McAnally K I, Brown M, Clark G M
Department of Otolaryngology, University of Melbourne, Parkville, Victoria, Australia.
Acta Otolaryngol. 1997 Nov;117(6):831-5. doi: 10.3109/00016489709114209.
Many cochlear prostheses employ charge-balanced biphasic current pulses. These pulses have little energy at low frequencies resulting in limited stimulation of low frequency hearing by mechanical responses to the electrical stimulus. However, if electro-mechanical transduction within the cochlea is nonlinear, electrical stimulation with asymmetric, charge-balanced current pulses may result in a mechanical response with significantly more low frequency energy. We estimated the mechanical response at low frequencies to pulsatile electrical stimulation of the cochlea. The auditory nerve compound action potential evoked by low frequency tones was forward-masked by a train of symmetric or asymmetric current pulses. Masking by asymmetric current pulses was not significantly different from masking by symmetric pulses matched for pulse duration and charge. In conclusion, there appears to be no advantage to using asymmetric current pulses for the mechanical stimulation of residual low frequency hearing by electrical stimulation of the cochlea.
许多人工耳蜗采用电荷平衡双相电流脉冲。这些脉冲在低频时能量很小,导致通过对电刺激的机械反应对低频听力的刺激有限。然而,如果耳蜗内的机电转换是非线性的,用不对称、电荷平衡的电流脉冲进行电刺激可能会产生具有明显更多低频能量的机械反应。我们估计了耳蜗搏动性电刺激在低频时的机械反应。低频音调诱发的听神经复合动作电位被一系列对称或不对称电流脉冲正向掩蔽。不对称电流脉冲的掩蔽与脉冲持续时间和电荷量匹配的对称脉冲的掩蔽没有显著差异。总之,通过耳蜗电刺激对残余低频听力进行机械刺激时,使用不对称电流脉冲似乎没有优势。