Zhu Jing, Tagawa Norio
Graduate School of System Design, Tokyo Metropolitan University, 6-6 Asahigaoka, Hino, Tokyo 191-0065, Japan.
Sensors (Basel). 2019 May 27;19(10):2414. doi: 10.3390/s19102414.
We are studying a method based on the carrier frequency sweep for axial high resolution ultrasonic imaging to provide the range resolution that corresponds to the carrier wavelength. The first proposal for this type of method was based on the focused pulse transmission. Then, to improve the frame rate, the method was extended to a synthetic aperture-type method that transmits divergent pulses. While the method is effective in terms of the frame rate, degradation of the enhanced axial resolution performance is a concern. Therefore, using finite element method simulations and simple experiments, the performance of the synthetic aperture method with high axial resolution is evaluated via comparison with the original method using focused pulses. The evaluation confirmed that the performance degradation of the synthetic aperture method is caused by weakness in the transmitted wave intensity and deterioration of the phase coherence in the reception beamforming. Based on this result, we propose a method that is less affected by the latter cause and show its effectiveness.
我们正在研究一种基于载波频率扫描的轴向高分辨率超声成像方法,以提供与载波波长对应的距离分辨率。此类方法的首个提议基于聚焦脉冲传输。然后,为提高帧率,该方法扩展为发射发散脉冲的合成孔径型方法。虽然该方法在帧率方面有效,但增强轴向分辨率性能的下降是一个问题。因此,通过有限元方法模拟和简单实验,与使用聚焦脉冲的原始方法进行比较,评估了具有高轴向分辨率的合成孔径方法的性能。评估证实,合成孔径方法的性能下降是由发射波强度不足和接收波束形成中相位相干性恶化所致。基于此结果,我们提出一种受后一种原因影响较小的方法,并展示了其有效性。