Barberini C L, Macpherson J M
Neurological Sciences Institute, Oregon Health Sciences University, Portland 97209, USA.
Exp Brain Res. 1998 Sep;122(2):175-84. doi: 10.1007/s002210050505.
This study examined (1) how changes in head position affect postural orientation variables during stance and (2) whether changes in head position affect the rapid postural response to linear translation of the support surface in the horizontal plane. Cats were trained to stand quietly on a moveable platform and to maintain five different head positions: center, left, right, up, and down. For each head position, stance was perturbed by translating the support surface linearly in 16 different directions in the horizontal plane. Postural equilibrium responses were quantified in terms of the ground reaction forces, kinematics, dynamics (net joint torques), body center of mass, and electromyographic (EMG) responses of selected limb and trunk muscles. A change in head position involved rotation of not only the neck but also the scapulae and anterior trunk. Tonic EMG levels were modulated in several forelimb and scapular muscles but not hindlimb muscles. Finally, large changes in head orientation in both horizontal and vertical planes did not hamper the ability of cats to maintain postural equilibrium during linear translation of the support surface. The trajectory of the body's center of mass was the same, regardless of head position. The main change was observed in joint torques at the forelimbs evoked by the perturbation. Evoked EMG responses of forelimb and scapular muscles were modulated in terms of magnitude but not spatial tuning. Hindlimb responses were unchanged. Thus, the spatial and temporal pattern of the automatic postural response was unchanged and only amplitudes of evoked activity were modulated by head position.
(1)头部位置的变化如何影响站立时的姿势定向变量;(2)头部位置的变化是否会影响对支撑面在水平面内线性平移的快速姿势反应。训练猫安静地站在可移动平台上,并保持五种不同的头部位置:正中、左、右、上和下。对于每个头部位置,通过在水平面内沿16个不同方向线性平移支撑面来干扰站立姿势。根据地面反作用力、运动学、动力学(净关节扭矩)、身体重心以及选定肢体和躯干肌肉的肌电图(EMG)反应来量化姿势平衡反应。头部位置的变化不仅涉及颈部的旋转,还涉及肩胛骨和前躯干的旋转。几个前肢和肩胛部肌肉的肌电紧张水平受到调制,但后肢肌肉未受影响。最后,在水平和垂直平面内头部方向的大幅变化并未妨碍猫在支撑面线性平移过程中保持姿势平衡的能力。无论头部位置如何,身体重心的轨迹都是相同的。主要变化出现在由扰动引起的前肢关节扭矩方面。前肢和肩胛部肌肉诱发的肌电反应在幅度上受到调制,但空间调谐未受影响。后肢反应未发生变化。因此,自动姿势反应的时空模式未发生改变,只有诱发活动的幅度受到头部位置的调制。