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人工智能在航天医学中的应用。

Artificial Intelligence Applications in Space Medicine.

出版信息

Aerosp Med Hum Perform. 2023 Aug 1;94(8):610-622. doi: 10.3357/AMHP.6178.2023.

DOI:10.3357/AMHP.6178.2023
PMID:37501303
Abstract

During future interplanetary space missions, a number of health conditions may arise, owing to the hostile environment of space and the myriad of stressors experienced by the crew. When managing these conditions, crews will be required to make accurate, timely clinical decisions at a high level of autonomy, as telecommunication delays and increasing distances restrict real-time support from the ground. On Earth, artificial intelligence (AI) has proven successful in healthcare, augmenting expert clinical decision-making or enhancing medical knowledge where it is lacking. Similarly, deploying AI tools in the context of a space mission could improve crew self-reliance and healthcare delivery. We conducted a narrative review to discuss existing AI applications that could improve the prevention, recognition, evaluation, and management of the most mission-critical conditions, including psychological and mental health, acute radiation sickness, surgical emergencies, spaceflight-associated neuro-ocular syndrome, infections, and cardiovascular deconditioning. Some examples of the applications we identified include AI chatbots designed to prevent and mitigate psychological and mental health conditions, automated medical imaging analysis, and closed-loop systems for hemodynamic optimization. We also discuss at length gaps in current technologies, as well as the key challenges and limitations of developing and deploying AI for space medicine to inform future research and innovation. Indeed, shifts in patient cohorts, space-induced physiological changes, limited size and breadth of space biomedical datasets, and changes in disease characteristics may render the models invalid when transferred from ground settings into space.

摘要

在未来的星际空间任务中,由于太空的恶劣环境以及机组人员经历的各种压力源,可能会出现许多健康状况。在管理这些情况时,机组人员将需要在高度自主的情况下做出准确、及时的临床决策,因为通信延迟和距离的增加限制了地面的实时支持。在地球上,人工智能 (AI) 在医疗保健领域已被证明是成功的,它可以增强专家的临床决策能力,或者在缺乏医学知识的地方提供帮助。同样,在太空任务的背景下部署 AI 工具可以提高机组人员的自主性和医疗保健水平。我们进行了叙述性综述,讨论了现有的 AI 应用程序,这些应用程序可以改善对最关键任务条件的预防、识别、评估和管理,包括心理健康、急性辐射病、外科急症、与航天相关的神经眼综合征、感染和心血管适应不良。我们确定的一些应用程序示例包括旨在预防和减轻心理健康状况的 AI 聊天机器人、自动化医学影像分析以及用于血液动力学优化的闭环系统。我们还详细讨论了当前技术中的差距,以及为太空医学开发和部署 AI 的关键挑战和限制,以为未来的研究和创新提供信息。事实上,当从地面环境转移到太空环境时,患者群体的变化、太空引起的生理变化、空间生物医学数据集的大小和广度有限以及疾病特征的变化可能会使模型失效。

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