Phantom electrode (PE) stimulation consists of out-of-phase stimulation of two electrodes. When presented at the apex of the electrode array, phantom stimulation is known to produce a lower pitch sensation than monopolar (MP) stimulation on the most apical electrode. The ratio of the current between the primary electrode (PEL) and the compensating electrode (CEL) is represented by the coefficient Ï, which ranges from 0 (monopolar) to 1 (full bipolar). The exact mechanism by which PE stimulation produces a lower pitch sensation is unclear. In the present study, unmasked and masked thresholds were obtained using a forward masking paradigm to estimate the spread of current for MP and PE stimulation. Masked thresholds were measured for two phantom electrode configurations (1) PELÂ =Â 4, CELÂ =Â 5 (lower pitch phantom) and (2) PELÂ =Â 4, CELÂ =Â 3 (higher pitch phantom). The unmasked thresholds were subtracted from the masked thresholds to obtain masking patterns which were normalized to their peak. The masking patterns reveal (1) differences in the spread of excitation that are consistent with the direction of pitch shift produced by PE stimulation, and (2) narrower spread of electrical excitation for PE stimulation relative to MP stimulation.
Masking patterns for monopolar and phantom electrode stimulation in cochlear implants.
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作者:Saoji Aniket A, Landsberger David M, Padilla Monica, Litvak Leonid M
| 期刊: | Hearing Research | 影响因子: | 2.500 |
| 时间: | 2013 | 起止号: | 2013 Apr;298:109-16 |
| doi: | 10.1016/j.heares.2012.12.006 | ||
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