Saenko D G, Artamonov A A, Kozlovskaia I B
Fiziol Cheloveka. 2011 Sep-Oct;37(5):91-9.
Balance function is dramatically deteriorated after exposure to microgravity. The purpose of the present study was to investigate the role and the contribution of different gravity sensory systems to the development of balance impairment after long-term spaceflights. Postural perturbations (pushes to the chest) of the threshold, medium, and sub-maximal intensities were produced in eight cosmonauts before, and on the day 3, 7, and 11 following spaceflight. Postural corrective responses were analyzed by anterior-posterior body sway fluctuation and electromyographic activity of leg muscles. The characteristics of the postural corrective responses changed significantly on the day 3 following spaceflight: the amplitude of posterior sway caused by perturbation of threshold intensity was increased reaching 135% ofpreflight value; the corrective responses lasted more than 6 s in 50% of all trials, while it did not last more than 4 s in 96% before spaceflight. The EMG responses were characterized by increased contribution of medium- and long-latency reactions. On the day 11 following spaceflight, most of the characteristics of postural corrective responses were close to preflight values. We assumed that the balance alterations after spaceflight are caused by changes in weightlessness of functions of two main gravity sensory systems, namely, weight-bearing and vestibular one. The deficit of weight-bearing afferentation triggers a decline of the extensors' muscle tone, while changes of vestibular function cause a decline of accuracy of postural corrections.
暴露于微重力环境后,平衡功能会急剧恶化。本研究的目的是调查不同重力感觉系统在长期太空飞行后平衡功能损害发展过程中的作用和贡献。在8名宇航员太空飞行前以及飞行后的第3天、第7天和第11天,施加阈值、中等强度和次最大强度的姿势扰动(推胸部)。通过身体前后摆动波动和腿部肌肉的肌电图活动分析姿势纠正反应。太空飞行后第3天,姿势纠正反应的特征发生了显著变化:阈值强度扰动引起的后向摆动幅度增加,达到飞行前值的135%;在所有试验中,50%的纠正反应持续超过6秒,而在太空飞行前96%的试验中,纠正反应持续不超过4秒。肌电图反应的特征是中潜伏期和长潜伏期反应的贡献增加。太空飞行后第11天,姿势纠正反应的大多数特征接近飞行前值。我们认为,太空飞行后的平衡改变是由两个主要重力感觉系统功能的失重变化引起的,即承重系统和前庭系统。承重传入的缺乏会引发伸肌肌张力下降,而前庭功能的变化会导致姿势纠正准确性下降。