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基于线性调频编码非线性时间反转声学的人牙超声成像。

Imaging of human tooth using ultrasound based chirp-coded nonlinear time reversal acoustics.

机构信息

Centre-Val de Loire Université, Unitè Mixte de Recherche "Imagerie et Cerveau" INSERM U930-CNRS ERL 3106, Universit'e François Rabelais ENI Val de Loire, Rue de la Chocolaterie, BP3410, 41034 Blois Cedex, France.

出版信息

Ultrasonics. 2011 Aug;51(6):667-74. doi: 10.1016/j.ultras.2011.01.008. Epub 2011 Feb 1.

Abstract

Human tooth imaging sonography is investigated experimentally with an acousto-optic noncoupling set-up based on the chirp-coded nonlinear time reversal acoustic concept. The complexity of the tooth internal structure (enamel-dentine interface, cracks between internal tubules) is analyzed by adapting the nonlinear elastic wave spectroscopy (NEWS) with the objective of the tomography of damage. Optimization of excitations using intrinsic symmetries, such as time reversal (TR) invariance, reciprocity, correlation properties are then proposed and implemented experimentally. The proposed medical application of this TR-NEWS approach is implemented on a third molar human tooth and constitutes an alternative of noncoupling echodentography techniques. A 10 MHz bandwidth ultrasonic instrumentation has been developed including a laser vibrometer and a 20 MHz contact piezoelectric transducer. The calibrated chirp-coded TR-NEWS imaging of the tooth is obtained using symmetrized excitations, pre- and post-signal processing, and the highly sensitive 14 bit resolution TR-NEWS instrumentation previously calibrated. Nonlinear signature coming from the symmetry properties is observed experimentally in the tooth using this bi-modal TR-NEWS imaging after and before the focusing induced by the time-compression process. The TR-NEWS polar B-scan of the tooth is described and suggested as a potential application for modern echodentography. It constitutes the basis of the self-consistent harmonic imaging sonography for monitoring cracks propagation in the dentine, responsible of human tooth structural health.

摘要

基于啁啾编码非线性时间反转声的概念,利用声光非耦合设置对人牙成像超声进行了实验研究。通过采用非线性弹性波谱学(NEWS)分析牙齿内部结构的复杂性(釉质-牙本质界面、内部管之间的裂缝),目的是进行损伤层析成像。然后提出并实验实现了利用固有对称性(如时间反转(TR)不变性、互易性、相关特性)来优化激励。TR-NEWS 方法的这种医学应用在第三磨牙上进行,并构成了非耦合回声描记技术的替代方法。已经开发了一种 10 MHz 带宽超声仪器,包括激光测振仪和 20 MHz 接触压电换能器。使用对称激励、预和后信号处理以及先前校准的高灵敏度 14 位分辨率 TR-NEWS 仪器,对牙齿进行了校准的啁啾编码 TR-NEWS 成像。在经过时间压缩过程引起的聚焦之后和之前,使用这种双模态 TR-NEWS 成像在牙齿中实验观察到来自对称性特性的非线性特征。描述了牙齿的 TR-NEWS 极 B 扫描,并建议将其作为现代回声描记术的潜在应用。它构成了用于监测牙本质中裂缝扩展的自洽谐波成像超声的基础,这是人类牙齿结构健康的关键。

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