Eze Nwaneka, Mirón Antonio, Rogers Genevieve, Jeronimidis George, O'Connor Alec Fitzgerald, Jiang Dan
*Department of Otolaryngology, Guy's and St. Thomas' Hospital, London; and †Centre for Biomimetics, School of Construction Management and Engineering, University of Reading, UK.
Otol Neurotol. 2014 Aug;35(7):1223-7. doi: 10.1097/MAO.0000000000000303.
Changes to the angular position of the vibrating floating mass transducer (FMT) coupled to the long process of the incus will not affect stapes velocity.
The MED-EL Vibrant Soundbridge is an active middle ear implantable device, which constitutes an effective alternative to acoustic hearing aids for the rehabilitation of patients with sensorineural and mixed hearing loss. Because of varied anatomy, it is not always possible to position the FMT in line with the vibrating axis of the stapes. Changes in stapes velocity after angulation of the FMT are measured using laser Doppler vibrometry (LDV).
The study was performed on 7 human cadaveric temporal bones. The FMT was attached to the incus and angled at the recommended 0 degree or at 45 degrees relative to the vibrating axis of the stapes, and the stapes velocity measured using LDV.
In comparison to the 0-degree position, angulating the FMT to 45 degrees reduced cochlea input as measured by stapes velocity, although there was no statistical significance to this difference. Placing the FMT at 45 degrees did not compromise the peak output of the device but resulted in a phase lag which was more marked compared with the 0-degree position.
If it is not anatomically possible to position the FMT in line with the vibrating axis of the stapes, then placement at up to 45 degrees does not significantly alter the performance of the implant particularly in the midfrequencies that are crucial to the understanding of speech.
与砧骨长突相连的振动浮质换能器(FMT)的角位置变化不会影响镫骨速度。
MED-EL 振动声桥是一种有源中耳植入装置,是感音神经性和混合性听力损失患者康复的有效替代声学助听器的设备。由于解剖结构各异,并非总能将 FMT 与镫骨的振动轴对齐。使用激光多普勒振动测量法(LDV)测量 FMT 成角后镫骨速度的变化。
对 7 个人类尸体颞骨进行研究。将 FMT 附着于砧骨,并相对于镫骨的振动轴以推荐的 0 度或 45 度成角,然后使用 LDV 测量镫骨速度。
与 0 度位置相比,将 FMT 成角至 45 度时,以镫骨速度测量的耳蜗输入减少,尽管这种差异无统计学意义。将 FMT 置于 45 度不会损害设备的峰值输出,但会导致相位滞后,与 0 度位置相比更为明显。
如果在解剖结构上无法将 FMT 与镫骨的振动轴对齐,那么将其放置在最大 45 度的位置不会显著改变植入物的性能,尤其是在对言语理解至关重要的中频范围内。