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In situ Compressive Loading and Correlative Noninvasive Imaging of the Bone-periodontal Ligament-tooth Fibrous Joint

机译:骨-牙周膜-齿-齿纤维关节的原位压缩负荷和相关的无创成像

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摘要

This study demonstrates a novel biomechanics testing protocol. The advantage of this protocol includes the use of an in situ loading device coupled to a high resolution X-ray microscope, thus enabling visualization of internal structural elements under simulated physiological loads and wet conditions. Experimental specimens will include intact bone-periodontal ligament (PDL)-tooth fibrous joints. Results will illustrate three important features of the protocol as they can be applied to organ level biomechanics: 1) reactionary force vs. displacement: tooth displacement within the alveolar socket and its reactionary response to loading, 2) three-dimensional (3D) spatial configuration and morphometrics: geometric relationship of the tooth with the alveolar socket, and 3) changes in readouts 1 and 2 due to a change in loading axis, i.e. from concentric to eccentric loads. Efficacy of the proposed protocol will be evaluated by coupling mechanical testing readouts to 3D morphometrics and overall biomechanics of the joint. In addition, this technique will emphasize on the need to equilibrate experimental conditions, specifically reactionary loads prior to acquiring tomograms of fibrous joints. It should be noted that the proposed protocol is limited to testing specimens under ex vivo conditions, and that use of contrast agents to visualize soft tissue mechanical response could lead to erroneous conclusions about tissue and organ-level biomechanics.
机译:这项研究表明了一种新颖的生物力学测试协议。该协议的优点包括使用与高分辨率X射线显微镜耦合的原位加载设备,从而能够在模拟的生理负载和潮湿条件下可视化内部结构元素。实验标本将包括完整的骨-牙周膜(PDL)-牙齿纤维接头。结果将说明该协议的三个重要特征,因为它们可应用于器官级生物力学:1)反作用力与位移:牙槽窝内的牙齿位移及其对负荷的反应响应; 2)三维(3D)空间结构和形态计量学:牙齿与牙槽窝的几何关系,以及3)由于载荷轴的变化(即从同心载荷到偏心载荷)而导致读数1和2发生变化。通过将机械测试读数与关节的3D形态计量学和整体生物力学耦合,可以评估所提出协议的功效。另外,该技术将强调需要平衡实验条件,特别是在获取纤维接头断层图之前的反作用力。应当注意,建议的方案仅限于在离体条件下测试标本,并且使用造影剂来可视化软组织的机械反应可能会导致有关组织和器官水平生物力学的错误结论。

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