Gordon Karen A, Valero Jerome, Papsin Blake C
The Hospital for Sick Children, Toronto, Ontario, Canada.
Neuroreport. 2007 Apr 16;18(6):613-7. doi: 10.1097/WNR.0b013e3280b10c15.
Binaural auditory brainstem processing was examined using evoked potential measures in 40 children who were implanted early and received a second implant simultaneously or after long or short periods of unilateral implant use. Wave latencies were shorter when evoked by the experienced versus naïve implanted ear at initial bilateral activation. Binaural difference waves were detected in most children in response to apical but not basal electrode stimulation and were prolonged in latency in children implanted after long or short delays between implants. Timing differences between the implanted ears in children receiving sequential but not simultaneous bilateral implants reflect a relative immaturity of pathways innervating the second ear and results in abnormal timing of binaural processing at this initial implant stage.
在40名早期接受植入且在单侧植入使用不同时长后同时或先后接受第二次植入的儿童中,采用诱发电位测量法对双耳听觉脑干处理进行了检查。在首次双侧激活时,由经验丰富的植入耳诱发的波潜伏期比未经训练的植入耳诱发的波潜伏期更短。大多数儿童在接受尖电极而非基底电极刺激时可检测到双耳差异波,且在植入间隔时间长或短后接受植入的儿童中,双耳差异波的潜伏期延长。在接受顺序而非同时双侧植入的儿童中,植入耳之间的时间差异反映了支配第二只耳朵的通路相对不成熟,并导致在这个初始植入阶段双耳处理的时间异常。