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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Scanning acoustic microscopy investigation of frequency-dependent reflectance of acid- etched human dentin using homotopic measurements
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Scanning acoustic microscopy investigation of frequency-dependent reflectance of acid- etched human dentin using homotopic measurements

机译:扫描电镜研究同位测量法对酸蚀人类牙本质的频率依赖性反射率

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摘要

Composite restorations in modern restorative dentistry rely on the bond formed in the adhesive-infiltrated acid-etched dentin. The physical characteristics of etched dentin are, therefore, of paramount interest. However, characterization of the acid-etched zone in its natural state is fraught with problems stemming from a variety of sources including its narrow size, the presence of water, heterogeneity, and spatial scale dependency. We have developed a novel homotopic (same location) measurement methodology utilizing scanning acoustic microscopy (SAM). Homotopic measurements with SAM overcome the problems encountered by other characterization/ imaging methods. These measurements provide us with acoustic reflectance at the same location of both the pre- and postetched dentin in its natural state. We have applied this methodology for in vitro measurements on dentin samples. Fourier spectra from acid-etched dentin showed amplitude reduction and shifts of the central frequency that were location dependent. Through calibration, the acoustic reflectance of acidetched dentin was found to have complex and non-monotonic frequency dependence. These data suggest that acid-etching of dentin results in a near-surface graded layer of varying thickness and property gradations. The measurement methodology described in this paper can be applied to systematically characterize mechanical properties of heterogeneous soft layers and interfaces in biological materials.
机译:现代修复牙科中的复合修复物依赖于粘合剂渗透的酸蚀牙本质中形成的键。因此,蚀刻牙本质的物理特性至关重要。然而,在自然状态下酸蚀区的表征充满了各种来源的问题,包括其尺寸狭窄,水的存在,异质性和空间尺度依赖性。我们已经开发出一种利用扫描声显微镜(SAM)的新型同位(相同位置)测量方法。用SAM进行同位测量可克服其他表征/成像方法遇到的问题。这些测量为我们提供了在自然状态下蚀刻前后牙本质的相同位置处的声反射率。我们已将此方法应用于牙本质样品的体外测量。酸蚀牙本质的傅立叶光谱显示振幅降低和中心频率的偏移与位置有关。通过校准,发现酸蚀牙本质的声反射具有复杂且非单调的频率依赖性。这些数据表明,对牙本质进行酸蚀会导致近表面渐变层的厚度和性能等级变化。本文所述的测量方法可用于系统地表征生物材料中非均质软层和界面的机械性能。

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