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Effect of higher frequency components and duration of vibration on bonetissue alterations in the rat-tail model

机译:高频分量和振动持续时间对骨骼的影响尾巴模型中的组织改变

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摘要

To formulate more accurate guidelines for musculoskeletal disorders (MSD) linked to Hand-Arm Vibration Syndrome (HAVS), delineation of the response of bone tissue under different frequencies and duration of vibration needs elucidation. Rat-tails were vibrated at 125 Hz (9 rats) and 250 Hz (9 rats), at 49 m/s2, for 1D (6 rats), 5D (6 rats) and 20D (6 rats); D=days (4 h/d). Rats in the control group (6 rats for the vibration groups; 2 each for 1D, 5D, and 20D) were left in their cages, without being subjected to any vibration. Structural and biochemical damages were quantified using empty lacunae count and nitrotyrosine signal-intensity, respectively. One-way repeated-measure mixed-model ANOVA at p<0.05 level of significance was used for analysis. In the cortical bone, structural damage quantified through empty lacunae count was significant (p<0.05) at 250 Hz (10.82 ± 0.66) in comparison to the control group (7.41 ± 0.76). The biochemical damage was significant (p<0.05) at both the 125 Hz and 250 Hz vibration frequencies. The structural damage was significant (p<0.05) at 5D for cortical bone while the trabecular bone showed significant (p<0.05) damage at 20D time point. Further, the biochemical damage increased with increase in the duration of vibration with a significant (p<0.05) damage observed at 20D timepoint and a near significant change (p=0.08) observed at 5D time point.Structural and biochemical changes in bone tissue are dependent upon higher vibrationfrequencies of 125 Hz, 250 Hz and the duration of vibration (5D, 20D).
机译:为了针对与手臂振动综合征(HAVS)相关的肌肉骨骼疾病(MSD)制定更准确的指南,需要阐明在不同频率和振动持续时间下骨骼组织的反应。 1D(6只大鼠),5D(6只大鼠)和20D(6只)的尾巴分别以125 Hz(9只大鼠)和250 Hz(9只大鼠)以49 m / s 2 振动。大鼠); D =天(4 h / d)。对照组中的大鼠(振动组6只; 1D,5D和20D各2只)被留在笼中,没有受到任何振动。使用空洞计数和硝基酪氨酸信号强度分别对结构和生化损伤进行定量。 p <0.05显着性水平的单向重复测量混合模型ANOVA用于分析。与对照组(7.41±0.76)相比,在250 Hz(10.82±0.66)时,通过空腔计数量化的结构损伤显着(p <0.05)。在125 Hz和250 Hz的振动频率下,生化损伤均显着(p <0.05)。皮质骨在5D时结构性损伤显着(p <0.05),而小梁骨在20D时点显着(p <0.05)损伤。此外,生化损伤随振动持续时间的增加而增加,在20天时观察到显着(p <0.05)损伤点和在5D时间点观察到的接近显着变化(p = 0.08)。骨组织的结构和生化变化取决于更高的振动频率为125 Hz,250 Hz和振动持续时间(5D,20D)。

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