IEEE Trans Biomed Eng. 2022 Dec;69(12):3667-3677. doi: 10.1109/TBME.2022.3175670. Epub 2022 Nov 23.
Coronary artery disease (CAD) is a cardiovascular condition with high morbidity and mortality. Intravascular optical coherence tomography (IVOCT) has been considered as an optimal imagining system for the diagnosis and treatment of CAD. Constrained by Nyquist theorem, dense sampling in IVOCT attains high resolving power to delineate cellular structures/features. There is a trade-off between high spatial resolution and fast scanning rate for coronary imaging. In this paper, we propose a viable spectral-spatial acquisition method that down-scales the sampling process in both spectral and spatial domain while maintaining high quality in image reconstruction. The down-scaling schedule boosts data acquisition speed without any hardware modifications. Additionally, we propose a unified multi-scale reconstruction framework, namely Multiscale-Spectral-Spatial-Magnification Network (MSSMN), to resolve highly down-scaled (compressed) OCT images with flexible magnification factors. We incorporate the proposed methods into Spectral Domain OCT (SD-OCT) imaging of human coronary samples with clinical features such as stent and calcified lesions. Our experimental results demonstrate that spectral-spatial down-scaled data can be better reconstructed than data that are down-scaled solely in either spectral or spatial domain. Moreover, we observe better reconstruction performance using MSSMN than using existing reconstruction methods. Our acquisition method and multi-scale reconstruction framework, in combination, may allow faster SD-OCT inspection with high resolution during coronary intervention.
冠状动脉疾病(CAD)是一种具有高发病率和死亡率的心血管疾病。血管内光学相干断层扫描(IVOCT)已被认为是 CAD 的诊断和治疗的最佳成像系统。受奈奎斯特定理的限制,IVOCT 中的密集采样实现了高分辨率,以描绘细胞结构/特征。对于冠状动脉成像,高空间分辨率和快速扫描速率之间存在折衷。在本文中,我们提出了一种可行的光谱-空间采集方法,该方法在光谱和空间域中都降低了采样过程,同时在图像重建中保持高质量。降采样方案可提高数据采集速度,而无需进行任何硬件修改。此外,我们提出了一种统一的多尺度重建框架,即多尺度光谱-空间放大网络(MSSMN),以解决具有灵活放大因子的高度降采样(压缩)OCT 图像。我们将这些方法纳入具有支架和钙化病变等临床特征的人冠状动脉样本的光谱域 OCT(SD-OCT)成像中。我们的实验结果表明,与仅在光谱域或空间域中降采样的数据相比,光谱-空间降采样数据可以得到更好的重建。此外,与使用现有重建方法相比,我们观察到使用 MSSMN 具有更好的重建性能。我们的采集方法和多尺度重建框架相结合,可能允许在冠状动脉介入期间以高分辨率更快地进行 SD-OCT 检查。