Keidser Gitte, Rohrseitz Kristin, Dillon Harvey, Hamacher Volkmar, Carter Lyndal, Rass Uwe, Convery Elizabeth
National Acoustic Laboratories, Chatswood, NSW, Australia.
Int J Audiol. 2006 Oct;45(10):563-79. doi: 10.1080/14992020600920804.
This study examined the effect that signal processing strategies used in modern hearing aids, such as multi-channel WDRC, noise reduction, and directional microphones have on interaural difference cues and horizontal localization performance relative to linear, time-invariant amplification. Twelve participants were bilaterally fitted with BTE devices. Horizontal localization testing using a 360 degrees loudspeaker array and broadband pulsed pink noise was performed two weeks, and two months, post-fitting. The effect of noise reduction was measured with a constant noise present at 80 degrees azimuth. Data were analysed independently in the left/right and front/back dimension and showed that of the three signal processing strategies, directional microphones had the most significant effect on horizontal localization performance and over time. Specifically, a cardioid microphone could decrease front/back errors over time, whereas left/right errors increased when different microphones were fitted to left and right ears. Front/back confusions were generally prominent. Objective measurements of interaural differences on KEMAR explained significant shifts in left/right errors. In conclusion, there is scope for improving the sense of localization in hearing aid users.
本研究考察了现代助听器中使用的信号处理策略,如多通道宽动态范围压缩(WDRC)、降噪和定向麦克风,相对于线性、时不变放大,对双耳差异线索和水平定位性能的影响。12名参与者双耳佩戴耳背式(BTE)设备。在佩戴后两周和两个月,使用360度扬声器阵列和宽带脉冲粉红噪声进行水平定位测试。在80度方位角存在恒定噪声的情况下测量降噪效果。数据在左右维度和前后维度上独立分析,结果表明,在这三种信号处理策略中,定向麦克风对水平定位性能和随时间变化的影响最为显著。具体而言,心形麦克风可随时间减少前后误差,而当左右耳佩戴不同麦克风时,左右误差会增加。前后混淆通常较为突出。在KEMAR上对双耳差异的客观测量解释了左右误差的显著变化。总之,改善助听器使用者的定位感仍有空间。