Zentner A, Sergl H G, Filippidis G
Poliklinik für Kieferorthopädie, Klinikum der Johannes Gutenberg-Universität Mainz, Germany.
Angle Orthod. 1996;66(6):463-72. doi: 10.1043/0003-3219(1996)066<0463:AHSOVI>2.3.CO;2.
The effects of headgear on maxillary displacement and the resulting growth modifications are not completely understood, especially regarding the complex relationships between initial and secondary skeletal reactions on one hand and the influence of the direction and magnitude of the applied force on the other. The aim of the present investigation was to study, by means of holographic interferometry, the initial bone displacement occurring in response to headgear traction applied at different force magnitudes and in different directions. Orthopedic forces of 560 grams and orthodontic forces of 354 grams were stimulated on a macerated human skull. The forces came from from high-, straight-, and low-pull headgear traction directed above, through, and below the center of resistance of the maxillary first permanent molars. Immediate skeletal changes were recorded by laser holography. Initial displacements of the maxilla and zygomatic arch in both horizontal and vertical planes were evaluated on frontal and lateral holograms. In most cases, both force magnitudes caused substantial displacements in both planes, albeit to different extents. Complex bending, and rotational, translational, and relative displacements were observed. The direction of displacement did not strictly coincide with that of the applied force. The results of this study indicate that both orthodontic and orthopedic headgear traction may lead to complex initial three-dimensional skeletal displacement in directions not always corresponding with the direction of the applied force.
头帽对上颌移位及由此产生的生长改变的影响尚未完全明确,尤其是关于一方面初始和继发骨骼反应之间的复杂关系,以及另一方面所施加力的方向和大小的影响。本研究的目的是通过全息干涉测量法,研究在不同力的大小和不同方向施加头帽牵引时所发生的初始骨移位。在一个浸软的人类颅骨上施加560克的矫形力和354克的正畸力。这些力分别来自高牵引、直牵引和低牵引头帽,其牵引方向分别在上颌第一恒磨牙阻力中心的上方、穿过和下方。通过激光全息术记录即时骨骼变化。在正面和侧面全息图上评估上颌骨和颧弓在水平和垂直平面上的初始移位。在大多数情况下,两种力的大小均会在两个平面上引起显著移位,尽管程度不同。观察到了复杂的弯曲、旋转、平移和相对移位。移位方向与所施加力的方向并不严格一致。本研究结果表明,正畸和矫形头帽牵引均可导致复杂的初始三维骨骼移位,其方向并不总是与所施加力的方向一致。