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首页> 外文期刊>Journal of Oral and Maxillofacial Surgery >A simple mechanism for measuring and adjusting distraction forces during maxillary advancement.
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A simple mechanism for measuring and adjusting distraction forces during maxillary advancement.

机译:一种简单的机制,用于在上颌前移过程中测量和调节牵引力。

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PURPOSE: Direct measurement of distraction forces on the craniofacial skeleton has never been reported. The present report describes the development of a method of assessing and adjusting traction forces applied through maxillary distraction osteogenesis. MATERIALS AND METHODS: A simple mechanism to measure and adjust tension force during maxillary distraction osteogenesis was developed and connected bilaterally to the traction screws of a rigid external distraction device. Measurements were carried out before and after activation using a Shimpo (Nidec-Shimpo America Corporation, Itasca, IL) force gauge in 4 patients (2 with unilateral cleft lip and/or palate, 1 with bilateral cleft lip and palate, and 1 with noncleft) during the distraction process. Activation was performed twice a day at a rate of 1 mm/day. RESULTS: The average maximum force applied throughout the distraction period was 42.5 N (range 16.4 to 65.3 N), with increments, after activation, averaging 10.5 N (range 7.9 to 15.7 N). In patients with unilateral cleft lip and/or palate, distraction forces on the larger segment were 65.1% higher than on the lesser segment. A differential pattern of forces was also observed in the patients with asymmetric noncleft. However, the differential forces between lateral segments were not observed in the patient with bilateral cleft lip and palate. During the activation period, distraction forces progressively increased, whereas the amount of maxillary movement decreased. Pain and discomfort were reported with high forces. CONCLUSIONS: Through this mechanism, direct measurement and adjustment of distraction forces during maxillary advancement was possible. The unbalanced pattern of forces observed in patients with cleft suggests the necessity of individual adjustments for controlling pain and clinical symptoms. Accordingly, assessment of distraction forces during maxillary distraction osteogenesis is extremely helpful in understanding the biomechanics of the distraction process.
机译:目的:从未报道过直接测量颅面骨架上的牵引力。本报告描述了评估和调整通过上颌骨成骨术施加的牵引力的方法的发展。材料与方法:开发了一种简单的机制,用于在上颌牵张成骨过程中测量和调节张力,并将其双向连接至刚性外部牵张装置的牵拉螺钉。在激活之前和之后使用Shimpo(Nidec-Shimpo America Corporation,Itasca,IL)测力计对4例患者进行了测量(2例单侧唇c裂和/或pa裂,1例双侧唇and裂和pa裂,1例无c裂) )。每天以1 mm /天的速率进行两次激活。结果:整个牵引期间平均施加的最大力为42.5 N(范围16.4至65.3 N),激活后逐渐增加,平均增加10.5 N(范围7.9至15.7 N)。在单侧唇裂和/或or裂患者中,较大段的牵引力比较小段的牵引力高65.1%。在非对称性非c裂患者中还观察到力的不同模式。然而,在双侧唇left裂患者中未观察到侧向节段之间的差异力。在激活期间,牵引力逐渐增加,而上颌运动量减少。据报道,用力大时会感到疼痛和不适。结论:通过这种机制,可以直接测量和调整上颌前移过程中的牵引力。在c裂患者中观察到的力量不平衡模式表明有必要进行个别调整以控制疼痛和临床症状。因此,评估上颌牵张成骨过程中的牵张力对于理解牵张过程的生物力学非常有帮助。

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