Moroney S P, Schultz A B, Miller J A
Department of Mechanical Engineering, University of Michigan, Ann Arbor.
J Orthop Res. 1988;6(5):713-20. doi: 10.1002/jor.1100060514.
To examine the loads imposed on the structures of the neck by the performance of physical tasks, a biomechanical model of the neck was constructed. The model incorporated 14 bilateral pairs of muscle equivalents crossing the C4 level. A double linear programming optimization scheme that minimized maximum muscle contraction intensity and then vertebral compression force while equilibrating external loads was used to calculate the muscle contraction forces required and the motion segment reactions produced by task performance. To test model validity, 14 healthy adult subjects performed a series of isometric tasks requiring use of their neck muscles. These tasks included exertions in attempted flexion, extension, and left and right lateral bending and twisting. Subjects exerted maximum and submaximum voluntary efforts. During the performance, surface myoelectric activities were recorded at eight locations around the periphery of the neck at the C4 level. Calculated forces and measured myoelectric activities were then linearly correlated. Mean measured voluntary neck strengths in 10 male subjects were as large as 29.7 Nm. Four female subjects developed mean strengths that were approximately 60%-90% of those of the males. In both sexes, neck muscle strengths were approximately one order of magnitude lower than previously measured lumbar trunk strengths. Mean calculated neck muscle contraction forces ranged to 180 N. Mean calculated compression forces on the C4-5 motion segment ranged to 1164 N, lateral shear forces ranged to 125 N, and anteroposterior shear forces ranged to 135 N. Correlation coefficients between the calculated muscle forces and the measured myoelectric activities were as large as 0.85 in some muscles, but generally were smaller than this.
为了研究执行体力任务时颈部结构所承受的负荷,构建了一个颈部生物力学模型。该模型纳入了14对跨越C4水平的双侧肌肉等效物。采用一种双线性规划优化方案,在平衡外部负荷的同时,使最大肌肉收缩强度和椎体压缩力最小化,以计算所需的肌肉收缩力以及任务执行产生的运动节段反应。为了测试模型的有效性,14名健康成年受试者进行了一系列需要使用颈部肌肉的等长任务。这些任务包括试图进行的前屈、后伸、左右侧屈和扭转用力。受试者施加了最大和次最大自主努力。在任务执行过程中,在C4水平颈部周围的八个位置记录了表面肌电活动。然后将计算出的力与测量的肌电活动进行线性相关分析。10名男性受试者的平均测量颈部自主力量高达29.7 Nm。四名女性受试者的平均力量约为男性的60%-90%。在两性中,颈部肌肉力量比先前测量的腰椎躯干力量低约一个数量级。计算出的颈部肌肉收缩力平均值范围为180 N。C4-5运动节段的平均计算压缩力范围为1164 N,横向剪切力范围为125 N,前后剪切力范围为135 N。在某些肌肉中,计算出的肌肉力与测量的肌电活动之间的相关系数高达0.85,但一般小于此值。