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The Effect of Superior Semicircular Canal Dehiscence on Intracochlear Sound Pressures

机译:卓越的半圆管脱落对绞模床声压的影响

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Semicircular canal dehiscence (SCD) is a pathological opening in the bony wall of the inner ear that can result in conductive hearing loss. The hearing loss is variable across patients, and the precise mechanism and source of variability is not fully understood. We use intracochlear sound pressure measurements in cadaveric preparations to study the effects of SCD size. Simultaneous measurement of basal intracochlear sound pressures in scala vestibuli (SV) and scala tympani (ST) quantifies the complex differential pressure across the cochlear partition, the stimulus that excites the partition. Sound-induced pressures in SV and ST, as well as stapes velocity and ear-canal pressure are measured simultaneously for various sizes of SCD followed by SCD patching. At low frequencies (<600 Hz) our results show that SCD decreases the pressure in both SV and ST, as well as differential pressure, and these effects become more pronounced as dehiscence size is increased. For frequencies above 1 kHz, the smallest pinpoint dehiscence can have the larger effect on the differential pressure in some ears. These effects due to SCD are reversible by patching the dehiscence.
机译:半圆形管裂开(SCD)是内耳的骨壁的一种病理开口,可以导致导电听力损失。患者对听力损失是可变的,并且不完全理解精确的机制和可变性来源。我们在尸体制剂中使用interacochlear声压测量来研究SCD尺寸的影响。 Scala Vestibuli(SV)中基底绞痛声音压力的同时测量和Scala Tympani(ST)量化了耳蜗分区的复杂差压,激发分区的刺激。 SV和ST中的声音诱导的压力以及镫骨速度和耳管压力同时测量各种尺寸的SCD,然后进行SCD贴片。在低频(<600 Hz),我们的结果表明,SCD降低了SV和ST的压力,以及差压,并且这些效果变得更加明显,因为裂开尺寸增加。对于高于1 kHz的频率,最小的精确度裂开可以对某些耳朵中的差压产生较大的影响。由于SCD引起的这些效果是通过修补裂缝而可逆的。

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