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Understanding the basis of space closure in Orthodontics for a more efficient orthodontic treatment

机译:了解正畸学中封闭空间的基础,以进行更有效的正畸治疗

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Introduction: Space closure is one of the most challenging processes in Orthodontics and requires a solid comprehension of biomechanics in order to avoid undesirable side effects. Understanding the biomechanical basis of space closure better enables clinicians to determine anchorage and treatment options. In spite of the variety of appliance designs, space closure can be performed by means of friction or frictionless mechanics, and each technique has its advantages and disadvantages. Friction mechanics or sliding mechanics is attractive because of its simplicity; the space site is closed by means of elastics or coil springs to provide force, and the brackets slide on the orthodontic archwire. On the other hand, frictionless mechanics uses loop bends to generate force to close the space site, allowing differential moments in the active and reactive units, leading to a less or more anchorage control, depending on the situation. Objective: This article will discuss various theoretical aspects and methods of space closure based on biomechanical concepts.
机译:简介:封闭空间是正畸学中最具挑战性的过程之一,需要扎实的生物力学知识才能避免不良副作用。了解空间封闭的生物力学基础可以使临床医生更好地确定锚固和治疗方案。尽管设备设计多种多样,但可以通过摩擦或无摩擦机制来实现空间封闭,并且每种技术都有其优点和缺点。摩擦力学或滑动力学很简单,因此很有吸引力。通过弹性或螺旋弹簧将空间部位封闭,以提供作用力,支架在正畸弓丝上滑动。另一方面,无摩擦机械师利用弯头弯曲产生力来关闭太空位置,从而允许主动和反作用单元中的微分力矩,从而取决于情况而对锚固进行的控制更少或更多。目的:本文将讨论基于生物力学概念的空间封闭的各种理论方面和方法。

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