Kubo Kei, Kawata Tetsuo, Ogawa Toru, Watanabe Makoto, Sasaki Keiichi
Division of Advanced Prosthetic Dentistry, Tohoku University, Graduate School of Dentistry, 4-1 Seiryo-machi, Aoba-ku, Sendai 9808575, Japan.
Arch Oral Biol. 2006 Feb;51(2):146-53. doi: 10.1016/j.archoralbio.2005.06.009. Epub 2005 Aug 10.
The multipennate masseter has a complex internal architecture, which suggests the contraction is not uniform within the muscle. The heterogeneous contraction may cause inequable changes of the muscle's outer shape. This study aimed to elucidate the outer shape changes of the whole masseter with clenching by multipoint measurement of serial ultrasound images.
Serial coronal images (perpendicular to the FH plane, 3 mm interval) of the right masseter of five healthy men were obtained with a real-time ultrasonograph equipped with a 13 MHz linear-array transducer. To define the relationship between the transducer and cranium, we used a 3D mechanical stage with a face-bow. Registrations were made during muscle relaxation and maximal clenching. The distance between the lateral and medial outlines of the muscle was measured at intervals of 1mm from the origin to insertion in each image as the thickness at the corresponding measured point.
The thickness of the relaxed and contracted muscle (R and C) and its difference (Delta) varied among the measured points. Muscle thickness at most measured sites increased with clenching, whereas it decreased at several sites, mainly near the origin and insertion. There were positive correlations in every subject both between R and C, and between C and Delta. On the other hand, the correlation between R and Delta were negative or weak.
Changes of thickness with clenching showed great disparity within the masseter, which may result from the complexity of the contraction properties due to the multipennate structure and functional heterogeneity.
多羽状的咬肌具有复杂的内部结构,这表明肌肉内的收缩并不均匀。这种不均匀的收缩可能会导致肌肉外形发生不均衡的变化。本研究旨在通过对连续超声图像进行多点测量,阐明咬紧牙关时整个咬肌的外形变化。
使用配备13MHz线阵探头的实时超声仪,获取5名健康男性右侧咬肌的连续冠状面图像(垂直于FH平面,间隔3mm)。为了确定探头与颅骨之间的关系,我们使用了带有面弓的三维机械平台。在肌肉放松和最大程度咬紧牙关时进行配准。在每张图像中,从起点到止点以1mm的间隔测量肌肉外侧和内侧轮廓之间的距离,作为相应测量点处的厚度。
放松和收缩状态下肌肉的厚度(R和C)及其差值(Delta)在各测量点之间存在差异。大多数测量部位的肌肉厚度在咬紧牙关时增加,而在几个部位,主要是靠近起点和止点处,厚度减小。在每个受试者中,R与C之间以及C与Delta之间均呈正相关。另一方面,R与Delta之间的相关性为负或较弱。
咬紧牙关时肌肉厚度的变化在咬肌内部存在很大差异,这可能是由于多羽状结构和功能异质性导致的收缩特性复杂所致。