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咬肌深层附着于大鼠下颌骨处肌腱在咬举过程中变化的超微结构研究

An ultrastructural study of changes in the tendinous attachment of the deep layer of masseter muscle to the rat mandible during bite raising.

作者信息

Yamada K, Hanada K, Morita S, Ozawa H

机构信息

Department of Orthodontics, School of Dentistry, Niigata University, Japan.

出版信息

Anat Anz. 1988;165(2-3):91-104.

PMID:3400888
Abstract

To elucidate the ultrastructural changes in the attachment of masticatory muscles during changes in the functions of masticatory muscles, rats ranging in age from 50 to 80 d, were used. 2 d after bite-raising, the fibrocartilage cells in the tendinous attachment of the deep layer of masseter muscle were characterized by ill-developed cell organelles. Undifferentiated cells around blood vessels degenerated. 4 d after bite raising, however, fibrocartilage cells exhibited well-developed cell organelles, cell division and intercellular contacts. After 10 d of bite raising, the morphologic features of the fibrocartilage cells were the same as those observed in the control. These results suggest that the mechanical stress created by the change in muscle function during bite raising caused the degeneration of the fibrocartilage cell. From 4 d after bite raising, cell proliferation and active formation of new extracellular matrix occurred in response to environmental changes. 10 d after bite raising, the remodeling of collagen fiber and the formation of bone tissue had returned to normal by the adaptation of muscle function.

摘要

为阐明咀嚼肌功能改变时咀嚼肌附着处的超微结构变化,选用50至80日龄的大鼠。咬高2天后,咬肌深层腱附着处的纤维软骨细胞细胞器发育不良。血管周围未分化细胞退化。然而,咬高4天后,纤维软骨细胞细胞器发育良好,出现细胞分裂和细胞间接触。咬高10天后,纤维软骨细胞的形态特征与对照组相同。这些结果表明,咬高过程中肌肉功能改变产生的机械应力导致纤维软骨细胞退化。咬高4天后,细胞增殖并积极形成新的细胞外基质以应对环境变化。咬高10天后,通过肌肉功能的适应,胶原纤维重塑和骨组织形成已恢复正常。

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