Bian Lin, Chen Shixiong
Department of Speech and Hearing Science, Auditory Physiology Lab, Arizona State University, Tempe, Arizona 85287-0102, USA.
J Acoust Soc Am. 2008 Dec;124(6):3739-50. doi: 10.1121/1.3001706.
Odd- and even-order distortion products (DPs), evoked by two primary tones (f(1),f(2),f(1)<f(2)), represent different aspects of cochlear nonlinearity. The cubic and quadratic difference tones (CDT 2f(1)-f(2) and QDT f(2)-f(1)) are prominent representatives of the odd and even DPs. Distortion product otoacoustic emissions (DPOAEs) were measured within a primary level (L(1),L(2)) space over a wide range of f(2)f(1) ratios to compare the optimal signal conditions for these DPs. For CDT, the primary level difference decreased as L(1) increased with a rate proportional to the f(2)f(1) ratio. Moreover, the optimal ratio increased with L(1). A set of two formulas is proposed to describe the optimal signal conditions. However, for a given level of a primary, increasing the other tone level could maximize the QDT amplitude. The frequency ratio at the maximal QDT was about 1.3 and quite constant across different primary levels. A notch was found in the QDT amplitude at the f(2)f(1) ratio of about 1.22-1.25. These opposite behaviors suggest that the optimal recording conditions are different for CDT and QDT due to the different aspects in the cochlear nonlinearity. Optimizing the DPOAE recordings could improve the reliability in clinical or research practices.
由两个初始纯音(f(1)、f(2),f(1)<f(2))诱发的奇次和偶次失真产物(DPs)代表了耳蜗非线性的不同方面。三次和二次差频(CDT 2f(1)-f(2)和QDT f(2)-f(1))分别是奇次和偶次DPs的典型代表。在一个很宽的f(2)/f(1)比值范围内,在初始声强(L(1),L(2))空间中测量了失真产物耳声发射(DPOAEs),以比较这些DPs的最佳信号条件。对于CDT,随着L(1)的增加,初始声强差减小,减小速率与f(2)/f(1)比值成正比。此外,最佳比值随L(1)增大。提出了一组两个公式来描述最佳信号条件。然而,对于给定的一个初始声强,增加另一个纯音的声强可使QDT幅值最大化。最大QDT时的频率比约为1.3,并且在不同的初始声强下相当恒定。在f(2)/f(1)比值约为1.22 - 1.25时,QDT幅值出现一个凹陷。这些相反的表现表明,由于耳蜗非线性的不同方面,CDT和QDT的最佳记录条件不同。优化DPOAE记录可提高临床或研究实践中的可靠性。