Sebastian C, Esseling K, Horn E
Department of Neurology, University of Ulm, Germany.
Exp Brain Res. 1996 Nov;112(2):213-22. doi: 10.1007/BF00227640.
The effects of altered gravitational forces (AGF) on the development of the static vestibulo-ocular reflex (VOR) were investigated in Xenopus laevis tadpoles exposed to hypergravity (1.4g; 3g) or microgravity conditions (German spacelab mission D-2) for 9-10 days. The effects of light conditions during development were also tested by exposing tadpoles to either complete darkness (DD) or 12:12 h light-dark conditions (LD). The static VOR was induced by lateral roll. The efficacy of the VOR circuit after termination of AGF conditions was described by the peak-to-peak amplitude of the sinusoidal VOR characteristics (i.e. amplitude). The static VOR was first observed at stage 41 for both LD and DD tadpoles. Its further development was retarded in the DD tadpoles compared with the LD tadpoles up to stage 48. Microgravity as well as hypergravity exposure caused a significant (P < 0.05, at least) decrease in the static VOR amplitude during the first week after termination of the AGF period. The decreases were 39.4% in the microgravity group, 16.2% in the 1.4g group and 24.9-42.9% in the 3g group compared with the 1g ground-reared siblings at the same developmental stages. The response deficits usually disappeared but persisted for at least 2 weeks in animals whose development was retarded by hypergravity exposure. It is postulated (i) that gravity exerts an important influence on the normal development of the roll-induced static VOR; (ii) that hypergravity exposure decreases the sensitivity of the gravity-sensitive system so that recordings under 1g conditions cause a weaker static VOR; and (iii) that the vestibulo-spinal pathway possesses a higher degree of plasticity than the vestibulo-ocular pathway.
在暴露于超重(1.4g;3g)或微重力条件(德国太空实验室任务D - 2)9 - 10天的非洲爪蟾蝌蚪中,研究了重力改变(AGF)对静态前庭眼反射(VOR)发育的影响。还通过将蝌蚪暴露于完全黑暗(DD)或12:12小时明暗条件(LD)来测试发育期间光照条件的影响。通过横向翻滚诱导静态VOR。AGF条件终止后VOR回路的功效通过正弦VOR特征的峰峰值幅度(即幅度)来描述。LD和DD蝌蚪在第41阶段首次观察到静态VOR。与LD蝌蚪相比,DD蝌蚪在第48阶段之前其进一步发育受到抑制。在AGF期结束后的第一周,微重力以及超重暴露导致静态VOR幅度显著(至少P < 0.05)降低。与相同发育阶段的1g地面饲养的同胞相比,微重力组降低了39.4%,1.4g组降低了16.2%,3g组降低了24.9 - 42.9%。反应缺陷通常会消失,但在发育因超重暴露而延迟的动物中至少持续2周。据推测:(i)重力对翻滚诱导的静态VOR的正常发育具有重要影响;(ii)超重暴露会降低重力敏感系统的敏感性,以至于在1g条件下记录时会导致较弱的静态VOR;(iii)前庭脊髓通路比前庭眼通路具有更高程度的可塑性。