Gottschall Jinger S, Nichols T Richard
Department of Physiology, Emory University School of Medicine, Whitehead Research Building, Atlanta, GA 30322, USA.
Exp Brain Res. 2007 Sep;182(1):131-5. doi: 10.1007/s00221-007-1084-z. Epub 2007 Aug 10.
Our purpose was to quantify the effects of head pitch on muscle activity patterns of the decerebrate cat hindlimb during walking. Five decerebrate cats walked at 0.7 m/s on a treadmill positioned level with the head pitch either parallel to the treadmill, 50% nose down or 50% nose up. We collected electromyography data from six hindlimb muscles. During level walking, after we manipulated head pitch, our results were surprisingly equivalent to the research on slope walking. For instance, muscle activity during level walking with a 50% head pitch nose down mimicked uphill walking. The muscle activity of the iliopsoas and semitendinosus significantly increased. Muscle activity during level walking with a 50% head pitch nose up mimicked downhill walking. Specifically, the biceps femoris and semimembranosus were inactive during the entire step. These alterations in muscle activity occurred within one step of altering head pitch but dissipated as level walking continued. In conclusion, the time course of muscle activity patterns due to modifications in head pitch is immediate and transitory.
我们的目的是量化头部俯仰对去大脑猫后肢在行走过程中肌肉活动模式的影响。五只去大脑猫在跑步机上以0.7米/秒的速度行走,跑步机的位置与头部俯仰平行于跑步机、鼻尖向下50%或鼻尖向上50%的状态处于同一水平。我们收集了来自六条后肢肌肉的肌电图数据。在水平行走过程中,在我们操纵头部俯仰后,我们的结果惊人地等同于关于斜坡行走的研究。例如,在鼻尖向下50%的头部俯仰状态下进行水平行走时的肌肉活动模拟了上坡行走。髂腰肌和半腱肌的肌肉活动显著增加。在鼻尖向上50%的头部俯仰状态下进行水平行走时的肌肉活动模拟了下坡行走。具体而言,股二头肌和半膜肌在整个步态中均不活动。这些肌肉活动的改变在改变头部俯仰的一步之内发生,但随着水平行走的持续而消散。总之,由于头部俯仰的改变而导致的肌肉活动模式的时间进程是即时且短暂的。