论文标题

章鱼 - 光学相干断层扫描和支架分析软件

OCTOPUS -- optical coherence tomography plaque and stent analysis software

论文作者

Lee, Juhwan, Kim, Justin N., Gharaibeh, Yazan, Zimin, Vladislav N., Dallan, Luis A. P., Pereira, Gabriel T. R., Vergara-Martel, Armando, Kolluru, Chaitanya, Hoori, Ammar, Bezerra, Hiram G., Wilson, David L.

论文摘要

与其他成像方式相比,血管内光学相干断层扫描(IVOCT)在指导经皮冠状动脉干预方面具有显着优势。为了帮助IVOCT研究,我们开发了光学相干断层扫描和支架(章鱼)分析软件。为了自动化图像分析结果,该软件包括几个重要的算法步骤:预处理,深度学习牌匾细分,机器学习识别支架支撑和回调的注册。软件中包括了分段的交互式可视化和手动编辑。定量包括支架部署特性(例如支架支撑板不正确),支撑杆水平分析,钙角和钙厚度测量值。交互式可视化包括(X,Y)解剖学,EN脸部和纵向视图,并具有可选的叠加层。基础斑块分割算法得出了出色的像素化结果(灵敏度为86.2%和0.781 F1得分)。使用章鱼在34个新的回调上使用章鱼,我们确定自动分割后,只有13%和23%的帧需要进行任何手动修饰,以进行详细的管腔和钙化标签。只有高达3.8%的斑块像素被修改,导致平均编辑时间仅为7.5秒/帧,与手动分析相比,降低了约80%。关于支架分析,灵敏度和精度均大于90%,并且每个支柱被成功地分类为具有高灵敏度(94%)和特异性(90%)的覆盖或揭示。我们介绍并评估了高度自动化的软件包章鱼的临床应用,以在IVOCT图像中进行定量斑块和支架分析。该软件目前被用作用于研究目的的离线工具;但是,该软件的嵌入式算法也可能对实时治疗计划有用。

Compared with other imaging modalities, intravascular optical coherence tomography (IVOCT) has significant advantages for guiding percutaneous coronary interventions. To aid IVOCT research studies, we developed the Optical Coherence TOmography PlaqUe and Stent (OCTOPUS) analysis software. To automate image analysis results, the software includes several important algorithmic steps: pre-processing, deep learning plaque segmentation, machine learning identification of stent struts, and registration of pullbacks. Interactive visualization and manual editing of segmentations were included in the software. Quantifications include stent deployment characteristics (e.g., stent strut malapposition), strut level analysis, calcium angle, and calcium thickness measurements. Interactive visualizations include (x,y) anatomical, en face, and longitudinal views with optional overlays. Underlying plaque segmentation algorithm yielded excellent pixel-wise results (86.2% sensitivity and 0.781 F1 score). Using OCTOPUS on 34 new pullbacks, we determined that following automated segmentation, only 13% and 23% of frames needed any manual touch up for detailed lumen and calcification labeling, respectively. Only up to 3.8% of plaque pixels were modified, leading to an average editing time of only 7.5 seconds/frame, an approximately 80% reduction compared to manual analysis. Regarding stent analysis, sensitivity and precision were both greater than 90%, and each strut was successfully classified as either covered or uncovered with high sensitivity (94%) and specificity (90%). We introduced and evaluated the clinical application of a highly automated software package, OCTOPUS, for quantitative plaque and stent analysis in IVOCT images. The software is currently used as an offline tool for research purposes; however, the software's embedded algorithms may also be useful for real-time treatment planning.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源