首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >In vitro particle image velocity measurements in a model root canal: Flow around a polymer rotary finishing file
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In vitro particle image velocity measurements in a model root canal: Flow around a polymer rotary finishing file

机译:模型根管中的体外粒子图像速度测量:聚合物旋转抛光锉周围的流动

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Introduction Root canal irrigation is vital to thorough debridement and disinfection, but the mechanisms that contribute to its effectiveness are complex and uncertain. Traditionally, studies in this area have relied on before-and-after static comparisons to assess effectiveness, but new in situ tools are being developed to provide real-time assessments of irrigation. The aim in this work was to measure a cross section of the velocity field in the fluid flow around a polymer rotary finishing file in a model root canal. Methods Fluorescent microparticles were seeded into an optically accessible acrylic root canal model. A polymer rotary finishing file was activated in a static position. After laser excitation, fluorescence from the microparticles was imaged onto a frame-transfer camera. Two consecutive images were cross-correlated to provide a measurement of a projected, 2-dimensional velocity field. Results The method reveals that fluid velocities can be much higher than the velocity of the file because of the shape of the file. Furthermore, these high velocities are in the axial direction of the canal rather than only in the direct of motion of the file. Conclusions Particle image velocimetry indicates that fluid velocities induced by the rotating file can be much larger than the speed of the file. Particle image velocimetry can provide qualitative insight and quantitative measurements that may be useful for validating computational fluid dynamic models and connecting clinical observations to physical explanations in dental research.
机译:引言根管冲洗对于彻底的清创和消毒至关重要,但是影响其有效性的机制却是复杂且不确定的。传统上,该领域的研究依靠前后的静态比较来评估有效性,但是正在开发新的现场工具来提供灌溉的实时评估。这项工作的目的是测量模型根管中聚合物旋转修整锉周围的流体流动速度场的横截面。方法将荧光微粒接种到光学可及的丙烯酸根管模型中。在静态位置激活聚合物旋转修整锉。激光激发后,将来自微粒的荧光成像到帧传输相机上。将两个连续的图像进行互相关以提供对投影二维速度场的测量。结果该方法表明,由于锉刀的形状,流体速度可能远高于锉刀的速度。此外,这些高速方向是在运河的轴向上,而不是仅在锉刀的运动方向上。结论粒子图像测速表明,旋转锉引起的流体速度可能远大于锉的速度。粒子图像测速仪可以提供定性的见解和定量的测量结果,可能对验证计算流体动力学模型以及将临床观察结果与牙科研究中的物理解释联系起来很有用。

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