首页> 外文期刊>Journal of biomechanical engineering. >Trueness of Fit of Biphasic Transversely Isotropic Parameters Model in the Porcine Temporomandibular Joint Disc and Mandibular Condylar Cartilage and Regional Dependence
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Trueness of Fit of Biphasic Transversely Isotropic Parameters Model in the Porcine Temporomandibular Joint Disc and Mandibular Condylar Cartilage and Regional Dependence

机译:双相横向各向同性参数模型在猪颞下颌关节圆盘和下颌髁突软骨和区域依赖性的特殊性

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摘要

Temporomandibular joint (TMJ) disorders (TMDs) are not well understood and the mechanical differences between the regions of the mandibular condylar cartilage (MCC) and the TMJ disc have not been thoroughly compared. As of now, there are no commercially available regenerative therapies for the TMJ. Elucidating the mechanical properties of these two structures of the articulating joint will help future efforts in developing tissue engineering treatments of the TMJ. In this study, we evaluate the compressive properties of the porcine disc and mandibular condylar cartilage by performing unconfined compression at 10% strain with 4.5%/min strain rate. Punches (4 mm biopsy) from both tissues were taken from five different regions of both the MCC and TMJ: anterior, posterior, lateral, medial, and central. Previously, theoretical models of compression in the porcine tissue did not fit the whole ramp-relaxation behavior. Thus, the data stress-relaxation was fitted to the biphasic transversely isotropic model, for both the TMJ disc and cartilage. From the results found in the disc, it was found that the posterior region had the highest values in multiple viscoelastic parameters when compared to the other regions. The mandibular condylar cartilage was only found to be significantly different in the transverse modulus between the posterior and lateral regions. Both the TMJ disc and MCC had similar magnitudes of values (for the modulus and other corresponding compressive properties) and behavior under this testing modality.
机译:颞下颌关节(TMJ)紊乱(TMD)尚不清楚,并且颌骨髁突骨软骨(MCC)的区域与TMJ盘之间的机械差异尚未彻底地进行彻底比较。截至目前,TMJ没有商业上可获得的再生疗法。阐明这两种结构的铰接接头结构的力学性能将有助于未来在开发TMJ的组织工程治疗方面的努力。在该研究中,我们通过以4.5%/最小应变速率进行10%菌株的无凝集压缩来评估猪盘和下颌髁软骨的压缩性能。来自两种组织的冲头(4mm活组织检查)取自MCC和TMJ的五种不同区域:前部,后部,外侧,内侧和中央。以前,猪组织中压缩的理论模型不适合整个斜坡松弛行为。因此,对于TMJ盘和软骨,数据应力 - 弛豫拟合到双相横向各向同性模型。从盘中的结果,发现与其他区域相比,后部区域的多个粘弹性参数具有最高值。悬崖髁突骨软骨仅发现在后部和横向区域之间的横向模量显着不同。 TMJ光盘和MCC都具有类似的值(用于模量和其他相应的压缩性能)和该测试模态的行为。

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