Institute of Biomechanics and Orthopaedics, German Sport University Cologne, Cologne, Germany.
J Sports Sci. 2013;31(4):424-33. doi: 10.1080/02640414.2012.736627. Epub 2012 Oct 30.
The metatarsal phalangeal joint (MPJ) and its crossing toe flexor muscles (TFM) represent the link between the large energy generating leg extensor muscles and the ground. The purpose of this study was to examine the functional adaptability of TFM to increased mechanical stimuli and the effects on walking, running and jumping performance. Fifteen men performed a heavy resistance TFM strength training with 90% of the maximal voluntary isometric contraction (MVIC) for 7 weeks (560 contractions) for the left and right foot. Maximal MPJ and ankle plantar flexion moments during MVICs were measured in dynamometers before and after the intervention. Motion analyses (inverse dynamics) were performed during barefoot walking, running, and vertical and horizontal jumping. Athletic performance was determined by measuring jump height and distance. Left (0.21 to 0.38 Nm · kg(-1); P < 0.001) and right (0.24 to 0.40 Nm · kg(-1); P < 0.001) MPJ plantar flexion moments in the dynamometer, external MPJ dorsiflexion moments (0.69 to 0.75 Nm · kg(-1); P = 0.012) and jump distance (2.25 to 2.31 m; P = 0.006) in horizontal jumping increased significantly. TFM responded highly to increased loading within a few weeks. The increased force potential made a contribution to an athlete's performance enhancement.
跖趾关节(MPJ)及其交叉趾屈肌(TFM)代表了大型伸肌和地面之间的能量产生链接。本研究的目的是研究 TFM 对增加的机械刺激的功能适应性及其对步行、跑步和跳跃性能的影响。15 名男性进行了为期 7 周(560 次收缩)的左、右脚 90%最大自主等长收缩(MVIC)的 TFM 强度训练。干预前后,在测力计中测量最大 MPJ 和踝关节跖屈力矩。在赤脚行走、跑步以及垂直和水平跳跃期间进行运动分析(逆动力学)。通过测量跳跃高度和距离来确定运动表现。左(0.21 至 0.38 Nm·kg(-1);P < 0.001)和右(0.24 至 0.40 Nm·kg(-1);P < 0.001)MPJ 跖屈力矩在测力计中、外部 MPJ 背屈力矩(0.69 至 0.75 Nm·kg(-1);P = 0.012)和跳跃距离(2.25 至 2.31 m;P = 0.006)在水平跳跃中显著增加。TFM 在数周内对增加的负荷做出了高度反应。增加的力量潜力为运动员的表现提升做出了贡献。