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Detection of restoration faults under fillings in human tooth using ultrasound

机译:超声检测人牙填充物下的修复缺陷

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An ultrasound contact imaging technique for detecting the restoration faults under the fillings in human tooth is proposed. A linear frequency modulated chirp signal is used to improve the signal-to-noise ratio and increase the penetration depth to allow the detection of the echoes from restoration-tooth boundary at 200 kPa acoustic pressure. Although the detection threshold is improved, it is observed that the duration of the excitation signal is longer than the duration of time of flight in the restoration, which causes signal overlapping between consecutive internal reflections. Due to these reverberations, the applied chirp signals interfere arbitrarily with the successive reflections, where the received echoes are not identifiable in the time domain. Separation in the frequency domain is not possible, since all reflections have the same bandwidth and the center frequency. In this work, the fractional Fourier transform (FrFT) is employed to separate chirp signals overlapping in both time and frequency domains. By analyzing the received echoes with FrFT, this work presents the ultrasonic non-destructive evaluation of dental restorations in human teeth.
机译:提出了一种超声波接触成像技术,用于检测人牙填充物下方的修复缺陷。线性调频线性调频信号用于改善信噪比并增加穿透深度,以检测200 kPa声压下来自修复齿边界的回波。尽管提高了检测阈值,但可以观察到激励信号的持续时间长于修复体中飞行的持续时间,这导致信号在连续的内部反射之间重叠。由于这些混响,所施加的线性调频信号会任意干扰连续的反射,此时在时域中无法识别出接收到的回波。由于所有反射都具有相同的带宽和中心频率,因此无法在频域中进行分离。在这项工作中,分数阶傅立叶变换(FrFT)用于分离在时域和频域重叠的线性调频信号。通过用FrFT分析接收到的回波,这项工作提出了对人类牙齿中的牙齿修复体的超声波无损评估。

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