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1988年沃尔沃生物力学奖。等长运动时躯干肌肉产生扭矩的三轴耦合以及疲劳等惯性运动对运动输出和运动模式的影响。

1988 Volvo award in biomechanics. The triaxial coupling of torque generation of trunk muscles during isometric exertions and the effect of fatiguing isoinertial movements on the motor output and movement patterns.

作者信息

Parnianpour M, Nordin M, Kahanovitz N, Frankel V

机构信息

Occupational and Industrial Orthopaedic Center, Hospital for Joint Diseases Orthopaedic Institute, New York, New York.

出版信息

Spine (Phila Pa 1976). 1988 Sep;13(9):982-92. doi: 10.1097/00007632-198809000-00004.

Abstract

Previous studies have shown that reduction of precise motor control accompanies local muscular fatigue. The effects of isodynamic fatiguing of flexion and extension trunk movements on the movement patterns and the motor output of the trunk were investigated. Twenty male subjects with no history of low-back pain for the past 6 months volunteered for the study. A triaxial dynamometer was used that simultaneously provided measurement of torque, angular position and velocity of each axis. Resistances were set independently for each axis by an interfaced computer. The subjects performed trunk flexion and extension movement against a sagittal plane resistance equal to 70% of their maximum isometric extension strength in the upright position. The minimum resistances in the coronal and transverse planes were set up at 7 Newton meters. The subjects were asked to perform trunk movement as quickly and as accurately as possible while exerting the maximum efforts until exhaustion. Analysis of variance, the MANOVA procedure with a repeated measure design, was performed among the selected parameters of the first, middle and last three repetition cycles. The selected parameters are the trunk motor output and movement patterns; the total angular excursion, range of motion, maximum and average torque and angular velocity of the trunk. All the selected parameters were significantly reduced in the sagittal plane. Subjects displayed significantly less motor control and greater range of motion in the coronal and transverse planes in performing the primary task of flexion and extension. The reduction in the functional capacity of the primary muscles performing the required task is compensated by secondary muscle groups and the spinal structure is loaded in a more injury prone pattern, as identified by finite element models. In addition it is suggested that the fatigued muscles would be less able to compensate any perturbation in the load or position of the trunk. The repetitive loading results in a weakening of the viscoelastic passive elements of the spineless structure. The loss of ability to protect these weakened passive elements makes the spine susceptible to industrial and recreational injuries.

摘要

先前的研究表明,精确的运动控制能力下降与局部肌肉疲劳相伴。本研究调查了躯干屈伸运动的等动力疲劳对躯干运动模式和运动输出的影响。20名在过去6个月内无腰痛病史的男性受试者自愿参与本研究。使用了一个三轴测力计,可同时测量每个轴的扭矩、角位置和速度。通过接口计算机为每个轴独立设置阻力。受试者在矢状面阻力等于其直立位最大等长伸展力量的70%的情况下进行躯干屈伸运动。冠状面和横断面的最小阻力设定为7牛顿米。要求受试者在尽最大努力直至疲惫的同时,尽可能快速、准确地进行躯干运动。对前、中、后三个重复周期的选定参数进行方差分析,采用重复测量设计的多变量方差分析程序。选定的参数包括躯干运动输出和运动模式;躯干的总角偏移、运动范围、最大和平均扭矩以及角速度。所有选定参数在矢状面均显著降低。在进行屈伸主要任务时,受试者在冠状面和横断面显示出明显更少的运动控制和更大的运动范围。执行所需任务的主要肌肉功能能力的下降由次要肌肉群代偿,并且如有限元模型所确定的,脊柱结构以更易受伤的模式加载。此外,有人认为疲劳的肌肉将较难代偿躯干负荷或位置的任何扰动。重复性负荷导致无脊椎结构的粘弹性被动元件减弱。保护这些减弱的被动元件的能力丧失使脊柱易受工业和娱乐性损伤。

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