KNO/Audiology, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.
Hear Res. 2010 Dec 1;270(1-2):28-38. doi: 10.1016/j.heares.2010.10.001. Epub 2010 Oct 12.
Tripolar and other electrode configurations that use simultaneous stimulation inside the cochlea have been tested to reduce channel interactions compared to the monopolar stimulation conventionally used in cochlear implant systems. However, these "focused" configurations require increased current levels to achieve sufficient loudness. In this study, we investigate whether highly accurate recordings of the intracochlear electrical field set up by monopolar and tripolar configurations correlate to their effect on loudness. We related the intra-scalar potential distribution to behavioral loudness, by introducing a free parameter (α) which parameterizes the degree to which the potential field peak set up inside the scala tympani is still present at the location of the targeted neural tissue. Loudness balancing was performed on four levels between behavioral threshold and the most comfortable loudness level in a group of 10 experienced Advanced Bionics cochlear implant users. The effect of the amount of focusing on loudness was well explained by α per subject location along the basilar membrane. We found that α was unaffected by presentation level. Moreover, the ratios between the monopolar and tripolar currents, balanced for equal loudness, were approximately the same for all presentation levels. This suggests a linear loudness growth with increasing current level and that the equal peak hypothesis may predict the loudness of threshold as well as at supra-threshold levels. These results suggest that advanced electrical field imaging, complemented with limited psychophysical testing, more specifically at only one presentation level, enables estimation of the loudness growth of complex electrode configurations.
已经测试了使用耳蜗内同时刺激的三极和其他电极配置,以减少与传统用于耳蜗植入系统的单极刺激相比的通道相互作用。然而,这些“聚焦”配置需要增加电流水平以达到足够的响度。在这项研究中,我们研究了单极和三极配置建立的耳蜗内电场的高精度记录是否与其对响度的影响相关。我们通过引入一个自由参数(α)将标量电位分布与行为响度相关联,该参数参数化了在耳蜗内建立的电位场峰值在靶向神经组织位置仍然存在的程度。在一组 10 名经验丰富的先进仿生耳蜗植入使用者中,在行为阈值和最舒适的响度级之间的四个水平上进行了响度平衡。根据每个受试者在基底膜上的位置,α 很好地解释了聚焦对响度的影响。我们发现α不受呈现水平的影响。此外,为了相等的响度而平衡的单极和三极电流之间的比值,对于所有呈现水平几乎相同。这表明随着电流水平的增加,响度呈线性增长,并且等峰值假设可能预测阈值以及阈上水平的响度。这些结果表明,先进的电场成像,辅以有限的心理物理测试,特别是在一个呈现水平,能够估计复杂电极配置的响度增长。