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MECHANICAL PROPERTIES OF TMJ DISC CELLS MEASURED BY ATOMIC FORCE MICROSCOPY

机译:原子力显微镜测量TMJ细胞的力学性能

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摘要

The temporomandibular joint (TMJ) is a load bearing joint with unique articular structure. The TMJ disc, a fibrocartilaginous tissue, is a major component of jaw function by serving stress distribution and lubrication in the joint. The TMJ disc pathophysiology. such as disc derangement and degeneration, is central to many TMJ disorders affecting a large population. It is generally believed that pathological mechanical loading, such as sustained mechanical loading in jaw clenching and traumatic impact, is the leading cause of TMJ disc derangement. However, the exact mechanism, especially at the cellular level, has not been established. TMJ disc cells, fibrochondrocyte-like cells, respond to chemical and mechanical signals and regulate the physiology and pathology of the disc. However, little is known of the cellular mechanical properties in TMJ disc. The objective of this study is to determine the mechanical properties of a single TMJ disc cell using atomic force microscopy (AFM).
机译:颞下颌关节(TMJ)是具有独特关节结构的承重关节。 TMJ椎间盘是纤维软骨组织,通过在关节中提供应力分布和润滑作用,是颌骨功能的主要组成部分。 TMJ椎间盘的病理生理学。诸如椎间盘紊乱和变性等疾病是影响大量人群的许多TMJ疾病的核心。通常认为,病理性机械负荷,例如颌骨咬合和创伤性撞击中持续的机械负荷,是TMJ椎间盘脱位的主要原因。但是,确切的机制,特别是在细胞水平上,尚未建立。 TMJ椎间盘细胞是一种类似于纤维软骨细胞的细胞,对化学和机械信号作出反应并调节椎间盘的生理学和病理学。但是,对TMJ盘中的细胞机械性能知之甚少。这项研究的目的是使用原子力显微镜(AFM)确定单个TMJ盘状细胞的机械性能。

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