García Marcos, Cabrera Juan A, Bataller Alex, Vila Javier, Mayoral Pedro
Department of Mechanical Engineering, University of Málaga, Spain.
Department of Mechanical Engineering, University of Málaga, Spain.
Sleep Med. 2020 Sep;73:29-37. doi: 10.1016/j.sleep.2020.04.016. Epub 2020 Apr 30.
Mandibular advancement devices (MADs) are one of the treatment options used for the obstructive sleep apnea syndrome (OSAS). At present, MADs are designed with standard titration systems, without considering each patient's anatomical characteristics of the temporomandibular joint and mandible shape. The main objective of this study is to evaluate if a variability in mandibular morphology will influence the displacement of the jaw with a MAD. Such knowledge will be of help to find optimal mandibular positions with MAD even when opening the mouth.
By using a mandibular movement model, the movement patterns of different points on the chin have been analyzed. The influence of different skeletal mandibular shapes on these movements have also been studied. The results show differences in the movement patterns of the lower front teeth depending on its distance to the center of the condyle, with a more horizontal direction in those in which there is a greater distance.
Variations in mandibular morphology imply differences in movement patterns of the analyzed points of the mandible. Consequently, MADs should be designed according to each patient's anatomy to avoid mandibular retrusion in those areas that may narrow the upper airways.
This study may help to understand why not all patients move their lower jaws forwards equally with the same degree of mandibular protrusion measured in relation to the teeth. These results might also partially explain why airway obstruction is more severe in certain untreated sleep apnea subjects than in others when opening their mouth during sleep.
下颌前移装置(MADs)是用于治疗阻塞性睡眠呼吸暂停综合征(OSAS)的治疗选择之一。目前,MADs采用标准滴定系统设计,未考虑每位患者颞下颌关节的解剖特征和下颌形状。本研究的主要目的是评估下颌形态的变异性是否会影响使用MAD时下颌的位移。即使在张口时,这些知识也将有助于找到使用MAD时下颌的最佳位置。
通过使用下颌运动模型,分析了下巴不同点的运动模式。还研究了不同骨骼下颌形状对这些运动的影响。结果表明,下前牙的运动模式因与髁突中心的距离而异,距离越大,方向越水平。
下颌形态的变化意味着下颌分析点的运动模式存在差异。因此,MADs应根据每位患者的解剖结构进行设计,以避免在可能使上气道变窄的区域出现下颌后缩。
本研究可能有助于理解为什么并非所有患者在相对于牙齿测量的相同程度的下颌前突情况下,下颌向前移动的程度相同。这些结果也可能部分解释了为什么在睡眠中张口时,某些未经治疗的睡眠呼吸暂停患者的气道阻塞比其他患者更严重。