助于心律失常的诊断和治疗。

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