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Functional adaptation to mechanical loading in both cortical and cancellous bone is controlled locally and is confined to the loaded bones

机译:对皮质和松质骨中的机械负荷的功能适应性是局部控制的并且仅限于负荷的骨骼

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摘要

In order to validate whether bones' functional adaptation to mechanical loading is a local phenomenon, we randomly assigned 21 female C57BL/6 mice at 19 weeks of age to one of three equal numbered groups. All groups were treated with isoflurane anesthesia three times a week for 2 weeks (approximately 7 min/day). During each anaesthetic period, the right tibiae/fibulae in the DYNAMIC + STATIC group were subjected to a peak dynamic load of 11.5 N (40 cycles with 10-s intervals between cycles) superimposed upon a static “pre-load” of 2.0 N. This total load of 13.5 N engendered peak longitudinal strains of approximately 1400 microstrain on the medial surface of the tibia at a middle/proximal site. The right tibiae/fibulae in the STATIC group received the static “pre-load” alone while the NOLOAD group received no artificial loading. After 2 weeks, the animals were sacrificed and both tibiae, fibulae, femora, ulnae and radii analyzed by three-dimensional high-resolution (5 μm) micro-computed tomography (μCT). In the DYNAMIC + STATIC group, the proximal trabecular percent bone volume and cortical bone volume at the proximal and middle levels of the right tibiae as well as the cortical bone volume at the middle level of the right fibulae were markedly greater than the left. In contrast, the left bones in the DYNAMIC + STATIC group showed no differences compared to the left or right bones in the NOLOAD or STATIC group. These μCT data were confirmed by two-dimensional examination of fluorochrome labels in bone sections which showed the predominantly woven nature of the new bone formed in the loaded bones. We conclude that the adaptive response in both cortical and trabecular regions of bones subjected to short periods of dynamic loading, even when this response is sufficiently vigorous to stimulate woven bone formation, is confined to the loaded bones and does not involve changes in other bones that are adjacent, contra-lateral or remote to them.
机译:为了验证骨骼对机械负荷的功能适应性是否是局部现象,我们将19周龄的21只雌性C57BL / 6小鼠随机分配给三个相同编号的组之一。所有组每周两次接受异氟烷麻醉2周(约7分钟/天)。在每个麻醉期间,DYNAMIC + STATIC组的右胫骨/腓骨承受的峰值动态负荷为11.5 N(40个循环,每个循环之间间隔10秒),并附加了2.0 N的静态``预负荷''。 13.5 N的总载荷在胫骨内侧表面/近端部位产生大约1400微应变的峰值纵向应变。 STATIC组的右胫骨/腓骨仅承受静态的“预紧力”,而NOLOAD组则不承受任何人工负载。 2周后,处死动物,并通过三维高分辨率(5μm)微计算机断层扫描(μCT)分析胫骨,腓骨,股骨,尺骨和半径。在DYNAMIC + STATIC组中,右胫骨近端和中层的近端小梁百分比骨体积和皮质骨体积以及右腓骨中层的皮质骨体积显着大于左侧。相比之下,DYNAMIC + STATIC组的左侧骨骼与NOLOAD或STATIC组的左侧或右侧骨骼没有差异。这些μCT数据通过对骨骼区域中的荧光标记物进行二维检查得到了证实,这些标记显示了负载骨骼中形成的新骨骼的主要编织特性。我们得出的结论是,即使短时动态加载,骨骼的皮质和小梁区域中的自适应响应,即使该响应足够剧烈以刺激编织骨骼的形成,也仅限于加载的骨骼,并且不涉及其他骨骼的变化与它们相邻,对侧或较远。

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