Abdala Carolina, Dhar Sumitrajit, Kalluri Radha
House Research Institute, Division of Communication & Auditory Neuroscience, 2100 W. 3rd St, Los Angeles, CA 90057, USA.
AIP Conf Proc. 2011;1403:483-488. doi: 10.1063/1.3658135. Epub 2011 Nov 7.
Invariant distortion product otoacoustic emission (DPOAE) phase elucidates scaling symmetry in the cochlea. Below some low-frequency boundary, DPOAE phase slope steepens. The origin of this break in phase invariance is not clear. Stimulus frequency (SF)OAE delays computed from the slope of phase also manifest discontinuities at low frequencies, though the relationship between the breaking of cochlear scaling as defined by SFOAE and DPOAE metrics has not been examined. In this study, OAEs were recorded in normal-hearing human adults to probe cochlear scaling and its breaking and to examine the correspondence between two OAE metrics of scaling. Results indicate: (1) the apical break in DPOAE phase invariance cannot be explained by contributions from the reflection-source component; (2) DPOAE phase signals a break from scaling near 1.5 kHz and (3) DPOAE and SFOAE metrics of cochlear scaling produce phase discontinuities within approximately one-quarter octave of each other and show comparable rates of breaking, suggesting a common underlying origin.
不变性畸变产物耳声发射(DPOAE)相位阐明了耳蜗中的标度对称性。在某个低频边界以下,DPOAE相位斜率变陡。这种相位不变性的中断的起源尚不清楚。从相位斜率计算出的刺激频率(SF)耳声发射延迟在低频处也表现出不连续性,尽管尚未研究由SF耳声发射定义的耳蜗标度破坏与DPOAE指标之间的关系。在本研究中,记录了听力正常的成年人的耳声发射,以探究耳蜗标度及其破坏情况,并检查两种标度耳声发射指标之间的对应关系。结果表明:(1)DPOAE相位不变性的顶端中断不能用反射源成分的贡献来解释;(2)DPOAE相位表明在1.5 kHz附近标度出现中断;(3)耳蜗标度的DPOAE和SF耳声发射指标在彼此约四分之一个倍频程内产生相位不连续性,并显示出相当的破坏率,表明存在共同的潜在起源。