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Plenary talks: A vibrotactile sensory substitution device for the deaf and profoundly hearing impaired

机译:全体会议:针对聋人和严重听力障碍者的触觉触觉替代设备

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There are 2 million functionally deaf individuals in the United States and an estimated 53 million worldwide. The cochlear implant (CI) is an effective solution for regaining hearing capabilities for certain populations within this group, but not for all. First, CIs are expensive, ranging from $40,000 to $90,000. Second, CIs require invasive surgery. Third, there is low efficacy of late CI implantation in early-onset deaf adults. Given these considerations, millions of deaf individuals would benefit from a hearing replacement that has low cost, does not involve an invasive procedure, and may have a higher efficacy for early-onset deaf adults. To this end, we are developing a low-cost, non-invasive, plasticity-based solution to deliver auditory information to the brain. Specifically, we are developing a “vibratory vest” by which auditory information is captured, digitally processed, and delivered to the skin of the torso using small vibratory motors. The term for such a technique is sensory substitution, and has previously proven successful in allowing those who are blind to have visual experience through the tongue or skin. In this talk, we will present our fully functional, real-time, Bluetooth-operated prototype, and demonstrate our results from several speech perception experiments. Funding for this research is supported by a training fellowship from the Keck Center of Interdisciplinary Bioscience Training of the Gulf Coast Consortia (NIBIB Grant No. 5T32EB006350-05) and the Renz Foundation.
机译:在美国,有200万功能性失聪者,全球估计有5300万。人工耳蜗(CI)是恢复该组中某些人群(但不是全部)的听力的有效解决方案。首先,CI的价格昂贵,从40,000美元到90,000美元不等。其次,CI要求进行侵入性手术。第三,在早期发作的聋人中后期CI植入的疗效低下。鉴于这些考虑,数百万聋人将从低成本,不涉及侵入性手术的听力替代中受益,并且可能对早发性聋成年人有更高的疗效。为此,我们正在开发一种低成本,无创,基于可塑性的解决方案,以将听觉信息传递到大脑。具体来说,我们正在开发一种“振动背心”,通过它可以使用小型振动电机捕获,数字处理听觉信息并将其传递到躯干的皮肤。这种技术的术语是感觉替代,并且先前已被证明可以成功地使盲人通过舌头或皮肤获得视觉体验。在本次演讲中,我们将展示我们的全功能,实时,蓝牙操作的原型,并演示一些语音感知实验的结果。这项研究的资金由墨西哥湾沿岸财团的跨学科生物科学训练的凯克中心(NIBIB赠款5T32EB006350-05)和Renz基金会提供了培训奖学金。

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