Centre for Vision Research, York University, Toronto, Canada.
Department of Psychology, York University, Toronto, Canada.
J Vestib Res. 2022;32(4):325-340. doi: 10.3233/VES-210016.
Humans demonstrate many physiological changes in microgravity for which long-duration head down bed rest (HDBR) is a reliable analog. However, information on how HDBR affects sensory processing is lacking.
We previously showed [25] that microgravity alters the weighting applied to visual cues in determining the perceptual upright (PU), an effect that lasts long after return. Does long-duration HDBR have comparable effects?
We assessed static spatial orientation using the luminous line test (subjective visual vertical, SVV) and the oriented character recognition test (PU) before, during and after 21 days of 6° HDBR in 10 participants. Methods were essentially identical as previously used in orbit [25].
Overall, HDBR had no effect on the reliance on visual relative to body cues in determining the PU. However, when considering the three critical time points (pre-bed rest, end of bed rest, and 14 days post-bed rest) there was a significant decrease in reliance on visual relative to body cues, as found in microgravity. The ratio had an average time constant of 7.28 days and returned to pre-bed-rest levels within 14 days. The SVV was unaffected.
We conclude that bed rest can be a useful analog for the study of the perception of static self-orientation during long-term exposure to microgravity. More detailed work on the precise time course of our effects is needed in both bed rest and microgravity conditions.
人类在微重力环境下会表现出许多生理变化,而长时间头低位卧床(HDBR)是一种可靠的模拟方法。然而,关于 HDBR 如何影响感觉处理的信息还很缺乏。
我们之前曾表明[25],微重力会改变在确定感知垂直(PU)时对视觉线索的加权,这种影响在返回后仍会持续很长时间。长时间 HDBR 是否会产生类似的影响?
我们在 10 名参与者中进行了 21 天 6°HDBR,在卧床前、卧床期间和卧床后使用发光线测试(主观视觉垂直,SVV)和定向字符识别测试(PU)评估静态空间定向。方法与之前在轨道上使用的方法基本相同[25]。
总体而言,HDBR 对确定 PU 时依赖视觉相对身体线索的影响没有影响。然而,当考虑三个关键时间点(卧床前、卧床结束时和卧床后 14 天)时,发现依赖视觉相对身体线索的程度与微重力中一样显著降低。该比值的平均时间常数为 7.28 天,在 14 天内恢复到卧床前水平。SVV 不受影响。
我们得出结论,卧床可以作为研究长期暴露于微重力下静态自我定向感知的有用模拟方法。在卧床和微重力条件下,我们需要更详细地研究我们的影响的精确时间过程。