Image-based estimation of biomechanical relationship between masticatory muscle activities and mandibular movement

Yang Yang, K. Foong, S. Ong, M. Yagi, K. Takada
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引用次数: 2

Abstract

Current techniques for investigating the functional roles of masticatory muscles are not suited to explaining subject-specific biomechanical relationship between mandibular movements and masticatory muscle activities. The aims of this study were to estimate the muscle tensions of subject-specific masticatory muscles in dental occlusion through the three-dimensional morphologic changes (3DMCs) of the muscles, and to explain the subject-specific biomechanical relationship between the mandibular movement and the muscle tensions. One healthy adult subject underwent magnetic resonance (MR) scans of the head at mandibular rest position (M0) and maximum intercuspation (M1). Based on the two sets of MR images, the mandibular movement was measured by the position changes of the mental protuberance of the mandible and the muscle tension from M0 to M1 for each masticatory muscle was estimated by its 3DMCs. The results showed the subject-specific biomechanical relationship between the mandibular movement and the muscle tensions, and the mandibular movement could be explained by these related muscle tensions anatomically and functionally.
基于图像的咀嚼肌活动与下颌运动生物力学关系估计
目前研究咀嚼肌功能作用的技术并不适合解释下颌运动和咀嚼肌活动之间的生物力学关系。本研究的目的是通过三维形态学变化(3DMCs)来估计牙齿咬合时受试者特异性咀嚼肌的肌肉张力,并解释受试者下颌运动与肌肉张力之间的生物力学关系。一名健康成人受试者在下颌休息位置(M0)和最大间歇位置(M1)进行了头部磁共振(MR)扫描。基于两组MR图像,通过下颌颏突的位置变化测量下颌运动,并通过其3dmc估计各咀嚼肌从M0到M1的肌肉张力。结果表明,下颌骨运动与肌肉张力之间存在个体特异性的生物力学关系,下颌骨运动可以通过这些相关的肌肉张力在解剖学和功能上得到解释。
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