Sanchez Maria Cerezo, Zuo Siming, Moldovan Alexandru, Cochran Sandy, Nazarpour Kianoush, Heidari Hadi
Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:7373-7376. doi: 10.1109/EMBC46164.2021.9630342.
Sonomyography refers to the measurement of muscle activity with an ultrasonic transducer. It is a candidate modality for applications in diagnosis of muscle conditions, rehabilitation engineering and prosthesis control as an alternative to electromyography. We propose a mechanically-flexible piezoelectric sonomyography transducer. Simulating different components of the transducer, using COMSOL Multiphysics software, we analyze various electromechanical parameters, such as von Mises stress and charge accumulation. Our findings on modelling of a single-element device, comprised of a PZT-5H layer of thickness 66µm, with a polymer substrate (E = 2.5 GPa), demonstrate optimal flexibility and charge accumulation for sonomyography. The addition of Polyimide and PMMA (Polymethyl methacrylate) as an acoustic matching layer and an acoustic lens, respectively, allowed for adequate energy transfer to the medium, whilst still maintaining good mechanical properties. In addition, preliminary ultrasound transmission simulations (200 kHz to 30 MHz) showed the importance of the aspect ratio of the device and how there is a need for further studies on it. The development of such a technology could be of great use within the healthcare sector, not only due to its ability to provide highly accurate and varied real-time muscle data, but also because of the range of applications that could benefit from its use.
超声肌动图是指使用超声换能器测量肌肉活动。作为肌电图的替代方法,它是一种可用于肌肉疾病诊断、康复工程和假肢控制的候选技术。我们提出了一种机械柔性压电超声肌动图换能器。使用COMSOL Multiphysics软件模拟换能器的不同组件,我们分析了各种机电参数,如冯·米塞斯应力和电荷积累。我们对由厚度为66µm的PZT-5H层和聚合物基板(E = 2.5 GPa)组成的单元素设备的建模结果表明,该设备在超声肌动图方面具有最佳的柔韧性和电荷积累性能。分别添加聚酰亚胺和聚甲基丙烯酸甲酯(PMMA)作为声匹配层和声透镜,可以实现向介质的充分能量传输,同时仍保持良好的机械性能。此外,初步的超声传输模拟(200 kHz至30 MHz)表明了设备长宽比的重要性以及对其进行进一步研究的必要性。这种技术的发展在医疗保健领域可能会有很大用途,这不仅是因为它能够提供高度准确且多样的实时肌肉数据,还因为有一系列应用可以从其使用中受益。