Borkowski Paweł, Marek Piotr, Niemczyk Kazimierz, Lachowska Magdalena, Kwacz Monika, Wysocki Jarosław
Warsaw University of Technology, Faculty of Power and Aeronautical Engineering, Institute of Aeronautics and Applied Mechanics, Warsaw, Poland.
Medical University of Warsaw, Department of Otolaryngology, Warsaw, Poland.
Acta Bioeng Biomech. 2019;21(3):75-86.
Bone conduction stimulation applied on the otic capsule may be used in a conductive hearing loss treatment as an alternative to the bone conduction implants in clinical practice. A finite element study was used to evaluate the force amplitude and direction needed for the stimulation.
A finite element model of a female temporal bone with a precisely reconstructed cochlea was subjected to a harmonic analysis assuming two types of stimulation. At first, the displacement amplitude in the form of air conduction stimulation was applied on the stapes footplate. Then the force amplitude was applied on the otic capsule in the form of bone conduction stimulation. The two force directions were considered: 1) the primary direction, when a typical opening is performed during mastoidectomy, and was coincident with the axis of an imaginary cone, inscribed in the opening, and 2) the direction perpendicular to the stapes footplate. The force amplitude was set so that the response from the cochlea corresponded to the result of air conduction stimulation applied on the stapes footplate.
The amplitude and phase of vibration and the volume displacement on the round window membrane were considered as well as vibrations of the basilar membrane, spiral lamina, and promontory.
The cochlear response was comparable for the two types of stimulation. The efficiency of bone conduction stimulation depended on the force direction. For the primary direction, the force was a few times smaller than for the direction perpendicular to the stapes footplate.
在临床实践中,应用于耳囊的骨传导刺激可作为传导性听力损失治疗的一种方法,替代骨传导植入物。本研究采用有限元方法评估刺激所需的力幅值和方向。
对具有精确重建耳蜗的女性颞骨有限元模型进行谐波分析,假设两种刺激类型。首先,将气传导刺激形式的位移幅值施加于镫骨足板。然后,将力幅值以骨传导刺激形式施加于耳囊。考虑了两个力的方向:1)主方向,即在乳突切除术中进行典型开口时的方向,与开口内假想圆锥的轴线重合;2)垂直于镫骨足板的方向。设定力幅值,使耳蜗的响应与施加于镫骨足板的气传导刺激结果相对应。
考虑了圆窗膜上的振动幅值和相位、体积位移以及基底膜、螺旋板和岬的振动。
两种刺激类型的耳蜗反应具有可比性。骨传导刺激的效率取决于力的方向。对于主方向,所需的力比垂直于镫骨足板方向的力小几倍。