School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, China.
Department of Otorhinolaryngology-Head and Neck Surgery, Shanghai Zhongshan Hospital affiliated to Fudan University, Shanghai, China.
Comput Methods Biomech Biomed Engin. 2022 Feb;25(3):257-272. doi: 10.1080/10255842.2021.1948023. Epub 2021 Jul 7.
Stimulating the round window membrane via an active actuator of the middle ear implant, named the reverse stimulation, has become an option to help patients with ossicular chain deformity (OCD) to restore hearing. However, there is still no concise description of how OCD affects reverse stimulation considering the overflow characteristics of third windows. In the present study, an impedance model considering the vestibular and cochlear aqueducts was used to investigate the dynamic response of the cochlea to reverse stimulation under OCD. First, a finite-element (FE) model of the middle ear and the ear canal was used to estimate the changes in reverse middle-ear impedance caused by ossicular chain fixation and ossicular chain interruption. Then, the impedance model was used to predict the reverse transfer function, which characterizes the effect of OCD on the dynamic response of the cochlea. The results show that ossicular chain fixation reduces the reverse stimulation's performance. Moreover, the existence of the third windows complicates the effect of ossicular chain fixation on the reverse stimulation and boosts obviously the reverse stimulation's performance at low frequencies. In contrast, regardless of the existence of third windows, ossicular chain interruption enhances the effect of reverse stimulation.
通过中耳植入物的主动换能器刺激圆窗膜,即反向刺激,已成为帮助患有听小骨链畸形(OCD)的患者恢复听力的一种选择。然而,考虑到第三窗口的溢出特性,对于 OCD 如何影响反向刺激,仍然没有简洁的描述。在本研究中,使用了一个考虑到前庭和耳蜗导水管的阻抗模型,来研究 OCD 下反向刺激对耳蜗的动态响应。首先,使用中耳和耳道的有限元(FE)模型来估计耳骨链固定和耳骨链中断引起的反向中耳阻抗的变化。然后,使用阻抗模型来预测反向传递函数,该函数表征 OCD 对耳蜗动态响应的影响。结果表明,耳骨链固定降低了反向刺激的性能。此外,第三窗口的存在使耳骨链固定对反向刺激的影响复杂化,并在低频下明显增强了反向刺激的性能。相比之下,无论第三窗口是否存在,耳骨链中断都会增强反向刺激的效果。