血管内超声
光学相干层析成像
易损斑块
模态(人机交互)
生物医学中的光声成像
导管
医学
生物医学工程
放射科
纤维帽
超声波
计算机科学
病理
光学
人工智能
物理
作者
Ji Leng,Jinke Zhang,Chenguang Li,Chengyou Shu,Boquan Wang,Riqiang Lin,Yanmei Liang,Keqiang Wang,Liguo Shen,Kwok Ho Lam,Zhihua Xie,Xiaojing Gong,Junbo Ge,Liang Song
摘要
Myocardial infarctions are most often caused by the so-called vulnerable plaques, usually featured as non-obstructive lesions with a lipid-rich necrotic core, thin-cap fibroatheroma, and large plaque size. The identification and quantification of these characteristics are the keys to evaluate plaque vulnerability. However, single modality intravascular methods, such as intravascular ultrasound, optical coherence tomography and photoacoustic, can hardly achieve all the comprehensive information to satisfy clinical needs. In this paper, for the first time, we developed a novel multi-spectral intravascular tri-modality (MS-IVTM) imaging system, which can perform 360° continuous rotation and pull-backing with a 0.9-mm miniature catheter and achieve simultaneous acquisition of both morphological characteristics and pathological compositions. Intravascular tri-modality imaging demonstrates the ability of our MS-IVTM system to provide macroscopic and microscopic structural information of the vessel wall, with identity and quantification of lipids with multi-wavelength excitation. This study offers clinicians and researchers a novel imaging tool to facilitate the accurate diagnosis of vulnerable atherosclerotic plaques. It also has the potential of clinical translations to help better identify and evaluate high-risk plaques during coronary interventions.
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