首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Evaluating Psychophysical Polarity Sensitivity as an Indirect Estimate of Neural Status in Cochlear Implant Listeners
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Evaluating Psychophysical Polarity Sensitivity as an Indirect Estimate of Neural Status in Cochlear Implant Listeners

机译:评价心理物理极性敏感性作为人工耳蜗植入听众的神经状态的间接估计。

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摘要

The physiological integrity of spiral ganglion neurons is presumed to influence cochlear implant (CI) outcomes, but it is difficult to measure neural health in CI listeners. Modeling data suggest that, when peripheral processes have degenerated, anodic stimulation may be a more effective neural stimulus than cathodic stimulation. The primary goal of the present study was to evaluate the emerging theory that polarity sensitivity reflects neural health in CI listeners. An ideal in vivo estimate of neural integrity should vary independently of other factors known to influence the CI electrode-neuron interface, such as electrode position and tissue impedances. Thus, the present analyses quantified the relationships between polarity sensitivity and (1) electrode position estimated via computed tomography imaging, (2) intracochlear resistance estimated via electrical field imaging, and (3) focused (steered quadrupolar) behavioral thresholds, which are believed to reflect a combination of local neural health, electrode position, and intracochlear resistance. Eleven adults with Advanced Bionics devices participated. To estimate polarity sensitivity, electrode-specific behavioral thresholds in response to monopolar, triphasic pulses where the central high-amplitude phase was either anodic (CAC) or cathodic (ACA) were measured. The polarity effect was defined as the difference in threshold response to the ACA compared to the CAC stimulus. Results indicated that the polarity effect was not related to electrode-to-modiolus distance, electrode scalar location, or intracochlear resistance. Large, positive polarity effects, which may indicate SGN degeneration, were associated with relatively high focused behavioral thresholds. The polarity effect explained a significant portion of the variation in focused thresholds, even after controlling for electrode position and intracochlear resistance. Overall, these results provide support for the theory that the polarity effect may reflect neural integrity in CI listeners. Evidence from this study supports further investigation into the use of polarity sensitivity for optimizing individual CI programming parameters.
机译:螺旋神经节神经元的生理完整性被认为会影响人工耳蜗植入(CI)的结果,但很难衡量CI听众的神经健康状况。建模数据表明,当外围过程退化时,阳极刺激可能比阴极刺激更有效。本研究的主要目标是评估新兴的理论,即极性敏感性反映了CI听众的神经健康。体内神经完整性的理想估计值应独立于已知会影响CI电极-神经元界面的其他因素(例如电极位置和组织阻抗)而变化。因此,本分析量化了极性灵敏度与(1)通过计算机断层摄影成像估计的电极位置,(2)通过电场成像估计的耳蜗内电阻以及(3)聚焦(转向四极)行为阈值之间的关系,据信反映了局部神经健康,电极位置和耳蜗内阻力的组合。十一名使用Advanced Bionics设备的成年人参加了会议。为了估计极性灵敏度,测量了响应于中心高振幅相为阳极(CAC)或阴极(ACA)的单极性三相脉冲的电极特定的行为阈值。极性影响定义为与CAC刺激相比,对ACA的阈值响应差异。结果表明,极性效应与电极到血浆的距离,电极标量位置或耳蜗内电阻无关。较大的正极性效应(可能表明SGN变性)与相对较高的关注行为阈值相关。极性效应解释了聚焦阈值变化的重要部分,即使在控制了电极位置和耳蜗内电阻之后也是如此。总体而言,这些结果为极性效应可能反映CI听众中神经完整性的理论提供了支持。这项研究的证据支持进一步研究极性灵敏度的使用,以优化单个CI编程参数。

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