首页> 外文期刊>Audiology & neuro-otology >Round window membrane implantation with an active middle ear implant: a study of the effects on the performance of round window exposure and transducer tip diameter in human cadaveric temporal bones.
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Round window membrane implantation with an active middle ear implant: a study of the effects on the performance of round window exposure and transducer tip diameter in human cadaveric temporal bones.

机译:带有有源中耳植入物的圆窗膜植入:对人体尸体颞骨中的圆窗暴露性能和换能器尖端直径的影响的研究。

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摘要

OBJECTIVES: To assess the importance of 2 variables, transducer tip diameter and resection of the round window (RW) niche, affecting the optimization of the mechanical stimulation of the RW membrane with an active middle ear implant (AMEI). MATERIALS AND METHODS: Ten temporal bones were prepared with combined atticotomy and facial recess approach to expose the RW. An AMEI stimulated the RW with 2 ball tip diameters (0.5 and 1.0 mm) before and after the resection of the bony rim of the RW niche. The RW drive performance, assessed by stapes velocities using laser Doppler velocimetry, was analyzed in 3 frequency ranges: low (0.25-1 kHz), medium (1-3 kHz) and high (3-8 kHz). RESULTS: Driving the RW produced mean peak stapes velocities (H(EV)) of 0.305 and 0.255 mm/s/V at 3.03 kHz, respectively, for the 1- and 0.5-mm tips, with the RW niche intact. Niche drilling increased the H(EV) to 0.73 and 0.832 mm/s/V for the 1- and 0.5-mm tips, respectively. The tip diameter produced no difference in output at low and medium frequencies; however, the 0.5-mm tip was 5 and 6 dB better than the 1-mm tip at high frequencies before and after niche drilling, respectively. Drilling the niche significantly improved the output by 4 dB at high frequencies for the 1-mm tip, and by 6 and 10 dB in the medium- and high-frequency ranges for the 0.5-mm tip. CONCLUSION: The AMEI was able to successfully drive the RW membrane in cadaveric temporal bones using a classical facial recess approach. Stimulation of the RW membrane with an AMEI without drilling the niche is sufficient for successful hearing outputs. However, the resection of the bony rim of the RW niche significantly improved the RW stimulation at medium and higher frequencies. Drilling the niche enhances the exposure of the RW membrane and facilitates positioning the implant tip.
机译:目的:评估两个变量的重要性,即换能器尖端直径和圆窗(RW)壁位的切除,影响有源中耳植入物(AMEI)对RW膜的机械刺激的优化。材料与方法:准备十个颞骨,采用截骨术和面部隐窝术相结合,暴露RW。在切除RW小生境的骨缘之前和之后,AMEI用2个球形尖端直径(0.5和1.0 mm)刺激了RW。通过使用激光多普勒测速仪的钉速度评估了RW驱动器的性能,在3个频率范围内进行了分析:低(0.25-1 kHz),中(1-3 kHz)和高(3-8 kHz)。结果:对于1毫米和0.5毫米尖端,驱动RW产生的平均峰值锥速度(H(EV))分别为3.05 kHz和0.355 mm / s / V,而RW壁iche完好无损。利基钻孔将1和0.5毫米尖端的H(EV)分别提高到0.73和0.832 mm / s / V。尖端直径在低频和中频时没有产生输出差异。然而,在利基钻孔之前和之后,高频处的0.5毫米尖端分别比1毫米尖端高5和6 dB。在1mm的针尖上钻小孔可以显着提高高频输出,在0.5mm的针尖上,在中高频范围内,输出分别提高6dB和10dB。结论:使用经典的面部隐蔽方法,AMEI能够成功驱动尸体颞骨中的RW膜。在不打孔的情况下用AMEI刺激RW膜足以获得成功的听力输出。但是,切除RW小生境的骨缘会显着改善中高频率的RW刺激。在壁the上钻孔会增加RW膜的暴露程度,并有助于定位植入物尖端。

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