个人光处理装置:在工作环境中改善睡眠、疲劳和昼夜节律失调的对策。

Sarah Chabal, Emily Moslener, Rachel R Markwald, Evan D Chinoy
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引用次数: 0

摘要

精心安排的光照时间是克服轮班工作对睡眠和昼夜节律的负面影响的一种很有希望的对策。然而,许多照明干预措施是静态的,并在群体层面上应用(例如,光库,改变环境照明),这并不适合所有人群或环境。本研究调查了通过个人光处理设备(pltd)进行的个性化光照是否可以改善美国海军潜艇艇员的睡眠,维持预期表现,并使昼夜节律与工作时间表保持一致。潜艇是PLTD干预的独特测试平台,因为它们提供了一个独立的环境,几乎不受外界时间表或照明的影响。42名潜艇艇员被伪随机分配到PLTD组或对照组。PLTD组参与者在醒来后戴蓝光暴露眼镜约40分钟,睡前戴防蓝光眼镜约2小时;对照组参与者不使用pltd。两组患者在12天干预前后都完成了主观睡眠和情绪评估问卷,并佩戴手腕活动记录仪客观评估睡眠、预测表现和预测昼夜节律阶段结果。与对照组相比,PLTD组的一些客观和主观睡眠结果和预期表现得分都有所改善。PLTD组预测的昼夜节律阶段(根据活动计导出的加速度计数据建模)更快地与计划的工作时间相一致。PLTD的使用遵从性很高,没有对作业职责造成重大干扰的报告。这些数据为在作业环境中使用pltd作为一种灵活的、可定制的应对疲劳、睡眠不足和昼夜节律失调的措施提供了初步支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Personal light treatment devices: a countermeasure to improve sleep, fatigue, and circadian misalignment in an operational setting.

Carefully timed light exposure is a promising countermeasure to overcome the negative sleep and circadian implications of shift work. However, many lighting interventions are static and applied at the group level (e.g. light banks, changes to ambient lighting), which is not appropriate for all populations or settings. This study investigates whether individualized lighting exposure, via personal light treatment devices (PLTDs), can improve sleep, sustain projected performance, and entrain circadian rhythms with the work schedules of US Navy submariners. Submarines are a unique testbed for PLTD intervention because they provide a self-contained environment with little influence from outside schedules or lighting. Forty-two submariners were pseudo-randomly assigned to either the PLTD or Control group. PLTD group participants wore blue-light exposure glasses for ~40 minutes upon waking and blue-blocking glasses for ~2 hours before sleep; Control group participants did not use PLTDs. Both groups completed questionnaires assessing subjective sleep and mood before and after the 12-day intervention, and wore wrist actigraphy devices to objectively assess sleep, projected performance, and predicted circadian phase outcomes. Compared with the Control group, several objective and subjective sleep outcomes and projected performance scores were improved in the PLTD group. The PLTD group's predicted circadian phase (modeled from actigraphy-derived accelerometer data) more rapidly shifted to align with scheduled work periods. Compliance with PLTD use was high, with no major disruptions to operational duties reported. These data provide initial support for the use of PLTDs as a flexible and customizable countermeasure for fatigue, sleep loss, and circadian misalignment in an operational environment.

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