School of Aerospace and Mechanical Engineering and Bioengineering Center, University of Oklahoma, Norman, OK 73019, USA.
Med Eng Phys. 2013 Mar;35(3):310-8. doi: 10.1016/j.medengphy.2012.05.003. Epub 2012 Jun 4.
Round window is one of the two openings into cochlea from the middle ear. Mechanical properties of round window membrane (RWM) affect cochlear fluid motion and play an important role in the transmission of sound into cochlea. However, no measurement of mechanical properties of RWM has been reported because of the complication of its location and small size. This paper reports the first investigation on dynamic properties of human RWM using acoustic stimulation and laser Doppler vibrometry measurement. The experiments on RWM specimens were subsequently simulated in finite element (FE) model and an inverse-problem solving method was used to determine the complex modulus in frequency-domain and the relaxation modulus in time-domain. The results show that the average storage modulus of human RWM changes from 2.32 to 3.83 MPa and the average loss modulus from 0.085 to 0.925 MPa over frequencies of 200-8000 Hz. The effects of specimen geometry and experimental condition on complex modulus measurements were discussed through FE modeling analysis. Dynamic properties of RWM reported in this paper provide important data for the study of middle ear and cochlear mechanics.
圆窗是从中耳进入耳蜗的两个开口之一。圆窗膜(RWM)的力学性能影响耳蜗内液的运动,在声音传入耳蜗的过程中起着重要作用。然而,由于其位置复杂且尺寸较小,尚未有关于 RWM 力学性能的测量报道。本文首次采用声刺激和激光多普勒测振技术对人 RWM 的动态特性进行了研究。随后,对 RWM 标本进行了有限元(FE)模型模拟,并采用逆问题求解方法,在频域内确定了复模量,在时域内确定了松弛模量。结果表明,人 RWM 的平均储能模量在 200-8000Hz 的频率范围内从 2.32MPa 变化到 3.83MPa,平均损耗模量从 0.085MPa 变化到 0.925MPa。通过 FE 建模分析讨论了标本几何形状和实验条件对复模量测量的影响。本文报道的 RWM 动态特性为中耳和耳蜗力学的研究提供了重要数据。