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Ultrasonic Monitoring of Dentin Demineralization

机译:牙本质脱矿质化的超声波监测

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Demineralization is a process of loss of minerals in the dental hard tissue that affects seriously the health of the patients, as it diminishes the tooth resistance, generating chewing problems by altering the occlusal structure, hypersensitivity, and pulpal problems. Demineralization can be produced by pathological processes as erosion or caries, or by surgical processes as etching. Due to the complexity of natural demineralization processes, it is mandatory to provide quantitative and standardized tests to allow their study in controlled laboratory conditions. Ultrasonic techniques are suitable for this purpose as they are nondestructive, quick, and provide localized mechanical information about the tissue, which is related with its degree of demineralization. In the present work, we evaluate the complete process of demineralization of the human dentin under controlled laboratory conditions using a pulse-echo ultrasonic technique. Up to 15 human dentin teeth have been demineralized with phosphoric acid at 10%. The time-of-flight measurements using the pulse-echo system allows to obtain the speed of sound in healthy (3415 m/s) and demineralized dentin tissue (1710 m/s), as well as to characterize the dynamical process of the acid penetration, which generates well-defined boundaries between two media (demineralized and mineralized dentin), showing very different mechanical properties. These boundaries advance in depth at an initial rate of 2.9 mu m/min, decelerating at -9.3 nm/min(2) until the whole demineralization of the sample is achieved. In addition, the technique allows to measure the relevance of the demineralization produced by the acid residues inside the tooth once it has been removed from the acidic solution. Beyond the assessment of artificial demineralization lesions under laboratory conditions, as demonstrated in this article, the proposed technique opens new approaches to the assessment of demineralization caused by natural caries in vivo.
机译:脱矿质化是牙科硬组织中损失矿物质的过程,这会严重影响患者的健康,因为它通过改变咬合结构,超敏反应和脉搏问题来产生咀嚼问题。脱矿质化可以通过病理过程作为侵蚀或龋齿,或通过手术过程作为蚀刻来生产。由于天然脱矿过程的复杂性,必须提供定量和标准化测试,以便他们在受控实验室条件下的研究。超声波技术适合于此目的,因为它们是非破坏性的,快速的,并提供关于组织的局部机械信息,这与其脱矿质程度有关。在目前的工作中,我们使用脉冲回波超声技术评估人体牙本质的脱蛋白的完整过程。最多15人的牙本质牙齿已经用10%的磷酸脱矿质。使用脉冲回波系统的飞行时间测量允许在健康(3415米/秒)和脱矿质牙本质组织(1710m / s)中获得声音的速度,以及表征酸的动态过程渗透,在两种培养基(脱矿化和矿化牙本质)之间产生明确定义的边界,显示出非常不同的机械性能。这些边界以2.9μm/ min的初始速率预先提高,在-9.3nm / min(2)下减速,直到达到样品的全脱落。此外,该技术允许在从酸性溶液中除去牙齿内的酸残基产生的脱矿化的相关性。除了在实验室条件下的人工脱矿质病变的评估之外,如本文所示,所提出的技术开启了对体内自然龋齿造成的脱矿质评估的新方法。

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