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A Study on Improvement Level of Speech Quality with Covering Bone Conduction Microphone for MRI examination

机译:覆盖骨传导麦克风改进水平的研究MRI检查

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To overcome the loudness of a magnetic resonance imaging (MRI) scanner in operation, which can be 100 dB or more, the patient undergoing a scan is typically given an emergency buzzer to use in case of distress. Instead, we propose using a piezoelectric bone-conduction microphone. However, the MRI noise induces vibrations in the patient's body that degrade the speech quality. Our aim is to analyze the speech quality when using a bone-conduction microphone by estimating the effectiveness of shielding the microphone to make the patient's voice clearer against the noise. First, we calculate the level of improvement using a vibration propagation model and the approach of distributed constant on electronic circuit theory, and we design an experiment involving a human phantom made of ceramic and silicone. Next, we measure the vibration acceleration levels of a bone-conducted voice and MRI acoustic noise, and we calculate the level of improvement using the signal-to-noise ratio both with and without shielding the bone-conduction microphone. Here, the signal is the vibration acceleration level of the bone-conducted voice and the noise is the vibration acceleration level of the MRI acoustic noise. The SNR is -13 dB without shielding and -7 dB with 5600 mm~2 of shielding, which corresponds to an improvement in speech quality of 6 dB. This result shows that whoever is operating the MRI could hear a patient with a relatively quiet voice against 100 dB of MRI noise.
机译:为了克服磁共振成像(MRI)扫描仪在操作中的响度,可以是100dB或更大的操作,经历扫描的患者通常给予紧急蜂鸣器以在遇险的情况下使用。相反,我们建议使用压电骨传导麦克风。然而,MRI噪声会引起患者体内的振动,从而降低语音质量。我们的目的是通过估计屏蔽麦克风的有效性时使用骨传导麦克风来分析语音质量,使患者的声音更清除噪音。首先,我们使用振动传播模型计算改进水平和电子电路理论上的分布式常数方法,我们设计了一种涉及由陶瓷和硅树脂制成的人类模型的实验。接下来,我们测量骨导电的语音和MRI声学噪声的振动加速度水平,并且我们使用且不屏蔽骨传导麦克风的信噪比来计算改进水平。这里,信号是骨传导的语音的振动加速度水平,噪声是MRI声学噪声的振动加速度水平。 SNR为-13 dB而无需屏蔽和-7 dB,屏蔽5600 mm〜2,这对应于6 dB的语音质量的提高。该结果表明,无论谁操作MRI都可以听到一个对100 dB的MRI噪声具有相对安静的声音的患者。

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