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Finite Element Investigation of the Effects of the Low-Frequency Vibration Generated by Vehicle Driving on the Human Lumbar Mechanical Properties

机译:车辆驱动对人腰椎机械性能的低频振动效应的有限元调查

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摘要

Long-term exposure to low-frequency vibration generated by vehicle driving impairs human lumbar spine health. However, few studies have investigated how low-frequency vibration affects human lumbar mechanical properties. This study established a poroelastic finite element model of human lumbar spinal segments L2–L3 to perform time-dependent vibrational simulation analysis and investigated the effects of different vibrational frequencies generated by normal vehicle driving on the lumbar mechanical properties in one hour. Analysis results showed that vibrational load caused more injury to lumbar health than static load, and vibration at the resonant frequency generated the most serious injury. The axial effective stress and the radial displacement in the intervertebral disc, as well as the fluid loss in the nucleus pulposus, increased, whereas the pore pressure in the nucleus pulposus decreased with increased vibrational frequency under the same vibrational time, which may aggravate the injury degree of human lumbar spine. Therefore, long-term driving on a well-paved road also induces negative effects on human lumbar spine health. When driving on a nonpaved road or operating engineering machinery under poor navigating condition, the auto seat transmits relatively high vibrational frequency, which is highly detrimental to the lumbar spine health of a driver.
机译:长期暴露于车辆推动损害人腰椎健康的车辆产生的低频振动。然而,很少有研究研究了低频振动如何影响人腰椎机械性能。本研究建立了人腰椎脊髓段L2-L3的孔弹性有限元模型,以进行时间依赖性振动模拟分析,并研究了一小时内腰部机械性能上的正常车辆产生的不同振动频率的影响。分析结果表明,振动载荷引起腰椎健康的损伤而不是静态载荷,并且谐振频率的振动产生了最严重的伤害。轴向有效的应力和椎间盘中的径向位移,以及细胞核脉搏中的流体损失,而核脉骨的孔隙压力随着相同振动时间的振动频率增加而降低,这可能会加重损伤人腰椎脊柱的程度。因此,在铺砌的道路上长期驾驶也对人类腰椎健康产生负面影响。当在较差的导航条件下在非覆盖的道路或操作工程机械上驾驶时,自动座椅传输相对较高的振动频率,这对驾驶员的腰椎健康产生了非常有害的振动频率。

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