Chang H F
Proc Natl Sci Counc Repub China B. 1987 Jan;11(1):45-53.
The object of this study was to investigate the effect of instantaneous prestretching on the force degradation behavior of three kinds of four-link plastic modules. A simple sliding apparatus was used to prestretch instantaneously the plastic modules to 100, 200 and 300% of their original length. After prestretching, specimens were tested at 20, 25 and 30 mm stretch distances. Force measurements were performed at the following occasions: before prestretching; at the end of prestretching; after 1, 4 and 24 hours; and after 1, 2 and 3 weeks. The following conclusions can be drawn from this investigation: The control specimens which had not been instantaneously prestretched exhibited considerable force loss over the three-week test period. Most of the force loss occurred rapidly during the first few hours, with a much lower subsequent force degradation rate. Instantaneous prestretching to a greater length resulted in a lower force value remaining at the end of prestretching. Instantaneous prestretching of the plastic modules is an efficient method to dissipate the high initial force level which is clinically undesirable. Prestretching of the modules around or slightly longer than the stretch distance could reduce the high initial force level and still maintain the same force level as the control groups. However, if the length of instantaneous prestretching of the four-link plastic module was much longer than the testing stretch distance which corresponds to the average distance from the first molar to the canine in the same quadrant, the prestretching would reduce both the high initial force value and the force value during the three-week test period, as compared with the control group.
本研究的目的是探究瞬时预拉伸对三种四连杆塑料模块力降解行为的影响。使用一个简单的滑动装置将塑料模块瞬时预拉伸至其原始长度的100%、200%和300%。预拉伸后,在20、25和30毫米的拉伸距离下对试样进行测试。在以下情况下进行力的测量:预拉伸前;预拉伸结束时;1、4和24小时后;以及1、2和3周后。从这项研究中可以得出以下结论:未进行瞬时预拉伸的对照试样在为期三周的测试期内表现出相当大的力损失。大部分力损失在最初几个小时内迅速发生,随后的力降解速率要低得多。瞬时预拉伸至更长的长度会导致预拉伸结束时剩余的力值更低。塑料模块的瞬时预拉伸是一种消散临床上不理想的高初始力水平的有效方法。围绕拉伸距离或略长于拉伸距离对模块进行预拉伸可以降低高初始力水平,并且仍能保持与对照组相同的力水平。然而,如果四连杆塑料模块的瞬时预拉伸长度比对应于同一象限中从第一磨牙到尖牙的平均距离的测试拉伸距离长得多,与对照组相比,预拉伸将降低高初始力值以及为期三周测试期内的力值。