School of Engineering, University of Warwick, Coventry, CV4 7AL, UK.
ENT Department, University Hospital Birmingham, Birmingham, B15 2GW, UK.
Eur Arch Otorhinolaryngol. 2023 Feb;280(2):661-669. doi: 10.1007/s00405-022-07532-2. Epub 2022 Jul 14.
Studies have assessed the trauma and change in hearing function from the use of otological drills on the ossicular chain, but not the effects of partial laser ablation of the incus. A study of the effectiveness of a novel middle-ear microphone for a cochlear implant, which required an incus recess for the microphone balltip, provided an opportunity to compare methods and inform a feasibility study of the microphone with patients.
We used laser Doppler vibrometry with an insert earphone and probe microphone in 23 ears from 14 fresh-frozen cadavers to measure the equivalent noise level at the tympanic membrane that would have led to the same stapes velocity as the creation of the incus recess.
Drilling on the incus with a diamond burr created peak noise levels equivalent to 125.1-155.0 dB SPL at the tympanic membrane, whilst using the laser generated equivalent noise levels barely above the baseline level. The change in middle ear transfer function following drilling showed greater variability at high frequencies, but the change was not statistically significant in the three frequency bands tested.
Whilst drilling resulted in substantially higher equivalent noise, we considered that the recess created by laser ablation was more likely to lead to movement of the microphone balltip, and therefore decrease performance or result in malfunction over time. For patients with greatly reduced residual hearing, the greater consistency from drilling the incus recess may outweigh the potential benefits of hearing preservation with laser ablation.
已有研究评估了耳科钻在听骨链上使用对听力功能的创伤和改变,但尚未评估部分激光切除砧骨的影响。一项新型中耳麦克风对人工耳蜗的有效性研究,需要在砧骨上留出一个麦克风球头的凹陷,这为比较方法和为患者提供麦克风可行性研究提供了机会。
我们使用插入式耳机和探针麦克风,在 14 个新鲜冷冻尸体的 23 只耳朵中使用激光多普勒测振仪,测量导致镫骨速度与创建砧骨凹陷相同的鼓膜等效噪声水平。
使用钻石钻头在砧骨上钻孔会在鼓膜处产生相当于 125.1-155.0 dB SPL 的峰值噪声水平,而使用激光产生的等效噪声水平仅略高于基线水平。钻孔后中耳传递函数的变化在高频时表现出更大的可变性,但在测试的三个频带中,变化没有统计学意义。
虽然钻孔会产生更高的等效噪声,但我们认为激光消融产生的凹陷更有可能导致麦克风球头移动,从而降低性能或随着时间的推移导致故障。对于残余听力严重下降的患者,钻孔制作砧骨凹陷的一致性可能超过激光消融保留听力的潜在益处。