功能性正畸磁性矫治器(FOMA)吸引磁体力系统的三维分析[j]。

C Bourauel, A D Vardimon, D Drescher, G P Schmuth
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引用次数: 1

摘要

功能磁系统(FMS)是一种可移动的功能矫治器,它通过下颌骨和上颌的磁铁在吸引结构中诱导下颌骨前进。上颌和下颌板各装有2个圆柱形钴钐磁铁,直径4毫米,高3毫米,焊接在不锈钢外壳中。利用正畸测量与仿真系统(OMSS)对该磁性结构的受力系统进行了分析。OMSS通过垂直分离安装的磁铁来模拟下颌运动,对应于X = - 10mm的开口,横向(右偏移,+/左偏移,-)在Y = +/- 10mm,矢状(前位移,+/后位移,-)在Z = +/- 10mm。所得到的二维和三维力/位移图说明了功能磁性器具突出的向心-空间取向特征,参考了下颌骨磁铁被上颌磁铁吸引所带来的完全重叠。最大向心力达成的价值大约财政年度,max = 0.65 N垂直吸引力量完全重叠的下颌和上颌骨磁铁(X = 0.55毫米,Y = Z = 0毫米),一个财政年度,max = 0.65 N在偏内侧剪力横向重叠Z = 0, Y = + / - 2毫米,Y = + / - 6毫米),和矢状面剪力值FZ, max = 1.2 N的重叠部分矢状磁铁(Y = 0毫米,Z = + / - 2毫米)。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[A functional orthodontic magnetic appliance (FOMA) after Vardimon. 1. A three-dimensional analysis of the force system of the attractive magnets].

The functional magnetic system (FMS) is a removable functional appliance which induces mandibular advance by means of mandibular and maxillary magnets in an attracting configuration. The maxillary and mandibular plates are each equipped with 2 cylindrically shaped cobalt-samarium magnets, 4 mm in diameter and 3 mm in height, which are welded into stainless steel housings. The force system of this magnetic configuration was analyzed using the orthodontic measurement and simulation system (OMSS). OMSS simulated the mandibular jaw movements by separating the installed magnets vertically, corresponding to a mouth opening of X = -10 mm, transversally (right excursion, +/left excursion, -) at Y = +/- 10 mm and sagittally (anterior displacement, +/posterior displacement, -) at Z = +/- 10 mm. The resulting 2D and 3D force/displacement diagrams elucidate the outstanding centripetal-spatial orientation characteristics of the functional magnetic appliance in reference to the full overlap brought about by the attraction of the mandibular magnet by the maxillary magnet. The maximum centripetal forces reached a value of approximately FY, max = 0.65 N for the vertical attracting force at full overlap of the mandibular and maxillary magnets (X = 0.55 mm, Y = Z = 0 mm), a value of FY, max = 0.65 N for the medial shearing force at a partial transversal overlap Z = 0, Y = +/- 2 mm and Y = +/- 6 mm), and for the sagittal shearing force a value of FZ, max = 1.2 N at a partial sagittal overlap of the magnets (Y = 0 mm, Z = +/- 2 mm).(ABSTRACT TRUNCATED AT 250 WORDS)

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