Mindfulness for adaptation to analog and new technologies emergence for long-term space missions

B. Le Roy, C. Martin-Krumm, M. Trousselard
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Abstract

Long-term space missions require a good understanding of human adaptation to hostile environments in space. Some professional environments have space constraints that are isolating, confined, extreme, or unusual constraints. They can serve as space analogs for studying challenge adaptation as their environmental constraints disrupt the balance between the demands of the environment and the resources mobilized by individuals. This disruption in homeostasis leads to increased stress, decreased performance, and poor overall health for these professionals. Nevertheless, as analogs, these professional environments can also offer information for better identifying the individual psychological and cognitive resources that are effective in adapting to the constraints caused by these exceptional environments. Studies suggest that mindfulness (i.e., awareness that emerges by paying attention purposefully, in the present moment, without judgment to the experience that is unfolding moment by moment) may be a relevant candidate for dealing with these issues. Thus, we address mindfulness as a relevant psychological resource to face the constraints of space missions based on experiences in analog environments and military contexts. We propose to open discussions on new countermeasures focused on developing mindfulness, especially through the use of new technologies (e.g., “immersive reality” and others), to increase adaptation to the space environment and offer programs tailored to the needs of astronauts for long space journeys.
适应模拟的正念和长期太空任务新技术的出现
长期太空任务需要很好地了解人类对太空恶劣环境的适应能力。一些专业环境具有孤立的、受限的、极端的或不寻常的空间限制。它们可以作为研究挑战适应的空间类似物,因为它们的环境约束破坏了环境需求与个体调动的资源之间的平衡。这种内部平衡的破坏导致这些专业人士的压力增加,表现下降,整体健康状况不佳。然而,作为类似物,这些专业环境也可以提供信息,以更好地识别个人心理和认知资源,有效地适应这些特殊环境造成的限制。研究表明,正念(即有意识地集中注意力而产生的意识,在当下,不判断每时每刻展开的经验)可能是处理这些问题的相关候选人。因此,基于模拟环境和军事背景的经验,我们将正念作为一种相关的心理资源来面对太空任务的限制。我们建议就专注于发展正念的新对策展开讨论,特别是通过使用新技术(例如“沉浸式现实”等),以提高对空间环境的适应能力,并提供适合宇航员长途太空旅行需求的方案。
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