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Automated Measurement of Stent Strut Coverage in Intravascular Optical Coherence Tomography

机译:血管内光学相干断层扫描中支架支架覆盖率的自动测量

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摘要

Optical coherence tomography (OCT) is a non-invasive, cross-sectional imaging modality that has become a prominent imaging method in percutaneous intracoronary intervention. We present an automated detection algorithm for stent strut coordinates and coverage in OCT images. The algorithm for stent strut detection is composed of a coordinate transformation from the polar to the Cartesian domains and application of second derivative operators in the radial and the circumferential directions. Local region-based active contouring was employed to detect lumen boundaries. We applied the method to the OCT pullback images acquired from human patients in vivo to quantitatively measure stent strut coverage. The validation studies against manual expert assessments demonstrated high Pearson's coefficients (R = 0.99) in terms of the stent strut coordinates, with no significant bias. An averaged Hausdorff distance of < 120 mu m was obtained for vessel border detection. Quantitative comparison in stent strut to vessel wall distance found a bias of < 12.3 mu m and a 95% confidence of < 110 mu m.
机译:光学相干断层扫描(OCT)是一种非侵入性的断层成像方式,已成为经皮冠状动脉内介入治疗的重要成像方法。我们提出了一种自动检测算法,用于OCT图像中的支架撑杆坐标和覆盖范围。用于支架撑杆检测的算法由从极域到笛卡尔域的坐标转换以及沿径向和周向方向的二阶导数运算符的应用组成。基于局部区域的主动轮廓用于检测管腔边界。我们将该方法应用于从人体患者体内获取的OCT回撤图像,以定量测量支架的支撑范围。针对人工专家评估的验证研究表明,在支架撑杆坐标方面,皮尔森系数较高(R = 0.99),而无明显偏差。获得的Hausdorff平均距离小于120微米,用于检测船只边界。支架支杆与血管壁距离的定量比较发现,偏倚<12.3微米,置信度<110微米,95%。

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