Fujita Kazuki, Miaki Hiroichi, Fujimoto Akira, Hori Hideaki, Fujimoto Hitomi, Kobayashi Yasutaka
Fukui Health Science University, Faculty of Health Science, Department of Rehabilitation Physical Therapy, Japan.
Kanazawa University, Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Japan.
J Electromyogr Kinesiol. 2018 Apr;39:99-103. doi: 10.1016/j.jelekin.2018.02.006. Epub 2018 Feb 14.
In hemiparetic stroke survivors, premature plantarflexor muscle activity (PPF) often appears as a gait abnormality from terminal swing to the loading response on the paretic side. This study aimed to discern factors giving rise to PPF. Lower extremity function, spasticity magnitude, and gait electromyograms were assessed in 31 hemiparetic stroke survivors. Mean amplitudes during gait phases were determined for the paretic soleus, tibialis anterior, rectus femoris, and biceps femoris. The subjects were classified into PPF and non-PPF groups based on their relative soleus amplitude at different phases of gait, and group differences in each measurement were calculated and subjected to logistic regression. The PPF group showed less activity of the tibialis anterior during the swing phase but greater activity of the rectus femoris during the swing phase and of the biceps femoris, both prematurely and during the loading response. Logistic regression revealed premature activity of the biceps femoris to be a significant variable related to presence of PPF (odds ratio = 1.054). PPF in hemiparetic gait may work with the biceps femoris to supplement compromised lower extremity extension strength. PPF might be reduced by attaining enhanced strength of the hip and knee extensors at the time of initial contact during gait.
在偏瘫性脑卒中幸存者中,患侧从摆动末期到着地反应期,过早的跖屈肌活动(PPF)常表现为一种步态异常。本研究旨在找出导致PPF的因素。对31例偏瘫性脑卒中幸存者的下肢功能、痉挛程度和步态肌电图进行了评估。测定了患侧比目鱼肌、胫前肌、股直肌和股二头肌在步态各阶段的平均振幅。根据步态不同阶段比目鱼肌的相对振幅将受试者分为PPF组和非PPF组,计算每组测量值的差异并进行逻辑回归分析。PPF组在摆动期胫前肌活动较少,但在摆动期股直肌活动较多,股二头肌在摆动期过早活动且在着地反应期活动也较多。逻辑回归分析显示股二头肌的过早活动是与PPF存在相关的一个显著变量(比值比 = 1.054)。偏瘫步态中的PPF可能与股二头肌协同作用,以补充受损的下肢伸展力量。在步态初始接触时增强髋部和膝部伸肌力量,可能会减少PPF。