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Effects of stimulation level and electrode pairing on the binaural interaction component of the electrically evoked auditory brain stem response.

机译:刺激水平和电极配对对电诱发听性脑干反应的双耳相互作用成分的影响。

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OBJECTIVES: The purpose of this study was to investigate the effects of stimulation level and electrode pairing on the binaural interaction component (BIC) of the electrically evoked auditory brain stem response (EABR) in Nucleus cochlear implant (CI) users. DESIGN: Ten postlingually deafened adult CI users participated in this study. EABRs were measured using loudness balanced, biphasic current pulses presented in the left monaural, right monaural, and bilateral stimulation conditions. BICs were computed based on measures of the EABR obtained for each subject by pairing the electrode 12 (of 22 intracochlear electrodes) in the right ear with each of 11 electrodes spaced across the electrode array in the left ear. The effect of stimulation level on the amplitude of the BIC was investigated by measuring growth functions of the BIC from six subjects. The effect of electrode pairing on the amplitude of the BIC was studied at high stimulation levels in 10 subjects and at low stimulation levels in seven subjects. The high stimulation level was chosen as the 90% point of the subject's dynamic range (DR) or the highest stimulation level in which the electrophysiologic recordings were not contaminated by muscle artifacts. The low stimulation level was chosen as a level that was 10% point of subject's DR higher than the BIC threshold for six of these seven subjects. For one subject, BIC thresholds were not available and the low stimulation level was referred to the 70% point of subject's DR. RESULTS: BICs were successfully recorded from all 11 interaural electrode pairs for a majority of subjects tested at both stimulation levels. BIC amplitudes increased with stimulation level. The effect of stimulation level on latencies of the BIC was less robust. At high stimulation levels, BIC amplitudes did not change significantly as the stimulating electrode used in the left ear was systematically varied. When low stimulation levels were used, BIC amplitude was maximal for interaural electrode pairs with similar intracochlear positions and decreased when the offset between interaural electrodes increased. CONCLUSIONS: This study demonstrates that stimulation level affects amplitudes of the BIC response. It is possible to record the BIC of the EABR in bilateral CI users even from interaural electrode pairs that have large interaural offsets. This finding suggests that when high-level stimuli are used, there is a broad pattern of current spread within the two cochleae. At lower stimulation levels, the spread of excitation within the cochlea is reduced making the effect of electrode pairing on the amplitude of the BIC more pronounced.
机译:目的:本研究的目的是研究刺激水平和电极配对对人工耳蜗植入(CI)用户的电诱发听性脑干反应(EABR)的双耳相互作用成分(BIC)的影响。设计:十名耳聋的成人CI用户参加了这项研究。使用在左单耳,右单耳和双侧刺激条件下呈现的响度平衡的双相电流脉冲来测量EABR。通过将右耳中的(12个耳蜗内电极)22个电极与左耳中的11个电极中的每个电极配对,基于每个受试者获得的EABR的测量值来计算BIC。通过测量六个受试者的BIC生长功能,研究了刺激水平对BIC幅度的影响。在高刺激水平的10位受试者和低刺激水平的7位受试者中研究了电极配对对BIC幅度的影响。选择高刺激水平作为受试者动态范围(DR)的90%点,或者将其作为电生理记录不受肌肉伪影污染的最高刺激水平。选择低刺激水平作为比这七个受试者中的六个受试者的BIC阈值高10%的受试者DR的水平。对于一个受试者,BIC阈值不可用,低刺激水平被称为受试者DR的70%。结果:在所有两种刺激水平下,测试的大多数受试者的所有11对耳间电极均成功记录了BIC。 BIC振幅随刺激水平增加。刺激水平对BIC潜伏期的影响较弱。在高刺激水平下,由于左耳中使用的刺激电极发生了系统性变化,BIC幅度没有明显变化。当使用低刺激水平时,具有相似耳蜗内位置的双耳电极对的BIC幅度最大,而当双耳电极之间的偏移增加时,BIC幅度减小。结论:这项研究证明刺激水平会影响BIC反应的幅度。甚至可以从具有较大听觉偏移的听觉电极对中记录双边CI用户中EABR的BIC。这一发现表明,当使用高水平刺激时,两个耳蜗内电流分布的模式很宽。在较低的刺激水平下,耳蜗内激发的扩散减小,从而使电极配对对BIC幅度的影响更加明显。

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