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The effect of Nordic hamstring exercise training volume on biceps femoris long head architectural adaptation

机译:Nordic Hamstring运动训练卷对二头肌股骨头架构适应的影响

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The aim of this study was to determine the time course of architectural adaptations in the biceps femoris long head ( BF LH ) following high or low volume eccentric training. Twenty recreationally active males completed a two week standardized period of eccentric Nordic hamstring exercise ( NHE ) training, followed by four?weeks of high (n?=?10) or low volume (n?=?10) training. Eccentric strength was assessed pre‐ and post intervention and following detraining. Architecture was assessed weekly during training and after two and four?weeks of detraining. After six?weeks of training, BF LH fascicles increased significantly in the high (23%?±?7%, P? ? .001, d? = ? 2.87) and low volume (24%?±?4%, P? ? .001, d? = ? 3.46) groups, but reversed following two?weeks of detraining (high volume: ?17%?±?5%, P? ? .001, d? = ? ?2.04; low volume: ?15%?±?3%, P? ? .001, d? = ? ?2.56) after completing the intervention. Both groups increased eccentric strength after six?weeks of training (high volume: 28%?±?20%, P?=? .009, d? = ? 1.55; low volume: 34%?±?14%, P? ? .001, d? = ? 2.09) and saw no change in strength following a four week period of detraining (high volume: ?7%?±?7%, P?=? .97, d? = ? ?0.31; low volume: ?2%?±?5%, P? = ? .99, d? = ? ?0.20). Both low and high volume NHE training stimulate increases in BF LH fascicle length and eccentric knee flexor strength. Architectural adaptations reverted to baseline levels within two?weeks after ceasing training, but eccentric strength was maintained for at least four?weeks. These observations provide novel insight into the effects of training volume and detraining on BF LH architecture and may provide guidance for the implementation of NHE programs.
机译:本研究的目的是在高或低群偏心训练之后,确定二头肌股骨头(BF LH)中建筑适应的时间过程。二十次休闲活跃的男性完成了两周标准化的偏心北欧腿筋运动(NHE)训练,其次是四周的高(n?=?10)或低容量(n?=?10)训练。评估偏心强度,并在干预后和后期进行损害。在训练期间每周评估架构,两到四个月的破坏。在六个月的训练之后,BF LH束在高(23%→±7%,P =α±7%,P≤00,D?=?2.87)和低体积(24%?±4%, p?&?.001,d?=?3.46)组,但逆转后两个?几周的破坏(大容量:Δ17%?±±5%,p≤00.001,d?=?? 2.04;低体积:?15%?±3%,p?&Δ001,d?=?2.56)完成干预后。两组六周的训练后偏心强度增加(大容量:28%?±20%,p?=Δ= .009,D?=?1.55;低容积:34%?±14%,p?&lt ;?.001,D?=?2.09)并且在达到四周的下降期间没有改变强度(大容量:?7%?7%?±7%,p?。97,D?=?0.31 ;低体积:?2%?±5%,p?=Δ.99,d?=?0.20)。低卷培训均促进BF LH绒毛率长度和偏心膝弯曲强度的增加。建筑适应恢复到两周内的基线水平?停止训练后几周,但保持偏心强度至少四个?周。这些观察结果提供了对培训量和衡量BF LH架构的影响的新颖洞察力,可以为执行NHE计划提供指导。

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