McNamara J A
Am J Orthod. 1977 Apr;71(4):382-95. doi: 10.1016/0002-9416(77)90242-1.
Five juvenile rhesus monkeys were used in an experiment designed to study the structural adaptations in the craniofacial complex that resulted from increases in vertical dimension. The bite was opened 2,3,10, or 15 mm. by means of cast bite splints cemented on the maxillary arch. Adaptations were monitored in these animals by means of serial cephalometric radiography with metallic implants. The results of this study indicate that any change in the vertical dimension of the face results in specific structural adaptations throughout the craniofacial complex. The most significant adaptation occurred in the maxillary region, in which the normal downward displacement of this region was decrease and the anterior displacement was increased. Adaptation were less evident in the mandible, except in those animals in which a severe bite opening was produced; resorption in the region of the gonial angle was evident. Dentitional adaptations were of secondary importance. This study demonstrates that the maxillary complex is a very plastic structure which responds to changes in bite opening and altered muscle length. The clinician should be aware of the changes that result from various alterations of vertical dimension to make sure that these changes are not antagonistic to his over-all treatment goal. He may also take advantage of these changes when designing treatment strategies for certain clinical cases.
五只幼年恒河猴被用于一项实验,该实验旨在研究垂直维度增加导致的颅面复合体结构适应性变化。通过粘结在上颌牙弓上的铸造咬合夹板将咬合打开2毫米、3毫米、10毫米或15毫米。通过带有金属植入物的系列头颅侧位X线摄影术对这些动物的适应性变化进行监测。这项研究结果表明,面部垂直维度的任何变化都会导致整个颅面复合体出现特定的结构适应性变化。最显著的适应性变化发生在上颌区域,该区域正常的向下移位减少,向前移位增加。下颌的适应性变化不太明显,除非是那些产生严重咬合打开的动物;下颌角区域的吸收很明显。牙列适应性变化是次要的。这项研究表明,上颌复合体是一个非常可塑性的结构,它会对咬合打开的变化和肌肉长度的改变做出反应。临床医生应该意识到垂直维度的各种改变所导致的变化,以确保这些变化不会与他的总体治疗目标相抵触。在为某些临床病例设计治疗策略时,他也可以利用这些变化。