Andrade R J, Lacourpaille L, Freitas S R, McNair P J, Nordez A
EA 4334, Laboratoire "Motricité, Interactions, Performance", Université de Nantes, Nantes, France.
CIPER, Faculdade de Motricidade Humana, Universidade de Lisboa, Dafundo, Portugal.
Scand J Med Sci Sports. 2016 Jan;26(1):41-7. doi: 10.1111/sms.12406. Epub 2015 Feb 12.
Ankle joint range of motion (ROM) is notably influenced by the position of the hip joint. However, this result remains unexplained. Thus, the aim of this study was to test if the ankle passive torque and gastrocnemius muscle tension are affected by the hip and the head positions. The torque and the muscle shear elastic modulus (measured by elastography to estimate muscle tension) were collected in nine participants during passive ankle dorsiflexions performed in four conditions (by combining hip flexion at 90 or 150°, and head flexed or neutral). Ankle maximum dorsiflexion angle significantly decreased by flexing the hip from 150 to 90° (P < 0.001; mean difference 17.7 ± 2.5°), but no effect of the head position was observed (P > 0.05). Maximal passive torque and shear elastic modulus were higher with the hip flexed at 90° (P < 0.001). During submaximal ROM, no effects of the head and hip positioning (P > 0.05) were found for both torque and shear elastic modulus at a given common ankle angle among conditions. Shifts in maximal ankle angle due to hip angle manipulation are not related neither to changes in passive torque nor tension of the gastrocnemius. Further studies should be addressed to better understand the functional role of peripheral nerves and fasciae in the ankle ROM limits.
踝关节活动范围(ROM)显著受髋关节位置的影响。然而,这一结果仍未得到解释。因此,本研究的目的是测试踝关节被动扭矩和腓肠肌张力是否受髋关节和头部位置的影响。在四种条件下(通过将髋关节屈曲至90°或150°,以及头部屈曲或中立)进行被动踝关节背屈时,收集了9名参与者的扭矩和肌肉剪切弹性模量(通过弹性成像测量以估计肌肉张力)。将髋关节从150°屈曲至90°时,踝关节最大背屈角度显著减小(P < 0.001;平均差异17.7±2.5°),但未观察到头部位置的影响(P > 0.05)。髋关节屈曲90°时,最大被动扭矩和剪切弹性模量更高(P < 0.001)。在次最大ROM期间,在给定的共同踝关节角度下,各条件之间的扭矩和剪切弹性模量均未发现头部和髋关节位置的影响(P > 0.05)。由于髋关节角度操作导致的最大踝关节角度变化既与被动扭矩的变化无关,也与腓肠肌的张力变化无关。应进行进一步研究,以更好地理解周围神经和筋膜在踝关节ROM限制中的功能作用。