* Neurelec, Vallauris , France.
Int J Audiol. 2014 Jan;53(1):48-54. doi: 10.3109/14992027.2013.844367. Epub 2013 Nov 6.
This study aimed to assess whether the capacity of cochlear implant (CI) users to identify speech is determined by their capacity to perceive slow (< 20 Hz) temporal modulations.
This was achieved by studying the correlation between (1) phoneme identification in quiet and in a steady-state or fluctuating (8 Hz) noises, and (2) amplitude-modulation detection thresholds (MDTs) at 8 Hz (i.e. slow temporal modulations).
Twenty-one CI users, unilaterally implanted with the same device, were tested in free field with their everyday clinical processor.
Extensive variability across subjects was observed for both phoneme identification and MDTs. Vowel and consonant identification scores in quiet were significantly correlated with MDTs at 8 Hz (r = - 0.47 for consonants, r = - 0.44 for vowels; p < 0.05). When the masker was a steady-state noise, only consonant identification scores tended to correlate with MDTs at 8 Hz (r = - 0.4; p = 0.07). When the masker was a fluctuating noise, consonant and vowel identification scores were not significantly correlated with MDTs at 8 Hz.
Sensitivity to slow amplitude modulations is correlated with vowel and consonant perception in CI users. However, reduced sensitivity to slow modulations does not entirely explain the limited capacity of CI recipients to understand speech in noise.
本研究旨在评估人工耳蜗(CI)使用者识别言语的能力是否取决于其感知低频(<20Hz)时变调制的能力。
通过研究(1)安静环境和稳态或波动(8Hz)噪声中语音识别,以及(2)8Hz 时的调幅检测阈值(MDTs)之间的相关性,来实现这一目标。
21 名单侧植入相同装置的 CI 使用者,在自由场环境中使用其日常临床处理器进行测试。
在语音识别和 MDTs 方面,受试者之间存在广泛的变异性。安静环境下的元音和辅音识别得分与 8Hz 时的 MDTs 显著相关(辅音为 r = -0.47,元音为 r = -0.44;p<0.05)。当掩蔽噪声为稳态噪声时,仅辅音识别得分与 8Hz 时的 MDTs 呈正相关(r = -0.4;p = 0.07)。当掩蔽噪声为波动噪声时,辅音和元音识别得分与 8Hz 时的 MDTs 无显著相关性。
对低频调幅的敏感性与 CI 使用者感知元音和辅音有关。然而,对低频调制的敏感性降低并不能完全解释 CI 受话者在噪声中理解言语的能力有限。