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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Diagnostic Ultrasound Tooth Imaging Using Fractional Fourier Transform
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Diagnostic Ultrasound Tooth Imaging Using Fractional Fourier Transform

机译:使用分数傅里叶变换的超声诊断牙齿成像

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摘要

An ultrasound contact imaging method is proposed to measure the enamel thickness in the human tooth. A delay-line transducer with a working frequency of 15 MHz is chosen to achieve a minimum resolvable distance of 400 ;C;m in human enamel. To confirm the contact between the tooth and the transducer, a verification technique based on the phase shift upon reflection is used. Because of the high attenuation in human teeth, linear frequency-modulated chirp excitation and pulse compression are exploited to increase the penetration depth and improve the SNR. Preliminary measurements show that the enamel-dentin boundary creates numerous internal reflections, which cause the applied chirp signals to interfere arbitrarily. In this work, the fractional Fourier transform (FrFT) is employed for the first time in dental imaging to separate chirp signals overlapping in both time and frequency domains. The overlapped chirps are compressed using the FrFT and matched filter techniques. Micro-computed tomography is used for validation of the ultrasound measurements for both techniques. For a human molar, the thickness of the enamel layer is measured with an average error of 5.5% after compressing with the FrFT and 13.4% after compressing with the matched filter based on the average speed of sound in human teeth.
机译:提出了一种超声接触成像方法来测量人牙釉质厚度。选择工作频率为15 MHz的延迟线传感器,以在人体珐琅质中实现最小可分辨距离400°C; m。为了确认牙齿与换能器之间的接触,使用了基于反射时相移的验证技术。由于人类牙齿的高衰减,人们开发了线性调频线性调频脉冲激励和脉冲压缩技术来增加穿透深度并改善SNR。初步测量显示,牙釉质-牙本质边界会产生大量内部反射,这会导致施加的线性调频信号任意干扰。在这项工作中,分数阶傅里叶变换(FrFT)在牙科成像中首次被采用,以分离在时域和频域重叠的线性调频信号。重叠的线性调频信号使用FrFT和匹配滤波器技术进行压缩。微型计算机断层扫描用于两种技术的超声测量结果的验证。对于人类臼齿,根据人类牙齿的平均声速,以FrFT压缩后测得的牙釉质层厚度的平均误差为5.5%,使用匹配过滤器压缩后测得的牙釉质层的平均误差为13.4%。

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