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利用局部频谱变化在超声中增强骨骼以指导经皮舟骨骨折固定手术。

Bone enhancement in ultrasound using local spectrum variations for guiding percutaneous scaphoid fracture fixation procedures.

作者信息

Abu Anas Emran Mohammad, Seitel Alexander, Rasoulian Abtin, St John Paul, Pichora David, Darras Kathryn, Wilson David, Lessoway Victoria A, Hacihaliloglu Ilker, Mousavi Parvin, Rohling Robert, Abolmaesumi Purang

机构信息

Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada,

出版信息

Int J Comput Assist Radiol Surg. 2015 Jun;10(6):959-69. doi: 10.1007/s11548-015-1181-6. Epub 2015 Apr 7.

Abstract

PURPOSE

The scaphoid bone is the most frequently fractured bone in the wrist. When fracture fixation is indicated, a screw is inserted into the bone either in an open surgical procedure or percutaneously under fluoroscopic guidance. Due to the complex geometry of the wrist, fracture fixation is a challenging task. Fluoroscopic guidance exposes both the patient and the physician to ionizing radiation. Ultrasound-based guidance has been suggested as a real-time, radiation-free alternative. The main challenge of using ultrasound is the difficulty in interpreting the images due to the low contrast and noisy nature of the data.

METHODS

We propose a bone enhancement method that exploits local spectrum features of the ultrasound image. These features are utilized to design a set of quadrature band-pass filters and subsequently estimate the local phase symmetry, where high symmetry is expected at the bone locations. We incorporate the shadow information below the bone surfaces to further enhance the bone responses. The extracted bone surfaces are then used to register a statistical wrist model to ultrasound volumes, allowing the localization and interpretation of the scaphoid bone in the volumes.

RESULTS

Feasibility experiments were performed using phantom and in vivo data. For phantoms, we obtain a surface distance error 1.08 mm and an angular deviation from the main axis of the scaphoid bone smaller than 5°, which are better compared to previously presented approaches.

CONCLUSION

The results are promising for further development of a surgical guidance system to enable accurate anatomy localization for guiding percutaneous scaphoid fracture fixations.

摘要

目的

舟骨是腕部最常发生骨折的骨头。当需要进行骨折固定时,可通过开放手术或在透视引导下经皮将螺钉插入骨中。由于腕部的复杂几何结构,骨折固定是一项具有挑战性的任务。透视引导会使患者和医生都暴露于电离辐射中。基于超声的引导已被提议作为一种实时、无辐射的替代方法。使用超声的主要挑战在于,由于数据对比度低且有噪声,图像解释存在困难。

方法

我们提出一种利用超声图像局部频谱特征的骨增强方法。这些特征被用于设计一组正交带通滤波器,随后估计局部相位对称性,预计在骨位置处具有高对称性。我们纳入骨表面下方的阴影信息以进一步增强骨响应。然后,提取的骨表面用于将统计腕部模型与超声容积配准,从而实现容积中舟骨的定位和解释。

结果

使用模型和体内数据进行了可行性实验。对于模型,我们获得的表面距离误差为1.08毫米,与舟骨主轴的角度偏差小于5°,与之前提出的方法相比效果更好。

结论

这些结果对于进一步开发手术引导系统很有前景,该系统能够实现准确的解剖定位,以指导经皮舟骨骨折固定。

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