a School of Physical Education & Sports Science , National and Kapodistrian University of Athens , Athens , Greece.
Eur J Sport Sci. 2019 Apr;19(3):345-353. doi: 10.1080/17461391.2018.1510989. Epub 2018 Aug 17.
This study compared knee angle-specific neuromuscular adaptations after two low-volume isometric leg press complex training programmes performed at different muscle lengths. Fifteen young males were divided into two groups and trained three times per week for 6 weeks. One group (n = 8) performed 5-7 sets of 3 s maximum isometric leg press exercise, with 4 min recovery, with knee angle at 85° ± 2° (longer muscle-tendon unit length; L-MTU). The other group (n = 7) performed the same isometric training at a knee angle of 145° ± 2° (180°= full extension; shorter muscle-tendon unit length; S-MTU). During the recovery after each set of isometric exercise, participants performed two CMJ every minute, as a form of complex training. Maximum isometric force (MIF) and rate of force development (RFD) were measured over a wide range of knee angles. Countermovement jump (CMJ) performance and maximum half-squat strength (1RM) were also assessed. Training at S-MTU induced a large increase of MIF (22-58%, p < 0.02) and RFD (18-43%, p < 0.05 to 0.001) at knee angles close to the training angle and resulted in a 14° ± 9° shift of the force vs. knee joint angle relationship towards extended knee joint angles (p = 0.001). In contrast, training at L-MTU, resulted in a moderate and similar (≈12.3%, p = 0.028) improvement of force at all knee angles. CMJ performance and 1RM were equally increased in both groups after training by 10.4% ± 8.3% and 7.8% ± 4.7% (p < 0.001), respectively. Low-volume maximal isometric leg-press complex training at S-MTU causes angle-specific adaptations in isometric strength and RFD, while dynamic muscle performance is independent of muscle length during training.
本研究比较了两种低负荷等长腿举复合训练方案在不同肌肉长度下对膝关节角度特异性神经肌肉适应的影响。15 名年轻男性被分为两组,每周训练 3 次,共 6 周。一组(n=8)进行 5-7 组 3 秒最大等长腿举练习,每组之间休息 4 分钟,膝关节角度为 85°±2°(长肌腱单元长度;L-MTU)。另一组(n=7)以 145°±2°的膝关节角度(180°=完全伸展;短肌腱单元长度;S-MTU)进行相同的等长训练。在每组等长练习后的恢复期间,参与者每分钟进行两次 CMJ,作为复合训练的一种形式。在广泛的膝关节角度范围内测量最大等长力(MIF)和力量发展速率(RFD)。还评估了深蹲跳(CMJ)表现和最大半蹲强度(1RM)。在 S-MTU 进行训练可使接近训练角度的膝关节角度处的 MIF(22-58%,p<0.02)和 RFD(18-43%,p<0.05 至 0.001)大幅增加,并导致力与膝关节角度关系向伸展膝关节角度方向发生 14°±9°的偏移(p=0.001)。相比之下,在 L-MTU 进行训练可使所有膝关节角度的力产生适度且相似的(≈12.3%,p=0.028)改善。训练后,两组的 CMJ 表现和 1RM 分别增加了 10.4%±8.3%和 7.8%±4.7%(p<0.001)。在 S-MTU 进行低负荷最大等长腿举复合训练会导致等长力量和 RFD 的角度特异性适应,而动态肌肉表现与训练期间的肌肉长度无关。