Medical University Hannover, Cluster of Excellence 'Hearing4all', Hannover, Germany.
Oticon Medical, Vallauris, France.
Hear Res. 2024 Sep 15;451:109088. doi: 10.1016/j.heares.2024.109088. Epub 2024 Jul 17.
Combining a cochlear implant with contralateral acoustic hearing typically enhances speech understanding, although this improvement varies among CI users and can lead to an interference effect. This variability may be associated with the effectiveness of the integration between electric and acoustic stimulation, which might be affected by the temporal mismatch between the two listening sides. Finding methods to compensate for the temporal mismatch might contribute to the optimal adjustment of bimodal devices and to improve hearing in CI users with contralateral acoustic hearing. The current study investigates cortical auditory evoked potentials (CAEPs) in normal hearing listeners (NH) and CI users with contralateral acoustic hearing. In NH, the amplitude of the N1 peak and the maximum phase locking value (PLV) were analyzed under monaural, binaural, and binaural temporally mismatched conditions. In CI users, CAEPs were measured when listening with CI only (CIS_only), acoustically only (AS_only) and with both sides together (CIS+AS). When listening with CIS+AS, various interaural delays were introduced between the electric and acoustic stimuli. In NH listeners, interaural temporal mismatch resulted in decreased N1 amplitude and PLV. Moreover, PLV is suggested as a more sensitive measure to investigate the integration of information between the two listening sides. CI users showed varied N1 latencies between the AS_only and CIS_only listening conditions, with increased N1 amplitude when the temporal mismatch was compensated. A tendency towards increased PLV was also observed, however, to a lesser extent than in NH listeners, suggesting a limited integration between electric and acoustic stimulation. This work highlights the potential of CAEPs measurement to investigate cortical processing of the information between two listening sides in NH and bimodal CI users.
将人工耳蜗与对侧声觉相结合通常可以提高言语理解能力,尽管这种改善因人而异,并可能导致干扰效应。这种可变性可能与电刺激和声刺激的整合效果有关,而整合效果可能受到两个聆听侧之间的时间失配的影响。寻找补偿时间失配的方法可能有助于对双耳设备进行最佳调整,并改善具有对侧声觉的人工耳蜗使用者的听力。本研究调查了正常听力者(NH)和具有对侧声觉的人工耳蜗使用者的皮质听觉诱发电位(CAEPs)。在 NH 中,在单耳、双耳和双耳时间失配条件下分析了 N1 峰的振幅和最大相位锁定值(PLV)。在具有对侧声觉的人工耳蜗使用者中,仅使用人工耳蜗(CIS_only)、仅使用声学(AS_only)和同时使用两侧(CIS+AS)进行聆听时测量 CAEPs。当使用 CIS+AS 进行聆听时,在电刺激和声学刺激之间引入了各种耳间延迟。在 NH 聆听者中,耳间时间失配导致 N1 振幅和 PLV 降低。此外,PLV 被建议作为一种更敏感的测量方法,以研究两个聆听侧之间的信息整合。人工耳蜗使用者在 AS_only 和 CIS_only 聆听条件之间显示出不同的 N1 潜伏期,当时间失配得到补偿时,N1 振幅增加。还观察到 PLV 增加的趋势,但程度不及 NH 聆听者,这表明电刺激和声学刺激之间的整合有限。这项工作强调了 CAEPs 测量在研究 NH 和双耳人工耳蜗使用者两个聆听侧之间信息的皮质处理方面的潜力。