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Biomechanical analysis of brachial plexus injury: Availability of three-dimensional finite element model of the brachial plexus

机译:臂丛丛损伤的生物力学分析:臂丛丛三维有限元模型的可用性

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Adult brachial plexus injuries frequently lead to significant and permanent physical disabilities. Investigating the mechanism of the injury using biomechanical approaches may lead to further knowledge with regard to preventing brachial plexus injuries. However, there are no reports of biomechanical studies of brachial plexus injuries till date. Therefore, the present study used a complex three-dimensional finite element model (3D-FEM) of the brachial plexus to analyze the mechanism of brachial plexus injury and to assess the validity of the model. A complex 3D-FEM of the spinal column, dura mater, spinal nerve root, brachial plexus, rib bone and cartilage, clavicle, scapula, and humerus were conducted. Stress was applied to the model based on the mechanisms of clinically reported brachial plexus injuries: Retroflexion of the cervical, lateroflexion of the cervical, rotation of the cervical, and abduction of the upper limb. The present study analyzed the distribution and strength of strain applied to the brachial plexus during each motion. When the cervical was retroflexed or lateroflexed, the strain was focused on the C5 nerve root and the upper trunk of the brachial plexus. When the upper limb was abducted, strain was focused on the C7 and C8 nerve roots and the lower trunk of the brachial plexus. The results of brachial plexus injury mechanism corresponded with clinical findings that demonstrated the validity of this model. The results of the present study hypothesized that the model has a future potential for analyzing pathological conditions of brachial plexus injuries and other injuries or diseases, including that of spine and spinal nerve root.
机译:成人的臂丛丛受伤经常导致重要和永久性的身体残疾。使用生物力学方法调查伤害机制可能导致预防臂丛丛伤害的进一步了解。然而,直到迄今为止,没有关于臂丛丛受伤的生物力学研究的报道。因此,本研究使用了臂丛的复杂的三维有限元模型(3D-FEM)来分析臂丛丛损伤的机制,并评估模型的有效性。进行了脊柱,硬脑膜,脊柱神经根,臂丛神经,肋骨和软骨,锁骨,肩胛骨和肱骨的复杂3D-FEM。基于临床报道的臂丛丛伤的机制应用于模型的模型:宫颈,颈椎,颈椎旋转的颈椎,颈椎旋转和上肢的绑定。本研究分析了在每种运动期间施加到臂丛神经的应变的分布和强度。当宫颈被翻新或后折叠时,将菌株聚焦在C5神经根和臂丛的上躯干上。当上肢被诱导时,将菌株聚焦在C7和C8神经根部和臂丛丛的下躯干上。肱骨丛损伤机制的结果与表现出该模型的有效性的临床调查结果相对应。本研究的结果假设该模型具有未来的潜力,用于分析臂丛神经损伤和其他伤害或疾病的病理条件,包括脊柱和脊柱神经根。

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