首页> 外文会议>ASME international mechanical engineering congress and exposition >CHARACTERIZATION OF LUMBAR-LEVEL SPINAL FUSION ON THE WHOLE HUMAN SPINE UNDER VIBRATIONS
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CHARACTERIZATION OF LUMBAR-LEVEL SPINAL FUSION ON THE WHOLE HUMAN SPINE UNDER VIBRATIONS

机译:振动条件下全人类脊柱腰椎脊柱融合的特征

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In the United States alone, 12-15% of the population will visit their physician for back pain problems each year, creating a direct annual cost of nearly $40 billion. Pain in the spine may be associated with spinal instability and intervertebral disc (IVD) degeneration. The causes of disc degeneration are not completely understood, but have been thought to be linked to excessive loading conditions and whole body vibrations. Patients not responding to non-operative treatment may be considered for surgical fusion. Vibrations of the spine near its resonant frequency are more likely to lead to spinal injury and subsequent pain. These vibrations may result from prolonged exposure to mechanical vibrations, for example from riding in vehicles. Little is understood about the effect of spine pathologies or treatment techniques on this frequency. While fusion procedure may aid in stabilizing the spine, it may also lead to changes in spine biomechanics. A high fidelity anatomically accurate whole spine finite element model was developed and utilized to examine vibration in the spine using modal analysis. Vibration modes and resonant frequencies were obtained in the healthy spine along with cases of lumbar spine disc degeneration and fusion at several levels, including L4-L5, L3-L5, L5-S, L4-S, and L3-S.
机译:仅在美国,每年就有12-15%的人口会因背痛问题去看医生,每年直接造成的费用将近400亿美元。脊柱疼痛可能与脊柱不稳和椎间盘退变有关。椎间盘退变的原因尚不完全清楚,但已被认为与过度的负荷情况和全身振动有关。对非手术治疗无反应的患者可考虑进行手术融合。接近共振频率的脊柱振动更可能导致脊柱受伤和随后的疼痛。这些振动可能是由于长时间暴露于机械振动而引起的,例如,由于骑乘车辆而引起的。对于脊柱病理或治疗技术对该频率的影响了解甚少。尽管融合手术可能有助于稳定脊柱,但也可能导致脊柱生物力学发生变化。建立了高保真解剖精确的整个脊柱有限元模型,并使用模态分析将其用于检查脊柱中的振动。在健康脊椎中获得振动模式和共振频率,并在多个级别(包括L4-L5,L3-L5,L5-S,L4-S和L3-S)获得腰椎间盘退变和融合的病例。

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