School of Electronics Engineering, College of IT engineering, Kyungpook National University, Daegu 41566, Korea.
Department of Biomedical Engineering, College of Engineering, Kyungil University, Gyeongsan 38428, Korea.
Sensors (Basel). 2019 Dec 20;20(1):64. doi: 10.3390/s20010064.
Non-invasive characterization of micro-vibrations in the tympanic membrane (TM) excited by external sound waves is considered as a promising and essential diagnosis in modern otolaryngology. To verify the possibility of measuring and discriminating the vibrating pattern of TM, here we describe a micro-vibration measurement method of latex membrane resembling the TM. The measurements are obtained with an externally generated audio stimuli of 2.0, 2.2, 2.8, 3.1 and 3.2 kHz, and their respective vibrations based tomographic, volumetric and quantitative evaluations were acquired using optical Doppler tomography (ODT). The micro oscillations and structural changes which occurred due to diverse frequencies are measured with sufficient accuracy using a highly sensitive ODT system implied phase subtraction method. The obtained results demonstrated the capability of measuring and analyzing the complex varying micro-vibration of the membrane according to implied sound frequency.
研究利用外部声波激励鼓膜(TM)产生的微振动的无创特征被认为是现代耳鼻喉科中一种有前途且必不可少的诊断方法。为了验证测量和区分 TM 振动模式的可能性,我们在这里描述了一种类似于 TM 的乳胶膜微振动测量方法。使用外部产生的 2.0、2.2、2.8、3.1 和 3.2 kHz 的音频刺激获得测量值,并使用光学多普勒层析成像(ODT)获得基于层析、体积和定量评估的相应振动。使用高度灵敏的 ODT 系统暗示相减方法,可以足够精确地测量由于不同频率而发生的微振动和结构变化。所得到的结果表明,根据暗示的声音频率,该系统有能力测量和分析膜的复杂变化的微振动。