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Functional role of muscle reflexes for force generation in the decerebrate walking cat

机译:肌肉反射在无脑走猫中产生力的功能

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摘要

class="enumerated" style="list-style-type:decimal">To quantify the importance of reflexes due to muscle length changes in generating force during walking, we studied high decerebrate cats that walked on a treadmill. One leg was denervated except for the triceps surae and a few other selected muscles. The triceps surae muscles are ankle extensor muscles that attach to the Achilles' tendon which was cut and connected to a muscle puller. In some steps the EMG activity triggered the puller to move the muscle through the pattern of length changes that are normally produced by ankle movements in intact cats walking over ground (simulated walking). In other steps the muscles were held isometrically. The EMG and force produced during the two types of steps were compared. On average about 50% more EMG was generated during the E2 part of the simulated stance phase in the triceps surae muscles, but not in other muscles studied.Force was increased significantly over the entire stance phase by about 20%, when muscle stretches simulating walking were applied. However, during much of the stance phase the triceps surae muscles are shortening and so would produce less force. The effect of shortening was assessed in control experiments in which these muscles were stimulated at a constant frequency, either isometrically or during simulated walking movements.By combining data from the walking and control experiments, we estimate that about 35 % of the force produced in the cat ankle extensors during stance is produced by reflexes due to muscle length changes. Other sensory inputs may also contribute to force production, but the total reflex contribution will vary under different conditions of speed, length, loading, task difficulty, etc. Since a substantial percentage of the force in the stance phase of walking is normally produced by muscle reflexes, this force can be continuously adjusted up or down, if the muscles receive extra stretch or unloading during a particular step cycle.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 为了量化在行走过程中因肌肉长度变化而产生反射而产生反射的重要性,我们研究了在跑步机上行走的高去脑猫。除肱三头肌和其他一些选定的肌肉外,一条腿被除神经。肱三头肌是附在跟腱上的脚踝伸肌,该腱被切断并连接到拉马肌上。在某些步骤中,EMG活动触发了拉拔器将肌肉移动通过长度变化的模式,这种变化通常是由整只猫在地面上行走(模拟行走)时的脚踝运动所产生的。在其他步骤中,将肌肉等距固定。比较了两种步骤中产生的肌电图和产生的力。在模拟姿势阶段的E2部分中,肱三头肌肌肉平均多产生约50%的EMG,而其他研究肌肉则没有。 在整个姿势阶段,力量显着增加了20倍%,当应用模拟步行的肌肉伸展运动时。但是,在大多数站立阶段,肱三头肌肌肉会缩短,因此产生的力较小。在控制实验中评估了缩短的效果,在控制实验中,等轴测图或在模拟步行运动中以恒定频率刺激了这些肌肉。 通过结合步行和控制实验中的数据,我们估计大约35站立期间猫脚踝伸肌产生的力的百分比是由于肌肉长度变化而产生的反射产生的。其他感觉输入也可能有助于力量的产生,但是总的反射贡献将在速度,长度,负荷,任务难度等不同条件下发生变化。由于在行走的站立阶段,很大一部分力通常是由肌肉产生的反射时,如果在特定的脚步周期中肌肉受到额外的拉伸或卸载,则可以不断地向上或向下调整此力。

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