Tijs Chris, van Dieën Jaap H, Baan Guus C, Maas Huub
MOVE Research Institute Amsterdam, Faculty of Human Movement Sciences, VU University Amsterdam, Amsterdam, The Netherlands.
PLoS One. 2014 Oct 31;9(10):e111595. doi: 10.1371/journal.pone.0111595. eCollection 2014.
The Achilles tendon and epimuscular connective tissues mechanically link the triceps surae muscles. These pathways may cause joint moments exerted by each muscle individually not to sum linearly, both in magnitude and direction. The aims were (i) to assess effects of sagittal plane ankle angle (varied between 150° and 70°) on isometric ankle moments, in both magnitude and direction, exerted by active rat triceps surae muscles, (ii) to assess ankle moment summation between those muscles for a range of ankle angles and (iii) to assess effects of sagittal plane ankle angle and muscle activation on Achilles tendon length. At each ankle angle, soleus (SO) and gastrocnemius (GA) muscles were first excited separately to assess ankle-angle moment characteristics and subsequently both muscles were excited simultaneously to investigate moment summation. The magnitude of ankle moment exerted by SO and GA, the SO direction in the transverse and sagittal planes, and the GA direction in the transverse plane were significantly affected by ankle angle. SO moment direction in the frontal and sagittal planes were significantly different from that of GA. Nonlinear magnitude summation varied between 0.6±2.9% and -3.6±2.9%, while the nonlinear direction summation varied between 0.3±0.4° and -0.4±0.7° in the transverse plane, between 0.5±0.4° and 0.1±0.4° in the frontal plane, and between 3.0±7.9° and 0.3±2.3° in the sagittal plane. Changes in tendon length caused by SO contraction were significantly lower than those during contraction of GA and GA+SO simultaneously. Thus, moments exerted by GA and SO sum nonlinearly both in the magnitude and direction. The limited degree of nonlinear summation may be explained by different mechanisms acting in opposite directions.
跟腱和肌外结缔组织在力学上连接了小腿三头肌。这些路径可能导致每块肌肉单独产生的关节力矩在大小和方向上都不会线性相加。本研究的目的是:(i)评估矢状面踝关节角度(在150°至70°之间变化)对活动的大鼠小腿三头肌产生的等长踝关节力矩大小和方向的影响;(ii)评估一系列踝关节角度下这些肌肉之间的踝关节力矩总和;(iii)评估矢状面踝关节角度和肌肉激活对跟腱长度的影响。在每个踝关节角度,首先分别刺激比目鱼肌(SO)和腓肠肌(GA)以评估踝关节角度力矩特征,随后同时刺激这两块肌肉以研究力矩总和。SO和GA产生的踝关节力矩大小、SO在横断面和矢状面的方向以及GA在横断面的方向均受踝关节角度的显著影响。SO在额状面和矢状面的力矩方向与GA的显著不同。非线性大小总和在0.6±2.9%至-3.6±2.9%之间变化,而在横断面中非线性方向总和在0.3±0.4°至-0.4±0.7°之间变化,在额状面中在0.5±0.4°至0.1±0.4°之间变化,在矢状面中在3.0±7.9°至0.3±2.3°之间变化。SO收缩引起的肌腱长度变化明显低于GA和GA+SO同时收缩时的变化。因此,GA和SO产生的力矩在大小和方向上均非线性相加。非线性总和程度有限可能由作用方向相反的不同机制来解释。