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机构地区:[1]北京航空航天大学生物与医学工程学院,北京100191
出 处:《医用生物力学》2017年第5期448-453,共6页Journal of Medical Biomechanics
基 金:国家自然科学基金项目(31570945);国家科技支撑计划项目(2015BAI06B02)
摘 要:目的基于超声共振谱(resonant ultrasound spectroscopy,RUS)方法研究人牙釉质材料的力学特性。方法制作长方体状牙釉质样本。估计样本的理论共振频率,与RUS实验测量得到的样本实际共振频率相比较。基于迭代方法调整牙釉质弹性常数,使得理论共振频率和实验共振频率满足均方误差最小准则,并计算弹性模量、剪切模量与泊松比。结果牙釉质样本的弹性模量、剪切模量和泊松比范围分别为61.52~80.46 GPa、21.51~51.86 GPa和0.18~0.43。如果排除差异较大样本的影响,牙釉质的平均弹性模量、剪切模量和泊松比分别为72.84 GPa、31.94 GPa和0.27。结论 RUS方法在测量牙釉质力学特性方面具有可行性与重复性无损测量优势,一次测量就可以实现牙釉质所有弹性常数和力学参数的估计,研究结果为牙科修复材料的研发提供参考。Objective To investigate the mechanical properties of human enamel based on resonant ultrasound spectroscopy (RUS). Methods The rectangular parallelepiped specimens of human enamel were processed. The theoretical resonant frequencies of specimens were estimated and paired with the experimental resonant fre- quencies measured from RUS experiments. An iterative procedure was used to adjust elastic constants of enamel until the theoretical frequencies corresponded to the experimental frequencies based on minimum mean-squared error criterion. In addition, elastic modulus, shear modulus and Poisson' s ratio were calculated respectively. Results The elastic modulus, shear modulus and Poisson' s ratio ranged from 61.52 to 80.46 GPa, 21.51 to 51.86 GPa and 0.18 to 0.43, respectively. Eliminating the effect of large specimen variances, the average of elastic modulus, shear modulus and Poisson' s ratio was 72.84 GPa, 31.94 GPa and 0.27, respectively. Conclu- sions RUS performs a feasibility of measuring the mechanical properties of human enamel with repeatable and nondestructive advantages. All the elastic constants and mechanical parameters can be estimated through a sig- nal experiment. The results provide references for the development of biomimetic dental restoration materials.
关 键 词:牙釉质 弹性常数 力学参数 超声共振谱 共振频率
分 类 号:R318.01[医药卫生—生物医学工程]
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