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首页> 外文期刊>Ear and hearing. >Sound localization skills in children who use bilateral cochlear implants and in children with normal acoustic hearing.
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Sound localization skills in children who use bilateral cochlear implants and in children with normal acoustic hearing.

机译:使用双侧人工耳蜗的儿童和听力正常的儿童的声音定位技巧。

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摘要

OBJECTIVES: To measure sound source localization in children who have sequential bilateral cochlear implants (BICIs); to determine whether localization accuracy correlates with performance on a right-left discrimination task (i.e., spatial acuity); to determine whether there is a measurable bilateral benefit on a sound source identification task (i.e., localization accuracy) by comparing performance under bilateral and unilateral listening conditions; and to determine whether sound source localization continues to improve with longer durations of bilateral experience. DESIGN: Two groups of children participated in this study: a group of 21 children who received BICIs in sequential procedures (5 to 14 years) and a group of 7 typically developing children with normal acoustic hearing (5 years). Testing was conducted in a large sound-treated booth with loudspeakers positioned on a horizontal arc with a radius of 1.2 m. Children participated in two experiments that assessed spatial hearing skills. Spatial hearing acuity was assessed with a discrimination task in which listeners determined whether a sound source was presented on the right or left side of center; the smallest angle at which performance on this task was reliably above chance is the minimum audible angle. Sound localization accuracy was assessed with a sound source identification task in which children identified the perceived position of the sound source from a multiloudspeaker array (7 or 15); errors are quantified using the root mean square (RMS) error. RESULTS: Sound localization accuracy was highly variable among the children with BICIs, with RMS errors ranging from 19 to 56 degrees . Performance of the normal hearing group, with RMS errors ranging from 9 to 29 degrees was significantly better. Within the BICI group, in 11 of 21 children, RMS errors were smaller in the bilateral versus unilateral listening condition, indicating bilateral benefit. There was a significant correlation between spatial acuity and sound localization accuracy (R = 0.68, p < 0.01), suggesting that children who achieve small RMS errors tend to have the smallest minimum audible angles. Although there was large intersubject variability, testing of 11 children in the BICI group at two sequential visits revealed a subset of children who show improvement in spatial hearing skills over time. CONCLUSIONS: A subset of children who use sequential BICIs can acquire sound localization abilities, even after long intervals between activation of hearing in the first- and second-implanted ears. This suggests that children with activation of the second implant later in life may be capable of developing spatial hearing abilities. The large variability in performance among the children with BICIs suggests that maturation of sound localization abilities in children with BICIs may be dependent on various individual subject factors such as age of implantation and chronological age.
机译:目的:测量有顺序双侧人工耳蜗(BICI)的儿童的声源定位;确定定位精度是否与左右区分任务的性能(即空间敏锐度)相关;通过比较双边和单边聆听条件下的表现来确定在声源识别任务上是否有可衡量的双边收益(即定位精度);并确定声源定位是否随着双边体验时间的延长而继续改善。设计:两组儿童参加了这项研究:一组21名按顺序接受BICI的儿童(5至14岁)和一组7名通常发育为听力正常的儿童(5岁)。测试是在一个大型的经过声音处理的小房间中进行的,扬声器放置在半径为1.2 m的水平弧线上。孩子们参加了两个评估空间听力技能的实验。通过区分任务评估空间听觉敏锐度,其中听众确定中心的右侧或左侧是声源。可靠地胜任该任务的性能的最小角度是最小可听角度。通过声源识别任务评估声音的定位准确性,其中儿童从多扬声器阵列(7或15)中识别出声源的感知位置。使用均方根(RMS)误差对误差进行量化。结果:BICI患儿的声音定位准确性差异很大,RMS误差范围为19至56度。 RMS误差在9到29度之间的正常听力组的表现明显更好。在BICI组中,在21名儿童中,有11名儿童的双边和单侧听力状况的RMS误差均较小,表明双边受益。空间敏锐度和声音定位精度之间存在显着相关性(R = 0.68,p <0.01),这表明获得较小RMS误差的儿童往往具有最小的最小可听角度。尽管受试者之间存在较大差异,但连续两次对BICI组的11名儿童进行测试后发现,随着时间的推移,一部分儿童表现出空间听觉技能的改善。结论:即使在第一和第二植入耳朵的听力激活之间间隔很长时间之后,使用顺序BICI的儿童子集也可以获得声音的定位能力。这表明在生命后期激活第二种植入物的儿童可能具有发展空间听力的能力。 BICI患儿的表现差异很大,这表明BICI患儿的声音定位能力的成熟可能取决于各个个体因素,例如植入年龄和年龄。

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