University of Frankfurt Main, Clinic for Otolaryngology, Audiological Acoustics, 60590 Frankfurt, Germany.
Hear Res. 2010 Jan;259(1-2):75-85. doi: 10.1016/j.heares.2009.10.003. Epub 2009 Oct 20.
Biphasic electrical pulses are the standard stimulation pulses in current cochlear implants. In auditory brainstem recordings biphasic pulses generate a significant artifact that disrupts brainstem responses, which are magnitudes smaller. Triphasic pulses may minimize artifacts by restoring the neural membrane to its resting potential faster than biphasic pulses and make auditory brainstem responses detection easier. We compared biphasic pulses with triphasic and precision triphasic pulses to evoke brainstem responses in human subjects. For this purpose, electrically evoked brainstem response audiometry was performed in 10 (11 ears) cochlear implant patients. Artifacts and brainstem responses evoked by bi- and triphasic stimulation were analyzed. Artifact amplitude and decay time were related to pulse pattern shape, but application of averaging and alternation reduced the deterioration of electrically evoked brainstem responses independent of pulse pattern shape. Contrary to our expectations, biphasic pulses showed a higher detectability in comparison to triphasic pulse stimulation at the same stimulation amplitude.
双相电脉冲是目前耳蜗植入物的标准刺激脉冲。在听觉脑干记录中,双相脉冲会产生显著的伪迹,从而干扰幅度较小的脑干反应。相比双相脉冲,三相脉冲通过更快地将神经膜恢复到静息电位,从而最小化伪迹,并使听觉脑干反应检测更容易。我们将双相脉冲与三相和精密三相脉冲进行比较,以在人体受试者中诱发脑干反应。为此,对 10 名(11 只耳朵)人工耳蜗植入患者进行了电诱发脑干反应测听。分析了双相和三相刺激诱发的伪迹和脑干反应。伪迹幅度和衰减时间与脉冲模式形状有关,但应用平均和交替可以降低电诱发脑干反应的恶化,而与脉冲模式形状无关。与我们的预期相反,在相同的刺激幅度下,与三相脉冲刺激相比,双相脉冲显示出更高的可检测性。