首页> 外文会议>Conference on Opto-Acoustic Methods and Applications in Biophotonics;Society of Photo-Optical Instrumentation Engineers >Intraplaque haemorrhage detection using single-wavelength PAI and singular value decomposition in the carotid artery
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Intraplaque haemorrhage detection using single-wavelength PAI and singular value decomposition in the carotid artery

机译:利用单波长PAI和斑块奇异值分解检测斑内出血

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The rupture of a vulnerable carotid plaque featuring a lipid-rich necrotic core and intra-plaque haemorrhages is the major cause of stroke. Photoacoustic imaging (PAI) is a promising technique for assessing plaque vulnerability in the carotid artery due to its ability to assess the chemical composition in addition to its anatomy. However, assessment of chemical composition is usually based on the absorption differences of chromophores between multiple wavelengths, which heavily increase the complexity and cost of the imaging system.In this study, a new method based on single-wavelength PAI to detect intra-plaque haemorrhages, an important indicator of plaque vulnerability, is developed. The method uses wall filtering based on singular value decomposition.To test the method, a carotid plaque phantom mimicking intra-plaque haemorrhages, lumen and vasa vasorum is designed and imaged at 808nm in vitro. The phantom experiment shows wall filtering using singular value decomposition to be a viable method capable of discriminating signals originating from the lumen, vasa vasorum and intraplaque haemorrhages, allowing for the detection of intra-plaque haemorrhages with single wavelength PAI. This enables new opportunities for PAI of vulnerable carotid plaques with more cost effective and diverse laser sources.
机译:中风的主要原因是脆弱的颈动脉斑块破裂,其特征是富含脂质的坏死核心和斑块内出血。光声成像(PAI)是一种有前途的技术,可用于评估颈动脉斑块的易损性,因为它具有评估其解剖结构之外的化学成分的能力。但是,化学成分的评估通常基于多个波长之间发色团的吸收差异,这大大增加了成像系统的复杂性和成本。 在这项研究中,开发了一种新的基于单波长PAI的方法来检测斑块内出血,斑块内出血是斑块易损性的重要指标。该方法使用基于奇异值分解的墙滤波。 为了测试该方法,设计了模拟斑块内出血,内腔和脉管血管的颈动脉斑块体模,并在808nm处进行了成像。幻像实验表明,使用奇异值分解进行壁过滤是一种可行的方法,能够区分源自管腔,脉管血管和斑块内出血的信号,从而可以检测具有单波长PAI的斑块内出血。这为具有更多成本效益和多样化激光源的易受伤害的颈动脉斑块的PAI提供了新的机会。

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