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Impact of analyzing fewer image frames per segment during offline volumetric radiofrequency-based intravascular ultrasound measurements of target lesions prior to percutaneous coronary interventions

机译:在经皮冠状动脉介入治疗之前对靶病变进行基于体积射频的离线血管内超声测量期间每段分析较少图像帧的影响

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摘要

In the present study, we evaluated the impact of a 50% reduction in number of image frames (every second frame) on the analysis time and variability of offline volumetric radiofrequency-based intravascular ultrasound (RF-IVUS) measurements in target lesions prior to percutaneous coronary interventions (PCI). Volumetric RF-IVUS data of vessel geometry and plaque composition are generally obtained by a semi-automated analysis process that includes time-consuming manual contour editing. A reduction in the number of frames used for volumetric analysis may speed up the analysis, but could increase measurement variability. We repeatedly performed offline volumetric analyses in RF-IVUS image sets of 20 mm-long coronary segments that contained 30 de novo lesions prior to PCI. A 50% reduction in frames decreased the analysis time significantly (from 57.5 ± 7.3 to 35.7 ± 3.7 min; P < 0.0001) while geometric and compositional RF-IVUS measurements did not differ significantly from measurements obtained from all frames. The variability between measurements on the reduced number of frames versus all frames was comparable to the intra-observer measurement variability. In target lesions prior to PCI, offline volumetric RF-IVUS analyses can be performed using a reduced number of image frames (every second frame). This reduces the time of analysis without substantially increasing measurement variability.
机译:在本研究中,我们评估了经皮穿刺前目标病变中图像帧数(每秒)减少50%对分析时间和离线体积射频射频血管内超声(RF-IVUS)测量变异性的影响冠状动脉介入治疗(PCI)。血管几何结构和斑块成分的体积RF-IVUS数据通常通过半自动分析过程获得,该过程包括耗时的手动轮廓编辑。减少用于体积分析的帧数可能会加快分析速度,但可能会增加测量的可变性。我们在20毫米长的冠状动脉节段的RF-IVUS图像集中重复进行了离线体积分析,其中包含PCI之前的30个从头病变。框架减少50%可以显着减少分析时间(从57.5±7.3到35.7±3.7分钟; P <0.0001),而几何和成分RF-IVUS测量与从所有框架获得的测量没有显着差异。减少的帧数与所有帧之间的测量之间的变异性可与观察者内的测量变异性相媲美。在PCI之前的目标病变中,可以使用减少数量的图像帧(每隔第二帧)执行离线体积RF-IVUS分析。这样可以减少分析时间,而不会显着增加测量的可变性。

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