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首页> 外文期刊>Japanese journal of applied physics >Measurements of vibration at the external auditory meatus and the upper limb in the living human body caused by distantly presented bone-conducted ultrasound
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Measurements of vibration at the external auditory meatus and the upper limb in the living human body caused by distantly presented bone-conducted ultrasound

机译:外观听觉振动的振动和由远端呈现的骨对骨骼超声引起的生活人体中的上肢

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摘要

In bone conduction, vibrators are usually pressed onto the mastoid process, however, bone-conducted ultrasound (BCU) presented to body parts distant from the head can also be perceived. To elucidate mechanisms of the distantly presented BCU perception, transmissions of BCU were investigated on living human bodies. First, vibration at the external auditory meatus were measured when 30 kHz BCU was presented to distal parts. Second, vibrations of the upper limb were measured at nine surface points lined up straight from the forearm to shoulder when 30 kHz BCU was presented to nearby the wrist. The results showed that prominent spectrum peaks corresponding to the stimulus-frequency were observed at all parts. The vibration tended to decrease depending on the distance between the stimulus and measurement points, however, some exceptions existed. Efficiency of the BCU transmission seems to vary depending on factors like shape of the body, acoustical properties of the tissue, and coupling of the vibrator and the skin. (C) 2019 The Japan Society of Applied Physics
机译:在骨传导中,通常将振动器压在乳突过程上,然而,也可以感知呈现给身体部位的骨头传导超声(BCU)。为了阐明远方呈现的BCU感知的机制,研究了BCU的传播对活体尸体。首先,当30 kHz BCU向远端部件提出时,测量外观听筒的振动。其次,当30kHzBCU向附近的手腕上呈现时,在直接从前臂向肩部直接排行的九个表面点测量上肢的振动。结果表明,在所有部件都观察到对应于刺激频率的突出谱峰。然而,振动倾向于减少刺激和测量点之间的距离,但是存在一些例外。 BCU传输的效率似乎根据身体形状,组织的声学性质和振动器和皮肤的耦合而变化。 (c)2019年日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2019年第sg期|SGGE12.1-SGGE12.8|共8页
  • 作者单位

    Chiba Univ Grad Sch Sci & Engn Dept Med Engn Chiba 2638522 Japan;

    Chiba Univ Grad Sch Sci & Engn Dept Med Engn Chiba 2638522 Japan|Chiba Univ Ctr Frontier Med Engn Chiba 2638522 Japan|Chiba Univ Hosp Med Tech Link Ctr Chiba 2608677 Japan;

    Chiba Univ Grad Sch Sci & Engn Dept Med Engn Chiba 2638522 Japan|Chiba Univ Ctr Frontier Med Engn Chiba 2638522 Japan|Chiba Univ Hosp Med Tech Link Ctr Chiba 2608677 Japan;

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