Julià-Sánchez Sonia, Álvarez-Herms Jesús, Cirer-Sastre Rafel, Corbi Francisco, Burtscher Martin
Faculty of Physical Activity and Sport Sciences, European University, Madrid, Spain.
Institut Nacional d'Educació Física de Catalunya, Universitat de Lleida, Lleida, Spain.
Front Physiol. 2020 Jan 31;10:1626. doi: 10.3389/fphys.2019.01626. eCollection 2019.
Excellent postural control is essential to improve the physical performance of athletes. Stability of the body during motor tasks depends on different physiological systems. The influence of dental occlusion on body balance has been widely investigated in the past few years. It has been suggested that this relationship is strengthened by disturbing environments for balance control (i.e., unstable platform, fatigue, development tasks.). Moreover, dental occlusion may influence the muscle tone of both masticatory and postural muscles, which are involved in the preservation of balance. Therefore, we attempted to determine whether (i) there are differences in dynamic balance assessed by the modified star excursion balance test between opposed dental occlusion conditions (dental contact: intercuspal position/no dental contact: cotton rolls mandibular position) and (ii) dental occlusion influences the biomechanical and viscoelastic properties of the masticatory and postural muscles assessed with MyotonPRO. Thirty physically active subjects were recruited for the study. The main findings were the following: (i) the Star Excursion Balance Test composite score was significantly higher for measurements made in cotton rolls mandibular position ( < 0.001) and also in subjects showing a correct occlusion ( = 0.04), and (ii) the biomechanic and viscolelastic properties of selected muscles showed different trend according to the presence of malocclusal traits. It is concluded that dental occlusion conditioned both dynamic stability and the biomechanic and viscoelastic properties of the analyzed muscles.
出色的姿势控制对于提高运动员的身体表现至关重要。运动任务期间身体的稳定性取决于不同的生理系统。在过去几年中,人们广泛研究了牙合对身体平衡的影响。有人提出,在干扰平衡控制的环境(即不稳定平台、疲劳、发育任务)中,这种关系会得到加强。此外,牙合可能会影响咀嚼肌和姿势肌的肌张力,而这些肌肉都参与了平衡的维持。因此,我们试图确定:(i)在改良的星形偏移平衡测试评估的动态平衡方面,相对的牙合情况(牙接触:牙尖交错位/无牙接触:棉卷下颌位)之间是否存在差异;(ii)牙合是否会影响用MyotonPRO评估的咀嚼肌和姿势肌的生物力学和粘弹性特性。本研究招募了30名身体活跃的受试者。主要研究结果如下:(i)在棉卷下颌位进行测量时,星形偏移平衡测试综合得分显著更高(<0.001),在咬合正常的受试者中也是如此(=0.04);(ii)根据错牙合特征的存在情况,所选肌肉的生物力学和粘弹性特性呈现出不同的趋势。研究得出结论,牙合对所分析肌肉的动态稳定性以及生物力学和粘弹性特性均有影响。