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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Surgical Suture Thread Detection and 3-D Reconstruction Using a Model-Free Approach in a Calibrated Stereo Visual System
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Surgical Suture Thread Detection and 3-D Reconstruction Using a Model-Free Approach in a Calibrated Stereo Visual System

机译:手术缝合线程检测和3-D使用在校准的立体声视觉系统中使用无模型方法重建

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摘要

In robot-assisted surgery (RAS), three-dimensional (3-D) position estimation of a surgical suture thread is essential in automating the wound suturing procedure. Nevertheless, accurate suture thread's segmentation and its 3-D coordinates reconstruction remain challenging because of its flexible property and lacking indistinctive feature points. In this paper, a novel model-free method is proposed to enable the 3-D computation of a suture thread through a calibrated stereo camera system. In this method, only the suture thread's tip and grasping points need to be indicated on one image with mouse clicks, and their accurate image positions can be detected using computed contour information. Afterward, key points that represent the suture thread are generated on one image, while their matched points on the second camera frame are evaluated through an iterative algorithm for 3-D model reconstruction. Experiments using different backgrounds and environmental conditions were conducted to examine the accuracy and robustness of the 2-D segmentation. The suture threads were then formed in various 3-D shapes, and their respective 3-D models were reconstructed for comparison. The experimental results confirm the feasibility of our method in reducing human intervention in the detection of matched key points on an image pair, thereby guaranteeing an accurate 3-D coordinates computation of a suture thread.
机译:在机器人辅助手术(RAS)中,手术缝合线的三维(3-D)位置估计对于自动化伤口缝合程序是必不可少的。然而,由于其灵活的财产和缺乏神秘的特征点,准确的缝合线程的分割及其3-D坐标重建仍然具有挑战性。本文提出了一种新型的无模型方法,以通过校准立体声相机系统实现缝合线程的3-D计算。在该方法中,只需要在一个鼠标点击的图像上指示缝合线程的尖端和抓取点,并且可以使用计算的轮廓信息检测它们的精确图像位置。之后,在一个图像上产生表示缝合线程的关键点,而通过3-D模型重建的迭代算法评估第二相机帧上的匹配点。进行了使用不同背景和环境条件的实验,以检查2-D分段的准确性和鲁棒性。然后以各种3d形状形成缝合线,并重建它们各自的3-D模型以进行比较。实验结果证实了我们在减少人为干预的方法中检测到图像对的匹配关键点的方法的可行性,从而保证准确的3-D坐标的缝合线的计算。

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