Litvak Leonid M, Spahr Anthony J, Emadi Gulam
Advanced Bionics Corporation, Sylmar, California 91342, USA.
J Acoust Soc Am. 2007 Aug;122(2):967-81. doi: 10.1121/1.2749414.
Most cochlear implant strategies utilize monopolar stimulation, likely inducing relatively broad activation of the auditory neurons. The spread of activity may be narrowed with a tripolar stimulation scheme, wherein compensating current of opposite polarity is simultaneously delivered to two adjacent electrodes. In this study, a model and cochlear implant subjects were used to examine loudness growth for varying amounts of tripolar compensation, parameterized by a coefficient sigma, ranging from 0 (monopolar) to 1 (full tripolar). In both the model and the subjects, current required for threshold activation could be approximated by I(sigma)=Ithr(0)(1-sigmaK), with fitted constants Ithr(0) and K. Three of the subjects had a "positioner," intended to place their electrode arrays closer to their neural tissue. The values of K were smaller for the positioner users and for a "close" electrode-to-tissue distance in the model. Above threshold, equal-loudness contours for some subjects deviated significantly from a linear scale-up of the threshold approximations. The patterns of deviation were similar to those observed in the model for conditions in which most of the neurons near the center electrode were excited.
大多数人工耳蜗策略采用单极刺激,这可能会引起听觉神经元相对广泛的激活。采用三极刺激方案时,活动的传播范围可能会变窄,即向两个相邻电极同时施加相反极性的补偿电流。在本研究中,使用了一个模型和人工耳蜗受试者来检测不同程度三极补偿下的响度增长情况,该补偿程度由系数σ参数化,范围从0(单极)到1(完全三极)。在模型和受试者中,阈值激活所需的电流可以近似表示为I(σ)=Ithr(0)(1 - σK),其中Ithr(0)和K为拟合常数。三名受试者佩戴了“定位器”,旨在使他们的电极阵列更靠近神经组织。对于佩戴定位器的使用者以及模型中电极与组织“近距离”的情况,K值较小。在阈值以上,部分受试者的等响度轮廓与阈值近似值的线性放大有显著偏差。偏差模式与模型中中心电极附近大多数神经元被激发的情况所观察到的相似。