Experimental Evaluation of Thin Bone Fracture Detection Using Microwave Imaging

Kesia C. Santos, C. Fernandes, Jorge R. Costa
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引用次数: 3

Abstract

Microwave imaging is a promising candidate modality for the detection of fractures in superficial bones. We propose a simple dedicated experimental setup and use it to evaluate experimentally the feasibility of detection and location of thin transversal fractures in an animal bone. A single small Vivaldi antenna scans the bone along its length in two longitudinal planes, and collects the monostatic scattered fields in the 8.3-11.1 GHz frequency range. The image is reconstructed using a wave migration algorithm. Tests were carried on an ex-vivo animal leg bone with an induced transversal fracture. The results showed that transversal bone fractures can be detected down to 0.35 mm thickness. The system is attractive for a practical application because it is contactless, operated in air, non-ionizing, simple and comfortable for the patient. It can be used e.g. by first responders in the field, or in low-income settings.
微波成像检测薄骨骨折的实验评价
微波成像是检测浅表骨骨折的一种很有前途的候选方式。我们提出了一个简单的专用实验装置,并使用它来实验评估动物骨中薄横向骨折检测和定位的可行性。一个小型的维瓦尔第天线沿着骨头的长度在两个纵向平面上扫描,并收集8.3-11.1 GHz频率范围内的单站散射场。利用波偏移算法重建图像。实验是在离体动物腿骨诱导横向骨折上进行的。结果表明,横向骨折可以检测到0.35 mm厚。该系统具有非接触式、空气操作、非电离、简单、舒适等特点,具有实际应用价值。例如,它可以由现场的第一反应者或低收入环境中使用。
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