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In vivo dynamic compression has less detrimental effect than static compression on newly formed bone of a rat caudal vertebra

机译:体内动态压迫比静态压迫对大鼠尾椎新形成的骨头的有害作用小

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摘要

Fusionless devices are currently designed to treat spinal deformities such as scoliosis by the application of a controlled mechanical loading. Growth modulation by dynamic compression was shown to preserve soft tissues. The objective of this in vivo study was to characterize the effect of static vs. dynamic loading on the bone formed during growth modulation. Controlled compression was applied during 15 days on the 7th caudal vertebra (Cd7) of rats during growth spurt. The load was sustained in the “static” group and sinusoidally oscillating in the “dynamic” group. The effect of surgery and of the device was investigated using control and sham (operated on but no load applied) groups. A high resolution CT-scan of Cd7 was acquired at days 2, 8 and 15 of compression. Growth rates, histomorphometric parameters and mineral density of the newly formed bone were quantified and compared. Static and dynamic loadings significantly reduced the growth rate by 20% compared to the sham group. Dynamic loading preserved newly formed bone histomorphometry and mineral density whereas static loading induced thicker (+31%) and more mineralized (+12%) trabeculae. A significant sham effect was observed. Growth modulation by dynamic compression constitutes a promising way to develop new treatment for skeletal deformities.
机译:目前,无融合装置被设计为通过施加受控的机械负荷来治疗脊柱侧凸等脊柱畸形。动态压缩对生长的调节作用表明可以保留软组织。这项体内研究的目的是表征静态和动态负载对生长调节过程中形成的骨骼的影响。在生长突增期间,对大鼠第7 尾椎(Cd7)进行为期15天的受控压迫。负荷在“静态”组中持续,而在“动态”组中呈正弦振荡。使用对照组和假手术组(手术但未施加负荷)研究手术和器械的效果。在压缩的第2、8和15天获得了Cd7的高分辨率CT扫描。定量并比较了新形成的骨骼的生长速率,组织形态计量学参数和矿物质密度。与假组相比,静态和动态载荷显着降低了20%的增长率。动态载荷保持了新形成的骨组织形态学和矿物质密度,而静态载荷则引起了更小(+ 31%)和更多矿化(+ 12%)小梁。观察到明显的假效果。通过动态压缩进行生长调节构成了开发针对骨骼畸形的新疗法的有前途的方法。

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