Kagaya H, Sharma M, Kobetic R, Marsolais E B
Veterans Affairs Medical Center, Department of Orthopaedics, Case Western Reserve University, Cleveland, Ohio, USA.
Am J Phys Med Rehabil. 1998 Jan-Feb;77(1):49-54; quiz 65-6. doi: 10.1097/00002060-199801000-00009.
Joint contractures have been one of the contraindications for use of functional electrical stimulation for standing in paraplegic patients. A simulation study using a three-segment link mechanical model of the human body was performed to calculate the muscle moments at the ankles, knees, and hips during standing with and without having joint contractures. The knee and hip angles were varied in 5 degrees increments, whereas the ankle angles were varied in 1 degree increments. It was assumed that energy efficient posture was obtained with the least sum of the squared moments of the ankles, knees, and hips joints by the muscles. Ankles at 5 degrees of dorsiflexion, knees at 0 degrees, and hips at 15 degrees of extension resulted in the most energy efficient posture without joint contractures. The muscle moments increased with the increase in angle of contractures. The joint contractures at ankle angles > or = 6 degrees of plantar flexion, knee angles > or = 20 degrees of flexion, and/or hip angles > or = 20 degrees of flexion produce a potentially unstable posture. These findings suggest that some degree of joint contractures can be tolerated in paraplegic patients using functional electrical stimulation for standing.
关节挛缩一直是截瘫患者使用功能性电刺激站立的禁忌证之一。进行了一项模拟研究,使用人体的三段链接力学模型来计算在有和没有关节挛缩的情况下站立时脚踝、膝盖和臀部的肌肉力矩。膝盖和臀部角度以5度的增量变化,而脚踝角度以1度的增量变化。假设通过肌肉使脚踝、膝盖和臀部关节的平方力矩之和最小来获得能量高效的姿势。在没有关节挛缩的情况下,脚踝背屈5度、膝盖0度、臀部伸展15度时可获得最节能的姿势。肌肉力矩随着挛缩角度的增加而增加。脚踝跖屈角度≥6度、膝盖屈曲角度≥20度和/或臀部屈曲角度≥20度的关节挛缩会产生潜在的不稳定姿势。这些发现表明,使用功能性电刺激站立的截瘫患者可以耐受一定程度的关节挛缩。