首页> 外文会议>2011 IEEE/ICME International Conference on Complex Medical Engineering >Mechanisms of bone-conducted ultrasonic (BCU) perception assessed by electrophysiological measurements in humans
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Mechanisms of bone-conducted ultrasonic (BCU) perception assessed by electrophysiological measurements in humans

机译:通过人体电生理测量评估骨传导超声(BCU)感知的机制

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Several studies have reported that bone-conducted ultrasound (BCU) is even perceived by the profoundly sensorineural deaf; however, the mechanisms involved remain unclear. We previously reported some unique characteristics of BCU perception that suggest unique neurophisiological mechanisms. For example: (1) the pitch of BCU is 10-odd kHz and is independent of its frequency; (2) no beats occur between BCU and 10-odd-kHz air-conducted sinusoids; (3) BCU masks 10–14 kHz air-conducted sounds; and (4) the dynamic range of loudness for BCU is less than 20 dB. In the present study, several electrophysiological measurements were carried out to clarify the neural pathway involved in BCU perception. Specifically, auditory brainstem responses (ABRs), middle latency responses (MLRs), and cortical magnetic activities evoked by BCU were measured in humans. Substantial ABRs (wave I –V) and MLRs were evoked by BCU as well as air-conducted audible sound. In terms of cortical activities, clear N1m responses were elicited by BCU, with their sources being localized in the auditory cortices. However, BCU showed later, smaller, more posterior, and more lateral sources than audible-frequency sounds, and therefore did not appear to follow a tonotopic organization at the cortical level. These results indicate that: (1) the cochlea substantially contributes to BCU perception; (2) BCU goes through the normal auditory pathway and there is no special organ for BCU perception; and (3) some differences in the inner ear mechanisms may exist between audible sounds and BCU.
机译:几项研究报告说,深部感音神经性聋甚至可以感知到骨传导超声(BCU)。但是,所涉及的机制仍不清楚。我们先前报道了BCU感知的一些独特特征,这些特征暗示了独特的神经生理机制。例如:(1)BCU的音高为10几千赫兹,并且与频率无关。 (2)在BCU和10 kHz以上的空气传导正弦波之间没有节拍发生; (3)BCU掩盖10–14 kHz的空气传导声音; (4)BCU的响度动态范围小于20 dB。在本研究中,进行了几次电生理学测量,以阐明参与BCU感知的神经通路。具体而言,在人中测量了BCU诱发的听觉脑干反应(ABR),中潜伏期反应(MLR)和皮质磁活动。 BCU引起大量的ABR(I – V波)和MLR以及空气传导的可听声音。在皮层活动方面,BCU引起了清晰的N1m反应,其来源位于听觉皮层。但是,BCU显示的频率比可听频率的声音更晚,更小,更靠后且更偏向侧面,因此在皮质水平上似乎没有遵循声调组织。这些结果表明:(1)耳蜗实质上有助于BCU的感知; (2)BCU通过正常的听觉通路,没有特殊的器官可以感知BCU; (3)声音和BCU之间可能在内耳机制上存在差异。

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