首页> 外文会议>Conference on Next-Generation Spectroscopic Technologies >A catheter-based near-infrared scanning spectroscopy system for imaging lipid-rich plaques in human coronary arteries in vivo
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A catheter-based near-infrared scanning spectroscopy system for imaging lipid-rich plaques in human coronary arteries in vivo

机译:一种基于导管的近红外扫描光谱系统,用于在体内人冠状动脉中成像富含富含植物的斑块

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Although heart disease remains the leading cause of death in the industrialized world, there is still no method, even under cardiac catheterization, to reliably identify those atherosclerotic lesions most likely to lead to heart attack and death. These lesions, which are often non-stenotic, are frequently comprised of a necrotic, lipid-rich core overlaid with a thin fibrous cap infiltrated with inflammatory cells. InfraReDx has developed a scanning, near-infrared, optical-fiberbased, spectroscopic cardiac catheter system capable of acquiring NIR reflectance spectra from coronary arteries through flowing blood under automated pullback and rotation in order to identify lipid-rich plaques (LRP). The scanning laser source and associated detection electronics produce a spectrum in 5 ms at a collection rate of 40 Hz, yielding thousands of spectra in a single pullback. The system console analyzes the spectral data with a chemometric model, producing a hyperspectral image (a Chemogram, see figure below) that identifies LRP encountered in the region interrogated by the system. We describe the system architecture and components, explain the experimental procedure by which the chemometric model was constructed from spectral data and histology-based reference information collected from autopsy hearts, and provide representative data from ongoing ex vivo and clinical studies.
机译:虽然心脏疾病仍然是死亡在工业化国家的首要原因,但仍然没有方法,即使在心脏导管,可靠地识别那些粥样硬化病变最有可能导致心脏发作和死亡。这些病变,其通常是非狭窄,经常由坏死的,富含脂质的核心重叠的与炎性细胞浸润的薄纤维帽。 InfraReDx开发了扫描,近红外,光学fiberbased,光谱心脏导管能够通过,以便识别富含脂质的斑块(LRP)下自动撤回和转动流动的血液采集从冠状动脉NIR反射光谱的系统。扫描激光源和相关联的检测电子器件以40Hz的收集率产生5ms的光谱,得到数以千计的光谱的在一个单一的回调。系统控制台分析的光谱数据与化学计量学模型,产生一个高光谱图像(Chemogram,参见下图),其识别在LRP由系统询问该区域中遇到。我们描述了系统体系结构和组件,解释通过该化学计量学模型,从光谱数据和从尸检心收集基于组织学参考信息构成的实验方法,并提供从正在进行的离体研究和临床研究的代表性数据。

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