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Sensitivity to Haptic Sound-Localization Cues at Different Body Locations

机译:在不同的身体位置对触觉声音定位线索的敏感性

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摘要

Cochlear implants (CIs) recover hearing in severely to profoundly hearing-impaired people by electrically stimulating the cochlea. While they are extremely effective, spatial hearing is typically severely limited. Recent studies have shown that haptic stimulation can supplement the electrical CI signal (electro-haptic stimulation) and substantially improve sound localization. In haptic sound-localization studies, the signal is extracted from the audio received by behind-the-ear devices and delivered to each wrist. Localization is achieved using tactile intensity differences (TIDs) across the wrists, which match sound intensity differences across the ears (a key sound localization cue). The current study established sensitivity to across-limb TIDs at three candidate locations for a wearable haptic device, namely: the lower tricep and the palmar and dorsal wrist. At all locations, TID sensitivity was similar to the sensitivity to across-ear intensity differences for normal-hearing listeners. This suggests that greater haptic sound-localization accuracy than previously shown can be achieved. The dynamic range was also measured and far exceeded that available through electrical CI stimulation for all of the locations, suggesting that haptic stimulation could provide additional sound-intensity information. These results indicate that an effective haptic aid could be deployed for any of the candidate locations, and could offer a low-cost, non-invasive means of improving outcomes for hearing-impaired listeners.
机译:耳蜗植入物(CIS)通过电刺激耳蜗来恢复严重的听力障碍者。虽然它们非常有效,但空间听力通常受到严重限制。最近的研究表明,触觉刺激可以补充电气CI信号(电触觉刺激)并大大改善声音定位。在触觉声音定位研究中,信号从耳后设备接收的音频提取并递送到每个手腕。使用手腕上的触觉强度差异(TID)实现定位,该触觉强度差异在耳朵上匹配声音强度差异(一个关键的声音定位提示)。目前的研究在可穿戴触觉装置的三个候选位置建立了对横向肢体的敏感性,即:下三滴水和掌手和背部手腕。在所有位置,TID敏感性类似于对正常听力侦听器对耳耳强度差异的敏感性。这表明可以实现比先前所示的更大的触觉声音定位精度。还测量了动态范围,远远超出了通过对所有位置的电气CI刺激可获得的,这表明触觉刺激可以提供额外的声强信息。这些结果表明,可以为任何候选地点部署有效的触觉援助,并且可以为改善听力受损听众的结果提供低成本,非侵入性手段。

著录项

  • 期刊名称 Sensors (Basel Switzerland)
  • 作者单位
  • 年(卷),期 2021(21),11
  • 年度 2021
  • 页码 3770
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:跨莫代尔;耳蜗植入;电触觉刺激;触觉声音定位;助听器;听力受损;神经高原;躯体感应;触觉;触觉;触觉;

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