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Mini-implants and miniplates generate sub-absolute and absoluteanchorage

机译:微型植入物和微型平板产生次绝对和绝对锚固

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摘要

The functional demand imposed on bone promotes changes in the spatial properties of osteocytes as well as in their extensions uniformly distributed throughout the mineralized surface. Once spatial deformation is established, osteocytes create the need for structural adaptations that result in bone formation and resorption that happen to meet the functional demands. The endosteum and the periosteum are the effectors responsible for stimulating adaptive osteocytes in the inner and outer surfaces.Changes in shape, volume and position of the jaws as a result of skeletal correction of the maxilla and mandible require anchorage to allow bone remodeling to redefine morphology, esthetics and function as a result of spatial deformation conducted by orthodontic appliances. Examining the degree of changes in shape, volume and structural relationship of areas where mini-implants and miniplates are placed allows us to classify mini-implants as devices of subabsolute anchorage and miniplates as devices of absolute anchorage.
机译:施加在骨骼上的功能需求促进了骨细胞的空间特性及其在矿化表面均匀分布的延伸区域的变化。一旦确定了空间变形,骨细胞就需要进行结构调整,以适应功能需求而导致骨骼形成和吸收。内膜和骨膜是负责刺激内,外表面适应性骨细胞的效应物。由于上颌骨和下颌骨的骨骼矫正而导致的颌骨形状,体积和位置的变化需要锚固以允许骨重塑以重新定义形态正畸矫治器进行空间变形的结果,具有美观性和功能性。检查放置微型植入物和微型板的区域的形状,体积和结构关系的变化程度,可以使我们将微型植入物分类为亚绝对锚固装置,并将微型板分类为绝对锚固装置。

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