Neuman Arlene C, Haravon Anita, Sislian Nicole, Waltzman Susan B
The Graduate Center, City University of New York, New York, New York, USA.
Ear Hear. 2007 Feb;28(1):73-82. doi: 10.1097/01.aud.0000249910.80803.b9.
The purpose of this study was to compare the accuracy of sound-direction identification in the horizontal plane by bilateral cochlear implant users when localization was measured with pink noise and with speech stimuli.
Eight adults who were bilateral users of Nucleus 24 Contour devices participated in the study. All had received implants in both ears in a single surgery. Sound-direction identification was measured in a large classroom by using a nine-loudspeaker array. Localization was tested in three listening conditions (bilateral cochlear implants, left cochlear implant, and right cochlear implant), using two different stimuli (a speech stimulus and pink noise bursts) in a repeated-measures design.
Sound-direction identification accuracy was significantly better when using two implants than when using a single implant. The mean root-mean-square error was 29 degrees for the bilateral condition, 54 degrees for the left cochlear implant, and 46.5 degrees for the right cochlear implant condition. Unilateral accuracy was similar for right cochlear implant and left cochlear implant performance. Sound-direction identification performance was similar for speech and pink noise stimuli.
The data obtained in this study add to the growing body of evidence that sound-direction identification with bilateral cochlear implants is better than with a single implant. The similarity in localization performance obtained with the speech and pink noise supports the use of either stimulus for measuring sound-direction identification.
本研究的目的是比较双侧人工耳蜗使用者在使用粉红噪声和语音刺激进行定位时,在水平面内声音方向识别的准确性。
八名使用Nucleus 24 Contour设备的双侧使用者参与了该研究。所有人均在一次手术中双耳植入了人工耳蜗。通过使用九个扬声器阵列在一个大教室里测量声音方向识别。在重复测量设计中,使用两种不同的刺激(语音刺激和粉红噪声脉冲),在三种聆听条件下(双侧人工耳蜗、左侧人工耳蜗和右侧人工耳蜗)测试定位。
使用两个植入物时的声音方向识别准确性明显优于使用单个植入物时。双侧条件下的均方根误差平均为29度,左侧人工耳蜗为54度,右侧人工耳蜗为46.5度。右侧人工耳蜗和左侧人工耳蜗的单侧准确性相似。语音和粉红噪声刺激的声音方向识别性能相似。
本研究获得的数据进一步证明,双侧人工耳蜗的声音方向识别优于单个人工耳蜗。语音和粉红噪声在定位性能上的相似性支持使用任何一种刺激来测量声音方向识别。