Tognola G, Chiaramello E, Sisto R, Moleti A
* Institute of Electronics, Computers and Telecommunication Engineering, CNR Italian National Research Council , Milan , Italy.
Int J Audiol. 2015 Mar;54(3):199-209. doi: 10.3109/14992027.2014.972522. Epub 2014 Dec 22.
To investigate potential susceptibility of active cochlear mechanisms to low-level styrene exposure by comparing TEOAEs in workers and controls.
Two advanced analysis techniques were applied to detect sub-clinical changes in linear and nonlinear cochlear mechanisms of OAE generation: the wavelet transform to decompose TEOAEs into time-frequency components and extract signal-to-noise ratio and latency of each component, and the bispectrum to detect and extract nonlinear TEOAE contributions as quadratic frequency couplings (QFCs).
Two cohorts of workers were examined: subjects exposed exclusively to styrene (N = 9), and subjects exposed to styrene and noise (N = 6). The control group was perfectly matched by age and sex to the exposed group.
Exposed subjects showed significantly lowered SNR in TEOAE components at mid-to-high frequencies (above 1.6 kHz) and a shift of QFC distribution towards lower frequencies than controls. No systematic differences were observed in latency.
Low-level styrene exposure may have induced a modification of cochlear functionality as concerns linear and nonlinear OAE generation mechanisms. The lack of change in latency seems to suggest that the OAE components, where generation region and latency are tightly coupled, may not have been affected by styrene and noise exposure levels considered here.
通过比较工人和对照组的瞬态诱发耳声发射(TEOAEs),研究活跃的耳蜗机制对低水平苯乙烯暴露的潜在易感性。
应用两种先进的分析技术来检测耳声发射产生的线性和非线性耳蜗机制中的亚临床变化:小波变换将TEOAEs分解为时间-频率成分,并提取每个成分的信噪比和潜伏期;双谱检测并提取作为二次频率耦合(QFCs)的非线性TEOAEs成分。
检查了两组工人:仅暴露于苯乙烯的受试者(N = 9)和暴露于苯乙烯和噪声的受试者(N = 6)。对照组在年龄和性别上与暴露组完全匹配。
暴露组受试者在中高频(高于1.6 kHz)的TEOAEs成分中显示出显著降低的信噪比,并且QFC分布向比对照组更低的频率偏移。在潜伏期方面未观察到系统差异。
就线性和非线性耳声发射产生机制而言,低水平苯乙烯暴露可能已引起耳蜗功能的改变。潜伏期缺乏变化似乎表明,产生区域和潜伏期紧密耦合的耳声发射成分可能未受到此处所考虑的苯乙烯和噪声暴露水平的影响。