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首页> 外文期刊>Ear and hearing. >A comparison of two loudness balancing tasks in cochlear implant subjects using bipolar stimulation.
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A comparison of two loudness balancing tasks in cochlear implant subjects using bipolar stimulation.

机译:比较使用双极刺激的人工耳蜗受试者中两个响度平衡任务。

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OBJECTIVE: In this study, the accuracy of independent measurement of the loudness of different electrodes in a cochlear implant (the "reference" method) was compared with the accuracy of measurements that depend on the results of previous measurements (the "adjacent" method) by evaluating the similarity between and the slopes of the loudness balance curves, and the variability in the measured loudness balance values. DESIGN: The two methods of loudness balancing differed only in the reference electrode used. In the adjacent method, the loudness of the test electrode was sequentially adjusted to match the loudness of an adjacent reference electrode, whereas in the reference method, the loudness of all test electrodes was adjusted to match that of a common reference electrode. Five subjects implanted with the Nucleus 22 device completed both methods of loudness balancing for all of their functioning electrodes. Each test/reference electrode pair was loudness balanced six times to assess the variability of the two methods. RESULTS: The loudness balance curves for the two methods were statistically correlated (p < 0.001) for all subjects. The slopes of the regression lines for the loudness balance curves were statistically different from zero (p < 0.05) for roughly half of the subjects for each method. A sign test indicated statistically different means for the basal set and apical set of measurements for only one subject for both methods. The variance in the measured values across electrodes for the reference method was significantly greater for three of the five subjects (p < 0.01). CONCLUSIONS: It was hypothesized that because of its dependence on previously measured values, the adjacent method could be susceptible to "drift," i.e., a shift in the overall loudness to which the electrodes are balanced. However, none of the statistical measures employed to test for drift indicated that the adjacent method was more susceptible to drift than the reference method, nor were the responses to the adjacent method more variable. Thus, based on these results, dependent measurements do not seem to be less accurate than independent measurements. The relatively higher variance for the reference method in some subjects may be due to the difficulty of comparing the loudness of stimuli that are far apart in pitch.
机译:目的:在这项研究中,将独立测量耳蜗植入物中不同电极的响度的精度(“参考”方法)与取决于先前测量结果的测量精度(“相邻”方法)进行了比较。通过评估响度平衡曲线的斜率之间的相似度和斜率,以及测得的响度平衡值的变化性。设计:响度平衡的两种方法仅在使用的参比电极上有所不同。在相邻方法中,依次调整测试电极的响度以匹配相邻参考电极的响度,而在参考方法中,将所有测试电极的响度调整为以匹配公共参考电极的响度。植入Nucleus 22装置的五名受试者完成了所有功能电极的两种响度平衡方法。每个测试/参比电极对响度平衡六次,以评估两种方法的变异性。结果:两种方法的响度平衡曲线在所有受试者中均具有统计学相关性(p <0.001)。对于每种方法,大约一半的受试者的响度平衡曲线的回归线的斜率在统计上不同于零(p <0.05)。体征测试表明两种方法仅针对一个受试者的基础测量值和顶端测量值在统计学上不同。对于五名受试者中的三名,参比方法在整个电极上的测量值方差明显更大(p <0.01)。结论:假设由于其依赖于先前测量的值,相邻的方法可能易于“漂移”,即电极平衡到的整体响度的变化。但是,没有一种用于测试漂移的统计量度表明相邻方法比参考方法更容易发生漂移,对相邻方法的响应也没有多大变化。因此,基于这些结果,相依测量似乎没有独立测量准确。在某些对象中,参考方法的相对较高方差可能是由于难以比较音高相距较远的刺激的响度。

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