Stubbs M, Harris M, Solomonow M, Zhou B, Lu Y, Baratta R V
Department of Orthopaedic Surgery, Louisiana State University Medical Center, New Orleans 70112, USA.
J Electromyogr Kinesiol. 1998 Aug;8(4):197-204. doi: 10.1016/s1050-6411(97)00012-6.
A ligamento-muscular protective reflex in the lumbar spine was demonstrated in a feline model. Stimulating electrodes were applied to the supraspinous ligament between several lumbar vertebra (L1 to L6) while recording myoelectric discharge from the paraspinal muscles at the L3, L4 and L5, bilaterally. Electromyographic (EMG) activity was present in the paraspinal muscles bilaterally, upon stimulation of the supraspinous ligament, in six preparations. The EMG discharge was strongest in the muscles one level below that of the stimulated ligament, whereas weaker EMG signals were recorded from as far as two levels above and below. The mean time delay between the application of the stimulus to the ligament to the resulting EMG ranged from 2.52 to 2.77 ms at all levels. Stimulation of the supraspinous ligament in the L6 segment resulted in a weak reflex response, and stimulation in the L7 segment did not produce any EMG activity. It was concluded that mechanoreceptors in the supraspinous ligament at the L1/6 levels may initiate sensory signals upon strain of the ligament, during flexion. This, in turn, causes contraction of the paraspinal muscles, bilaterally, to extend the spine and prevent possible damage to the ligament while maintaining stability. The results may add to the understanding of low back pain, and to the formulation of surgical procedures which could spare the neural supply of the ligament, allowing advanced physiotherapeutic modalities to be implemented for post-surgical rehabilitation.
在猫模型中证实了腰椎的韧带 - 肌肉保护反射。将刺激电极应用于几个腰椎(L1至L6)之间的棘上韧带,同时双侧记录L3、L4和L5节段椎旁肌的肌电放电。在六个实验样本中,刺激棘上韧带时,双侧椎旁肌均出现肌电活动。肌电放电在受刺激韧带下方一个节段的肌肉中最强,而在其上方和下方两个节段处记录到的肌电信号较弱。在所有节段,从刺激韧带至产生肌电的平均时间延迟为2.52至2.77毫秒。刺激L6节段的棘上韧带产生微弱的反射反应,而刺激L7节段未产生任何肌电活动。得出的结论是,L1/6节段棘上韧带中的机械感受器可能在韧带在屈曲过程中受牵拉时启动感觉信号。这反过来会导致双侧椎旁肌收缩,伸展脊柱,并在保持稳定性的同时防止韧带可能受到的损伤。这些结果可能有助于增进对腰痛的理解,并有助于制定能够保留韧带神经供应的外科手术程序,从而使先进的物理治疗方法能够用于术后康复。