Holzer Denis, Hahn Daniel, Schwirtz Ansgar, Siebert Tobias, Seiberl Wolfgang
Department of Sport and Health Sciences, Biomechanics in Sports, Technical University of Munich, Munich, Germany.
Faculty of Sport Science, Human Movement Science, Ruhr University Bochum, Bochum, Germany.
Physiol Rep. 2024 Dec;12(23):e70131. doi: 10.14814/phy2.70131.
During the shortening of stretch-shortening cycles (SSCs), muscle force output is enhanced compared with pure shortening (SHO), referred to as the SSC-effect. In general, muscle-tendon unit (MTU), muscle belly, muscle fascicle, and tendon length changes can be decoupled during contraction, which affects force generation and elastic recoil. We researched whether MTU decoupling contributes to the SSC-effect. Participants performed electrically stimulated submaximal fixed-end, SSC, and SHO plantar-flexions on a dynamometer at two velocities (40, 120°/s) and two ranges of motion (15, 25°). Fascicle and tendon length changes of the gastrocnemius medialis, and ankle joint kinematics were assessed by ultrasound and motion capture, respectively. During SSC shortening, ankle joint torque and work, MTU force and work, and fascicle force were increased by 12%-22% compared with SHO, confirming a SSC-effect. Further, fascicle length change and velocity during SSCs were significantly reduced compared with SHO condition, and SSC fascicle work was decreased by ~35%. Our results indicate that MTU decoupling leads to a reduction in fascicle shortening amplitude and velocity, thereby increasing the muscle's force capacity while reducing its work output during SSC shortening. MTU decoupling therefore contributes to the SSC-effect and underlines the limited transferability of joint work measurements to estimated muscle work.
在拉长-缩短周期(SSC)的缩短阶段,与单纯缩短(SHO)相比,肌肉力量输出增强,这被称为SSC效应。一般来说,在收缩过程中,肌肉-肌腱单元(MTU)、肌腹、肌束和肌腱长度的变化可以解耦,这会影响力量产生和弹性回缩。我们研究了MTU解耦是否有助于SSC效应。参与者在测力计上以两种速度(40、120°/秒)和两种运动范围(15、25°)进行电刺激次最大固定端、SSC和SHO跖屈。分别通过超声和运动捕捉评估了腓肠肌内侧的肌束和肌腱长度变化以及踝关节运动学。在SSC缩短过程中,与SHO相比,踝关节扭矩和功、MTU力量和功以及肌束力量增加了12%-22%,证实了SSC效应。此外,与SHO状态相比,SSC期间肌束长度变化和速度显著降低,SSC肌束功降低了约35%。我们的结果表明,MTU解耦导致肌束缩短幅度和速度降低,从而在SSC缩短过程中增加了肌肉的力量能力,同时降低了其功输出。因此,MTU解耦有助于SSC效应,并强调了关节功测量对估计肌肉功的有限可转移性。