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首页> 外文期刊>Computerized Medical Imaging and Graphics: The Official Jounal of the Computerized Medical Imaging Society >3D assessment of stent cell size and side branch access in intravascular optical coherence tomographic pullback runs
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3D assessment of stent cell size and side branch access in intravascular optical coherence tomographic pullback runs

机译:血管内光学相干断层扫描回撤中支架细胞大小和侧支通路的3D评估

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摘要

We present a semi-automatic approach to assess the maximum circular unsupported surface area (MCUSA) of selected stent cells and the side branch access through stent cells in intravascular optical coherence tomography (IVOCT) pullback runs. Such 3D information may influence coronary interventions, stent design, blood flow analysis or prognostic evaluation. First, the stent struts are detected automatically and stent cells are reconstructed with users' assistance. Using cylinder fitting, a 2D approximation of the stent cell is generated for MCUSA detection and measurement. Next, a stent surface is reconstructed and stent-covered side branches are detected. Both the stent cell contours and side branch lumen contours are projected onto the stent surface to indicate their areas, and the overlapping regions are measured as the side branch access through these stent cells. The method was evaluated on phantom data sets and the accuracy of the MCUSA and side branch access was found to be 95% and 91%, respectively. The usability of this approach for clinical research was proved on 12 in vivo IVOCT pullback runs.
机译:我们提出了一种半自动方法,用于评估选定的支架细胞的最大圆形无支撑表面积(MCUSA),以及在血管内光学相干断层扫描(IVOCT)撤回运行中通过支架细胞的侧支通道。此类3D信息可能会影响冠状动脉介入治疗,支架设计,血流分析或预后评估。首先,自动检测支架撑杆,并在用户协助下重建支架细胞。使用圆柱拟合,可以生成支架单元的2D近似值,以进行MCUSA检测和测量。接下来,重建支架表面并检测支架覆盖的侧支。支架细胞轮廓和侧支管腔轮廓都投影到支架表面以指示其面积,并且在通过这些支架细胞的侧支通道进入时测量重叠区域。在幻像数据集上评估了该方法,发现MCUSA和侧分支访问的准确性分别为95%和91%。在12个体内IVOCT撤回试验中证明了这种方法在临床研究中的可用性。

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