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Biological responses induced by mechanical stresses-bone metabolism by bone scintigraphy at residual alveolar bone beneath the denture and TMJs

机译:机械应力 - 骨闪烁骨代谢诱导的生物反应在义齿和TMJ中的残留肺泡骨中的骨闪烁骨膜

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Stomatognathic functions, like the ingestion, mastication, swallowing and articulation, are achieved with the muscle contraction of the jaw and facial muscles as power sources. Forces exerted by the muscles load on the components of masticatory system, which may cause biomechanical-biological effects on the tissues. Significance of the mechanical factors is that they would affect tissue responses including metabolic turnover of the bone. They can lead to adaptive remodelling of these tissues or cause maladaptive, degenerative changes. However, biological changes including bone turnover by the mechanical stresses have not been fully elucidated. This review deals with in vivo biological reactions including the bone turnover with bone scintigraphy, induced by the mechanical stresses, which is least well understood in the biomechamical-biological interface. A few studies have revealed the bone changes of the temporomandibular joint (TMJ), following the mechanical loading with the loss of occlusal support, morphologically and histologically in animal experiments. In these studies, the resorption of cartilage and bone was observed and resulted in the deformation of TMJ. Bone changes beneath the denture base, which applied various loading, were reported in a series of the experiments. Bone resorption was observed histologically, and the level of bone resorption was dependent, on the amount of load applied. The dynamic changes of bone metabolism at residual ridge beneath the denture base and TMJs were revealed with bone scintigraphy in the rats with the different mechanical conditions by means of the tooth extraction and the insertion of the experimental dentures. The results showed that mechanical force conducted with the denture increased the bone turnover beneath the denture base. Furthermore, the occlusal support with the denture influenced the remodelling of TMJs. The biological reactions induced by mechanical stresses are less well understood in thebiomechanical-biological interface. These are the important topics in the future.
机译:由于摄入,咀嚼,吞咽和关节,与颚骨和面部肌肉作为电源的肌肉收缩,实现了气象的功能。肌肉施加肌肉施加咀嚼系统组分的力,这可能导致组织的生物力学生物学作用。机械因素的意义是它们会影响组织反应,包括骨骼的代谢换档。它们可以导致对这些组织的适应性重塑或导致不良,退行性变化。然而,通过机械应力包括骨质扭转的生物变化尚未完全阐明。该综述涉及体内生物反应,包括骨旋转骨质骨折,由机械应力引起,在生物技术 - 生物界面中是最不太清楚的。少数研究揭示了颞下颌关节(TMJ)的骨骼变化,在机械加载后,在动物实验中丢失咬合支持,形态学和组织学丧失。在这些研究中,观察到软骨和骨的吸收,导致TMJ的变形。在一系列实验中报道了施用各种载荷的义齿基础下方的骨骼变化。组织学上观察到骨吸收,并且骨吸收水平依赖于施加的负荷量。在牙本质碱和TMJ中残留脊下的骨代谢的动态变化用牙齿提取的不同机械条件和实验假牙的大鼠骨闪烁术揭示了大鼠的骨闪烁。结果表明,随着义齿进行的机械力增加了义齿底座下方的骨转换。此外,与义齿的咬合支持影响了TMJS的重塑。通过机械应力诱导的生物反应在TheMoomen机械 - 生物界面中较小地理解。这些是未来的重要主题。

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