Firszt Jill B, Koch Dawn Burton, Downing Mark, Litvak Leonid
Department of Otolaryngology-Head and Neck Surgery, Washington University School of Medicine, St.Louis, Missouri 63110, USA.
Otol Neurotol. 2007 Aug;28(5):629-36. doi: 10.1097/01.mao.0000281803.36574.bc.
The number of spectral channels is the number of discriminable pitches heard as current is delivered to distinct locations along the cochlea. This study aimed to determine whether cochlear implant users could hear additional spectral channels using current "steering." Current steering involves the simultaneous delivery of current to adjacent electrodes, where stimulation can be steered to sites between the contacts by varying the proportion of current delivered to each electrode in an electrode pair. Current steering may increase the number of spectral channels beyond the number of fixed electrode contacts.
Prospective clinical study.
Twelve tertiary care centers in North America.
The subjects were 106 adults with postlingual onset of severe-to-profound hearing loss.
Subjects received the Advanced Bionics CII or HiResolution 90K device (Advanced Bionics Corporation, Valencia, CA, USA).
After loudness balancing and pitch ranking the 3 electrode pairs (2 and 3, 8 and 9, and 13 and 14), the subjects identified the electrode with the higher pitch while current was varied proportionally between the electrodes in each pair. The smallest change in proportion yielding a discriminable change in pitch was defined as the spectral resolution.
The data from 115 ears indicate that the number of spectral channels averaged 3.8 for the basal pair, 6.0 for the midarray pair, and 5.3 for the apical pair. Assuming that the number of channels on these 3 electrode pairs represents the entire array, the total potential number of spectral channels was calculated and ranged from 8 to 451, with an average of 63.
These results indicate that additional pitch percepts can be created using current steering.
频谱通道的数量是指当电流沿着耳蜗传递到不同位置时所听到的可分辨音调的数量。本研究旨在确定人工耳蜗使用者是否能够通过电流“转向”听到更多的频谱通道。电流转向涉及同时向相邻电极输送电流,通过改变输送到电极对中每个电极的电流比例,可以将刺激引导到电极触点之间的部位。电流转向可能会使频谱通道的数量超过固定电极触点的数量。
前瞻性临床研究。
北美12家三级护理中心。
106名成人,均为语后发生重度至极重度听力损失。
受试者接受了先进生物电子公司(美国加利福尼亚州瓦伦西亚)的CII或HiResolution 90K设备。
在对3对电极(2和3、8和9以及13和14)进行响度平衡和音调排序后,受试者在每对电极之间按比例改变电流时,识别出音调较高的电极。产生可分辨音调变化的最小比例变化被定义为频谱分辨率。
来自115只耳朵的数据表明,基底电极对的频谱通道平均数量为3.8,中间阵列电极对为6.0,顶端电极对为5.3。假设这3对电极上的通道数量代表整个阵列,则计算出的频谱通道总潜在数量在8到451之间,平均为63。
这些结果表明,使用电流转向可以产生额外的音调感知。