光学相干层析成像
支架
分割
经皮冠状动脉介入治疗
计算机科学
人工智能
传统PCI
深度学习
计算机视觉
医学
放射科
生物医学工程
图像分割
冠状动脉支架
卷积神经网络
编码器
自编码
动脉
人工神经网络
特征(语言学)
断层摄影术
作者
Yu Shi Lau,Li Kuo Tan,Chow Khuen Chan,Kok Han Chee,Yih Miin Liew
标识
DOI:10.1088/1361-6560/ac4348
摘要
Abstract Percutaneous coronary intervention (PCI) with stent placement is a treatment effective for coronary artery diseases. Intravascular optical coherence tomography (OCT) with high resolution is used clinically to visualize stent deployment and restenosis, facilitating PCI operation and for complication inspection. Automated stent struts segmentation in OCT images is necessary as each pullback of OCT images could contain thousands of stent struts. In this paper, a deep learning framework is proposed and demonstrated for the automated segmentation of two major clinical stent types: metal stents and bioresorbable vascular scaffolds (BVS). U-Net, the current most prominent deep learning network in biomedical segmentation, was implemented for segmentation with cropped input. The architectures of MobileNetV2 and DenseNet121 were also adapted into U-Net for improvement in speed and accuracy. The results suggested that the proposed automated algorithm’s segmentation performance approaches the level of independent human obsevers and is feasible for both types of stents despite their distinct appearance. U-Net with DenseNet121 encoder (U-Dense) performed best with Dice’s coefficient of 0.86 for BVS segmentation, and precision/recall of 0.92/0.92 for metal stent segmentation under optimal crop window size of 256.
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