Department of Electrical Engineering, Chalmers University of Technology, 41296 Gothenburg, Sweden.
MedTech West, Sahlgrenska University Hospital, 41345 Gothenburg, Sweden.
Sensors (Basel). 2022 May 29;22(11):4121. doi: 10.3390/s22114121.
Injuries to the hamstring muscles are an increasing problem in sports. Imaging plays a key role in diagnosing and managing athletes with muscle injuries, but there are several problems with conventional imaging modalities with respect to cost and availability. We hypothesized that microwave imaging could provide improved availability and lower costs and lead to improved and more accurate diagnostics. In this paper, a semicircular microwave imaging array with eight antennae was investigated. A key component in this system is the novel antenna design, which is based on a monopole antenna and a lossy gel. The purpose of the gel is to reduce the effects of multipath signals and improve the imaging quality. Several different gels have been manufactured and evaluated in imaging experiments. For comparison, corresponding simulations were performed. The results showed that the gels can effectively reduce the multipath signals and the imaging experiments resulted in significantly more stable and repeatable reconstructions when a lossy gel was used compared to when an almost non-lossy gel was used.
腿筋肌肉损伤在体育运动中是一个日益严重的问题。影像学在诊断和管理肌肉损伤的运动员方面发挥着关键作用,但传统的影像学模式在成本和可用性方面存在一些问题。我们假设微波成像是一种可以提高可用性、降低成本并导致改善和更准确诊断的方法。在本文中,研究了一种具有八个天线的半圆形微波成像阵列。该系统的一个关键组成部分是新型天线设计,它基于单极天线和损耗凝胶。凝胶的目的是减少多径信号的影响并提高成像质量。已经制造和评估了几种不同的凝胶,并在成像实验中进行了比较。相应的模拟也进行了。结果表明,凝胶可以有效地减少多径信号,并且与使用几乎无损耗凝胶相比,使用损耗凝胶的成像实验结果更稳定、更可重复。