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首页> 外文期刊>Ultrasonic Imaging: An International Journal >A Review of Intravascular Ultrasound-based Multimodal Intravascular Imaging: The Synergistic Approach to Characterizing Vulnerable Plaques
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A Review of Intravascular Ultrasound-based Multimodal Intravascular Imaging: The Synergistic Approach to Characterizing Vulnerable Plaques

机译:基于血管内超声的多模态血管内成像综述:表征易损斑块的协同方法

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摘要

Catheter-based intravascular imaging modalities are being developed to visualize pathologies in coronary arteries, such as high-risk vulnerable atherosclerotic plaques known as thin-cap fibroatheroma, to guide therapeutic strategy at preventing heart attacks. Mounting evidences have shown three distinctive histopathological features-the presence of a thin fibrous cap, a lipid-rich necrotic core, and numerous infiltrating macrophages-are key markers of increased vulnerability in atherosclerotic plaques. To visualize these changes, the majority of catheter-based imaging modalities used intravascular ultrasound (IVUS) as the technical foundation and integrated emerging intravascular imaging techniques to enhance the characterization of vulnerable plaques. However, no current imaging technology is the unequivocal "gold standard" for the diagnosis of vulnerable atherosclerotic plaques. Each intravascular imaging technology possesses its own unique features that yield valuable information although encumbered by inherent limitations not seen in other modalities. In this context, the aim of this review is to discuss current scientific innovations, technical challenges, and prospective strategies in the development of IVUS-based multi-modality intravascular imaging systems aimed at assessing atherosclerotic plaque vulnerability.
机译:正在开发基于导管的血管内成像方法,以可视化冠状动脉的病变,例如高风险的易损动脉粥样硬化斑块,称为薄帽纤维动脉粥样硬化,以指导预防心脏病发作的治疗策略。越来越多的证据表明,三个独特的组织病理学特征-纤薄的纤维帽,富含脂质的坏死核心和大量浸润的巨噬细胞-是增加动脉粥样硬化斑块易损性的关键标志。为了可视化这些变化,大多数基于导管的成像方式都使用血管内超声(IVUS)作为技术基础,并集成了新兴的血管内成像技术以增强易损斑块的特征。然而,当前没有任何成像技术是明确易受伤害的动脉粥样硬化斑块的“金标准”。每种血管内成像技术都具有其独特的功能,这些功能可产生有价值的信息,尽管会受到其他方式中未见的固有局限。在这种情况下,本文的目的是讨论基于IVUS的多模态血管内成像系统开发中当前的科学创新,技术挑战和前瞻性策略,以评估动脉粥样硬化斑块的脆弱性。

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