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首页> 外文期刊>BMC Musculoskeletal Disorders >Differential response to vibration of three forms of scoliosis during axial cyclic loading: a finite element study
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Differential response to vibration of three forms of scoliosis during axial cyclic loading: a finite element study

机译:三种周期性脊柱侧弯在轴向循环载荷下对振动的差分响应:有限元研究

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Scoliosis is a serious disease that can affect all segments of society. Few studies have investigated the response to vibration of differing sinusoidal axial cyclic loading frequencies for different forms of scoliosis in the lumbar spine. In this study, four finite element models, comprising a healthy spine, Lenke-A, Lenke-B and Lenke-C scoliosis of the lumbar S1-L1 region were developed. Modal analysis extracted resonant frequencies of the FE models with an upper body mass of 40?kg and 400?N preload. A transient dynamic analysis was performed to obtain the response to vibration of models under a sinusoidal axial loading of ± 40N at frequencies of 3, 5, 7, 9, 11 and 13?Hz using an upper body mass of 40?kg and 400?N preload. The first-order resonant frequencies of healthy, Lenke-A, Lenke-B and Lenke-C spines were 9.2, 3.9, 4.6 and 5.7?Hz, respectively. A Lenke-A lumbar spine was more likely to deform at a lower vibration frequency and Lenke-C deformed more easily at a higher vibration frequency. Furthermore, the vibration amplitude in the Y-direction (left-right) was greatest and least in the Z-direction (top-bottom). The frequency of cyclic loading closest to the resonant frequency resulted in a maximum value of peak-to-peak vibrational displacement. Furthermore, the vibrational amplitudes in patients with scoliosis were larger than they were in healthy subjects. In addition, axial displacement of the vertebrae in the healthy spine changed steadily whereas fluctuations in the scoliotic vertebrae in scoliosis patients were greater than that of other vertebrae. Different forms of scoliosis may have different vibrational characteristics, the scoliotic vertebrae being the weak link in scoliosis under loading condition of whole body vibration. Scoliosis was more sensitive to this form of vibration. Where the frequency of axial cyclic vibrational loading of the lumbar spine was closer to its resonant frequency, the vibrational amplitude was larger. These results suggest that vibration will exacerbate the degree of scoliosis and so such patients should reduce their exposure to vibration. Clinical treatment should pay attention to the scoliotic vertebrae and reduce their vibration. These findings may assist in the clinical prevention and treatment of scoliosis.
机译:脊柱侧弯是一种严重的疾病,可以影响社会各阶层。很少有研究针对腰椎的不同形式的脊柱侧弯对不同正弦轴向循环载荷频率的振动响应进行研究。在这项研究中,开发了四个有限元模型,包括腰椎S1-L1区域的健康脊柱,Lenke-A,Lenke-B和Lenke-C脊柱侧弯。模态分析提取了上半身体重为40?kg,预载为400?N的FE模型的共振频率。进行了瞬态动力学分析,获得了模型振动的响应,正弦轴向载荷为±40N,频率为3、5、7、9、11和13?Hz,上体质量为40?kg和400?kg。 N个预紧力。健康,Lenke-A,Lenke-B和Lenke-C棘的一阶共振频率分别为9.2、3.9、4.6和5.7?Hz。 Lenke-A腰椎在较低的振动频率下更容易变形,Lenke-C在较高的振动频率下更容易变形。此外,Y方向(左右)的振动幅度最大,Z方向(上下)的振动幅度最小。最接近谐振频率的循环负载频率导致峰峰值振动位移的最大值。此外,脊柱侧弯患者的振动幅度大于健康受试者。另外,健康脊柱的椎骨轴向位移稳定地变化,而脊柱侧凸患者的脊柱侧凸椎骨的波动大于其他椎骨。不同形式的脊柱侧弯可能具有不同的振动特性,在全身振动的负荷条件下,脊柱侧弯是脊柱侧弯的薄弱环节。脊柱侧弯对这种形式的振动更敏感。腰椎轴向周期性振动载荷的频率接近其共振频率时,振动幅度较大。这些结果表明振动会加剧脊柱侧弯的程度,因此此类患者应减少振动暴露。临床治疗中应注意脊柱侧凸椎骨并减少其振动。这些发现可能有助于脊柱侧弯的临床预防和治疗。

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