首页> 外文期刊>Healthcare Technology Letters >Morphological active contour without edge-based model for real-time and non-rigid uterine fibroid tracking in HIFU treatment
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Morphological active contour without edge-based model for real-time and non-rigid uterine fibroid tracking in HIFU treatment

机译:没有基于边缘模型的形态活性轮廓用于HIFU治疗中的实时和非刚性子宫肌瘤追踪

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摘要

High-intensity focused ultrasound (HIFU) therapy represents an image-guided and non-invasive surgical approach to treat uterine fibroid. During the HIFU operation, it is challenging to obtain the real-time and accurate lesion contour automatically in ultrasound (US) video. The current intraoperative image processing is completed manually or semi-automatic. In this Letter, the authors propose a morphological active contour without an edge-based model to obtain accurate real-time and non-rigid US lesion contour. Firstly, a targeted image pre-processing procedure is applied to reduce the influence of inadequate image quality. Then, an improved morphological contour detection method with a customised morphological kernel is harnessed to solve the low signal-to-noise ratio of HIFU US images and obtain an accurate non-rigid lesion contour. A more reasonable lesion tracking procedure is proposed to improve tracking accuracy especially in the case of large displacement and incomplete lesion area. The entire framework is accelerated by the GPU to achieve a high frame rate. Finally, a non-rigid, real-time and accurate lesion contouring for intraoperative US video is provided to the doctor. The proposed procedure could reach a speed of more than 30 frames per second in general computer and a Dice similarity coefficient of 90.67% and Intersection over Union of 90.14%.
机译:高强度聚焦超声(HIFU)治疗代表了一种治疗子宫肌瘤的图像引导和非侵入性手术方法。在HIFU操作期间,在超声(US)视频中自动获得实时和准确的病变轮廓有挑战性。目前的术中图像处理手动或半自动完成。在这封信中,作者提出了一种没有基于边缘模型的形态活性轮廓,以获得准确的实时和非刚性美国病变轮廓。首先,应用目标图像预处理过程以减少图像质量不足的影响。然后,利用具有定制形态核的改进的形态轮廓检测方法来解决HIFU美国图像的低信噪比并获得精确的非刚性病变轮廓。提出了一种更合理的病变跟踪程序,以提高跟踪精度,特别是在大型位移和不完全病变区域的情况下。 GPU加速了整个框架,以实现高帧速率。最后,向医生提供针对术中的术中的非刚性,实时和准确的病变轮廓。所提出的程序可以达到一般计算机每秒30多帧的速度,骰子相似系数为90.67%,交叉口为90.14%。

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