Lauxmann M, Eiber A, Haag F, Ihrle S
Institute of Engineering and Computational Mechanics, University of Stuttgart, 70569 Stuttgart, Germany.
J Acoust Soc Am. 2014 Oct;136(4):1756-67. doi: 10.1121/1.4895696.
The annular ligament provides a compliant connection of the stapes to the oval window. To estimate the stiffness characteristics of the annular ligament, human temporal bone measurements were conducted. A force was applied sequentially at several points on the stapes footplate leading to different patterns of displacement with different amounts of translational and rotational components. The spatial displacement of the stapes footplate was measured using a laser vibrometer. The experiments were performed on several stapes with dissected chain and the force was increased stepwise, resulting in load-deflection curves for each force application point. The annular ligament exhibited a progressive stiffening characteristic in combination with an inhomogeneous stiffness distribution. When a centric force, orientated in the lateral direction, was applied to the stapes footplate, the stapes head moved laterally and in the posterior-inferior direction. Based on the load-deflection curves, a mechanical model of the annular ligament was derived. The mathematical representation of the compliance of the annular ligament results in a stiffness matrix with a nonlinear dependence on stapes displacement. This description of the nonlinear stiffness allows simulations of the sound transfer behavior of the middle ear for different preloads.
环状韧带为镫骨与卵圆窗提供柔顺连接。为评估环状韧带的刚度特性,进行了人体颞骨测量。在镫骨足板的多个点依次施加力,导致不同的位移模式,具有不同的平移和旋转分量。使用激光振动计测量镫骨足板的空间位移。对几个分离了听骨链的镫骨进行实验,并逐步增加力,得到每个力作用点的载荷-挠度曲线。环状韧带呈现出渐进性硬化特性以及不均匀的刚度分布。当在镫骨足板上施加横向的中心力时,镫骨头向外侧和后下方移动。基于载荷-挠度曲线,推导了环状韧带的力学模型。环状韧带柔顺性的数学表示产生了一个对镫骨位移具有非线性依赖性的刚度矩阵。这种非线性刚度的描述允许模拟不同预载荷下中耳的声音传递行为。