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颌肌对不同功能需求的适应性反应。

The adaptive response of jaw muscles to varying functional demands.

机构信息

Department of General and Specialised Dentistry, Section of Orthodontics, Academic Centre for Dentistry Amsterdam (ACTA), The Netherlands.

出版信息

Eur J Orthod. 2009 Dec;31(6):596-612. doi: 10.1093/ejo/cjp093. Epub 2009 Aug 5.

Abstract

Jaw muscles are versatile entities that are able to adapt their anatomical characteristics, such as size, cross-sectional area, and fibre properties, to altered functional demands. The dynamic nature of muscle fibres allows them to change their phenotype to optimize the required contractile function while minimizing energy use. Changes in these anatomical parameters are associated with changes in neuromuscular activity as the pattern of muscle activation by the central nervous system plays an important role in the modulation of muscle properties. This review summarizes the adaptive response of jaw muscles to various stimuli or perturbations in the orofacial system and addresses general changes in muscles as they adapt, specific adaptive changes in jaw muscles under various physiologic and pathologic conditions, and their adaptive response to non-surgical and surgical therapeutic interventions. Although the jaw muscles are used concertedly in the masticatory system, their adaptive changes are not always uniform and vary with the nature, intensity, and duration of the stimulus. In general, stretch, increases neuromuscular activity, and resistance training result in hypertrophy, elicits increases in mitochondrial content and cross-sectional area of the fibres, and may change the fibre-type composition of the muscle towards a larger percentage of slow-type fibres. In contrast, changes in the opposite direction occur when neuromuscular activity is reduced, the muscle is immobilized in a shortened position, or paralysed. The broad range of stimuli that affect the properties of jaw muscles might help explain the large variability in the anatomical and physiological characteristics found among individuals, muscles, and muscle portions.

摘要

咀嚼肌是多功能实体,能够适应其解剖学特征,如大小、横截面积和纤维特性,以适应改变的功能需求。肌肉纤维的动态性质使它们能够改变其表型,以优化所需的收缩功能,同时最小化能量消耗。这些解剖学参数的变化与神经肌肉活动的变化有关,因为中枢神经系统对肌肉的激活模式在调节肌肉特性方面起着重要作用。这篇综述总结了咀嚼肌对口腔系统中各种刺激或干扰的适应性反应,并讨论了肌肉的一般适应性变化,以及在各种生理和病理条件下咀嚼肌的特定适应性变化,以及它们对非手术和手术治疗干预的适应性反应。尽管咀嚼肌在咀嚼系统中协同使用,但它们的适应性变化并不总是一致的,并且因刺激的性质、强度和持续时间而异。一般来说,拉伸、增加神经肌肉活动和阻力训练会导致肥大,引起纤维中线粒体含量和横截面积的增加,并可能改变肌肉的纤维型组成,使其向更大比例的慢型纤维转变。相反,当神经肌肉活动减少、肌肉在缩短位置固定或瘫痪时,会发生相反方向的变化。影响咀嚼肌特性的广泛刺激可能有助于解释个体、肌肉和肌肉部位之间发现的解剖学和生理学特征的巨大变异性。

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