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本文引用的文献

1
Effect of axon misdirection on recovery of electromyographic activity and kinematics after peripheral nerve injury.轴突误导向对周围神经损伤后肌电图活动和运动学恢复的影响。
Cells Tissues Organs. 2011;193(5):298-309. doi: 10.1159/000323677. Epub 2011 Mar 17.
2
Misdirection of regenerating axons and functional recovery following sciatic nerve injury in rats.大鼠坐骨神经损伤后再生轴突的转向和功能恢复。
J Comp Neurol. 2011 Jan 1;519(1):21-33. doi: 10.1002/cne.22446.
3
Permanent reorganization of Ia afferent synapses on motoneurons after peripheral nerve injuries.外周神经损伤后 Ia 传入性突触在运动神经元上的永久重组。
Ann N Y Acad Sci. 2010 Jun;1198:231-41. doi: 10.1111/j.1749-6632.2010.05459.x.
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Locomotor changes in length and EMG activity of feline medial gastrocnemius muscle following paralysis of two synergists.猫内侧腓肠肌在两个协同肌麻痹后长度和肌电图活动的变化。
Exp Brain Res. 2010 Jun;203(4):681-92. doi: 10.1007/s00221-010-2279-2. Epub 2010 May 11.
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Whole limb kinematics are preferentially conserved over individual joint kinematics after peripheral nerve injury.外周神经损伤后,肢体整体运动学优先于个别关节运动学得到保留。
J Exp Biol. 2009 Nov;212(Pt 21):3511-21. doi: 10.1242/jeb.033886.
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Peripheral nerve injuries: an international survey of current treatments and future perspectives.周围神经损伤:当前治疗方法与未来展望的国际调查
J Reconstr Microsurg. 2009 Jul;25(6):339-44. doi: 10.1055/s-0029-1215529. Epub 2009 Mar 19.
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Force regulation of ankle extensor muscle activity in freely walking cats.自由行走的猫中踝关节伸肌活动的力调节
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8
Neuromechanical stabilization of leg length and orientation through interjoint compensation during human hopping.在人类单脚跳过程中,通过关节间补偿实现腿部长度和方向的神经力学稳定。
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Motor unit recruitment patterns 1: responses to changes in locomotor velocity and incline.运动单位募集模式1:对运动速度和坡度变化的反应。
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Treadmill training promotes axon regeneration in injured peripheral nerves.跑步机训练可促进受损周围神经的轴突再生。
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坡度和坐骨神经损伤对大鼠行走时踝关节肌肉募集和后肢运动学的影响。

Effect of slope and sciatic nerve injury on ankle muscle recruitment and hindlimb kinematics during walking in the rat.

机构信息

Department of Cell Biology, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

J Exp Biol. 2011 Mar 15;214(Pt 6):1007-16. doi: 10.1242/jeb.051508.

DOI:10.1242/jeb.051508
PMID:21346129
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3044077/
Abstract

Slope-related differences in hindlimb movements and activation of the soleus and tibialis anterior muscles were studied during treadmill locomotion in intact rats and in rats 4 and 10 weeks following transection and surgical repair of the sciatic nerve. In intact rats, the tibialis anterior and soleus muscles were activated reciprocally at all slopes, and the overall intensity of activity in tibialis anterior and the mid-step activity in soleus increased with increasing slope. Based on the results of principal components analysis, the pattern of activation of soleus, but not of tibialis anterior, changed significantly with slope. Slope-related differences in hindlimb kinematics were found in intact rats, and these correlated well with the demands of walking up or down slopes. Following recovery from sciatic nerve injury, the soleus and tibialis anterior were co-activated throughout much of the step cycle and there was no difference in intensity or pattern of activation with slope for either muscle. Unlike intact rats, these animals walked with their feet flat on the treadmill belt through most of the stance phase. Even so, during downslope walking limb length and limb orientation throughout the step cycle were not significantly changed from values found in intact rats. This conservation of hindlimb kinematics was not observed during level or upslope walking. These findings are interpreted as evidence that the recovering animals adopt a novel locomotor strategy that involves stiffening of the ankle joint by antagonist co-activation and compensation at more proximal joints. Their movements are most suitable to the requirements of downslope walking but the recovering rats lack the ability to adapt to the demands of level or upslope walking.

摘要

在完整大鼠以及坐骨神经横断和修复术后 4 周和 10 周的大鼠的跑步机运动中,研究了后肢运动以及比目鱼肌和胫骨前肌的激活与坡度之间的关系。在完整大鼠中,胫骨前肌和比目鱼肌在所有坡度下都是相互激活的,胫骨前肌的整体活动强度和比目鱼肌的中步活动强度随坡度的增加而增加。基于主成分分析的结果,比目鱼肌的激活模式发生了显著变化,但胫骨前肌的激活模式没有变化。在完整大鼠中发现了后肢运动学与坡度相关的差异,这些差异与上下坡行走的需求密切相关。坐骨神经损伤恢复后,比目鱼肌和胫骨前肌在整个步周期中都被共同激活,并且这两块肌肉的激活强度或模式都没有随坡度而变化。与完整大鼠不同,这些动物在整个支撑阶段都将脚平放在跑步机皮带上行走。即便如此,在下坡行走时,整个步周期中的肢体长度和肢体方向与完整大鼠的数值相比没有显著变化。在水平或上坡行走时,没有观察到这种后肢运动学的保持。这些发现表明,恢复中的动物采用了一种新的运动策略,通过拮抗剂的共同激活来增强踝关节的刚度,并在更靠近身体的关节处进行补偿。它们的运动最适合下坡行走的要求,但恢复中的大鼠缺乏适应水平或上坡行走要求的能力。