Su Kuo-Chih, Chuang Shu-Fen, Ng Eddie Yin-Kwee, Chang Chih-Han
a Department of Biomedical Engineering , College of Engineering, National Cheng Kung University , Tainan , Taiwan.
Comput Methods Biomech Biomed Engin. 2014 Nov;17(15):1716-26. doi: 10.1080/10255842.2013.765410. Epub 2013 Mar 12.
This study uses the fluid-structure interaction (FSI) method to investigate the fluid flow in dental pulp. First, the FSI method is used for the biomechanical simulation of dental intrapulpal responses during force loading (50, 100 and 150 N) on a tooth. The results are validated by comparison with experimental outcomes. Second, the FSI method is used to investigate an intact tooth subjected to a mechanical stimulus during loading at various loading rates. Force loading (0-100 N) is applied gradually to an intact tooth surface with loading rates of 125, 62.5, 25 and 12.5 N/s, respectively, and the fluid flow changes in the pulp are evaluated. FSI analysis is found to be suitable for examining intrapulpal biomechanics. An external force applied to a tooth with a low loading rate leads to a low fluid flow velocity in the pulp chamber, thus avoiding tooth pain.
本研究采用流固耦合(FSI)方法来研究牙髓内的流体流动。首先,FSI方法用于对牙齿在力加载(50、100和150 N)过程中的牙髓内反应进行生物力学模拟。通过与实验结果进行比较来验证结果。其次,FSI方法用于研究在不同加载速率下加载过程中受到机械刺激的完整牙齿。分别以125、62.5、25和12.5 N/s的加载速率将力加载(0 - 100 N)逐渐施加到完整牙齿表面,并评估牙髓内的流体流动变化。发现FSI分析适用于检查牙髓生物力学。以低加载速率施加到牙齿上的外力会导致牙髓腔内的流体流速较低,从而避免牙齿疼痛。