Jiang N, Yang Y T, Bi R Y, Cao P Y, Hou Y, Zhu S S
State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Disease & West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China.
Zhonghua Kou Qiang Yi Xue Za Zhi. 2021 Aug 9;56(8):764-768. doi: 10.3760/cma.j.cn112144-20210322-00133.
To comprehensively investigate the biomechanical properties of the temporomandibular joint (TMJ) disc and to perfect the mechanical testing system of the TMJ disc by conducting tests of compression, tension, cyclic compression, cyclic tension, creep and friction. Fifteen fresh goat heads (weighing 2.5-3.0 kg) were purchased from the market. They were all ordinary goats (9-12 months old, body weighing 18-21 kg) regardless of gender. Bilateral articular discs (a total of 30) were dissected within 30 minutes after execution. According to the national standard for mechanical testing of viscoelastic materials, fresh TMJ disc specimens of goat were prepared and tests were carried out in physiological conditions. The universal mechanical testing machine was utilized to test biomechanical properties of TMJ discs. The compressive modulus of TMJ discs was (8.41±2.12) MPa and the tensile modulus was (9.54±3.26) MPa. The mechanical characteristics would be irreversibly altered once the load exceeded the physiological range. In addition, it underwent apparent creep relaxation under continuous strain (0.5 MPa or 3.0 MPa) and the surface friction coefficient of the TMJ discs (0.015+0.011) was much lower than that of general viscoelastic materials. The TMJ disc was a bio-viscoelastic structure with excellent tensile and compressive properties and its surface was extremely smooth in wet conditions.
为全面研究颞下颌关节(TMJ)盘的生物力学特性,并通过进行压缩、拉伸、循环压缩、循环拉伸、蠕变和摩擦测试来完善TMJ盘的力学测试系统。从市场购买了15个新鲜山羊头(体重2.5 - 3.0千克)。它们均为普通山羊(9 - 12个月大,体重18 - 21千克),不分性别。在处死动物后30分钟内解剖双侧关节盘(共30个)。按照粘弹性材料力学测试的国家标准,制备山羊新鲜TMJ盘标本并在生理条件下进行测试。利用万能材料试验机测试TMJ盘的生物力学特性。TMJ盘的压缩模量为(8.41±2.12)MPa,拉伸模量为(9.54±3.26)MPa。一旦载荷超过生理范围,力学特性将发生不可逆改变。此外,在持续应变(0.5 MPa或3.0 MPa)下它经历了明显的蠕变松弛,TMJ盘的表面摩擦系数(0.015 + 0.011)远低于一般粘弹性材料。TMJ盘是一种具有优异拉伸和压缩性能的生物粘弹性结构,其表面在湿润条件下极其光滑。