首页> 外文OA文献 >Physical principles demonstrate that the biceps femoris muscle relative to the other hamstringudmuscles exerts the most force: implications for hamstring muscle strain injuries
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Physical principles demonstrate that the biceps femoris muscle relative to the other hamstringudmuscles exerts the most force: implications for hamstring muscle strain injuries

机译:物理原理证明股二头肌与另一条腿筋有关肌肉发挥最大的力量:对腿筋肌肉拉伤的影响

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摘要

Of the hamstring muscle group the biceps femoris muscle is the most commonly injured muscle in sports requiring interval sprinting. The reason for this observation is unknown.udThe objective of this study was to calculate the forces of all three hamstring muscles, relative to each other, during a lengthening contraction to assess for any differences that may help explain the biceps femoris predilection for injury during interval sprinting. To calculate the displacement of each individual hamstring muscle previously performed studies on cadaveric anatomical data and hamstring kinematics during sprinting were used. From these displacement calculations for each individual hamstring muscle physical principles were then used to deduce the proportion of force exerted by each individual hamstring muscle during a lengthening muscle contraction.udThese deductions demonstrate that the biceps femoris muscle is required to exert proportionally more force in a lengthening muscle contraction relative to the semimembranosus and semitendinosus muscles primarily as a consequence of having to lengthen over a greater distance within the same time frame. It is hypothesized that this property maybe a factor in the known observation of the increased susceptibility of the biceps femoris muscle to injury during repeated sprints where recurrent higher force is required.
机译:在the绳肌群中,股二头肌是需要间歇短跑的运动中最常见的受伤肌肉。该观察的原因尚不清楚。 ud本研究的目的是计算在延长的收缩过程中所有三个to绳肌相对于彼此的作用力,以评估是否有任何有助于解释股二头肌在训练中受伤的原因的差异。间隔冲刺。为了计算每个individual绳肌的位移,使用了先前在尸体冲刺过程中对尸体解剖数据和绳运动学的研究。从每个腿筋肌的位移计算得出的物理原理,可以推断出在延长肌肉收缩过程中每个腿筋肌所施加的力的比例。 ud这些推论表明,股二头肌需要在股二头肌中按比例施加更多的力。相对于半膜肌和半腱肌而言,延长肌肉收缩的主要原因是必须在同一时间范围内延长更长的距离。假设该特性可能是已知的观察结果,即在需要反复施加较高力的重复冲刺过程中,股二头肌对损伤的敏感性增加。

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