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Bone Enhancement in Ultrasound Based on 3D Local Spectrum Variation for Percutaneous Scaphoid Fracture Fixation

机译:基于3D局部频谱变化的超声在经皮舟骨骨折固定中的骨增强作用

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This paper proposes a 3D local phase-symmetry-based bone enhancement technique to automatically identify weak bone responses in 3D ultrasound images of the wrist. The objective is to enable percutaneous fixation of scaphoid bone fractures, which occur in 90 % of all carpal bone fractures. For this purpose, we utilize 3D frequency spectrum variations to design a set of 3D band-pass Log-Gabor filters for phase symmetry estimation. Shadow information is also incorporated to further enhance the bone surfaces compared to the soft-tissue response. The proposed technique is then used to register a statistical wrist model to intraoperative ultrasound in order to derive a patient specific 3D model of the wrist bones. We perform a cadaver study of 13 subjects to evaluate our method. Our results demonstrate average mean surface and Haus-dorff distance errors of 0.7 mm and 1.8 mm, respectively, showing better performance compared to two state-of-the art approaches. This study demonstrate the potential of the proposed technique to be included in an ultrasound-based percutaenous scaphoid fracture fixation procedure.
机译:本文提出了一种基于3D局部相对称的骨骼增强技术,以自动识别手腕的3D超声图像中的弱骨骼反应。目的是使经舟骨固定的舟骨骨折发生在所有腕骨骨折的90%中。为此,我们利用3D频谱变化来设计一组3D带通Log-Gabor滤波器,用于相位对称性估计。与软组织反应相比,阴影信息还可以进一步增强骨骼表面。然后,将所提出的技术用于将统计手腕模型注册到术中超声,以得出患者特定的腕骨3D模型。我们对13个受试者进行尸体研究,以评估我们的方法。我们的结果表明,平均平均表面误差和Haus-dorff距离误差分别为0.7 mm和1.8 mm,与两种最新技术相比,它们表现出更好的性能。这项研究证明了所提出的技术可能被纳入基于超声的经皮舟状舟骨骨折固定程序中。

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