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在黑暗中无视觉或借助视觉辅助进行水平行走时的代谢需求和运动学。

Metabolic Demands and Kinematics During Level Walking in Darkness With No Vision or With Visual Aid.

机构信息

Division of Environmental Physiology, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, Solna 171 65, Sweden.

Faculty of Physical and Cultural Education, Evelpidon Hellenic Army Academy, Vari 16673, Greece.

出版信息

Mil Med. 2023 Jul 22;188(7-8):e2010-e2017. doi: 10.1093/milmed/usac327.

Abstract

INTRODUCTION

Uniformed services commonly perform foot-borne operations at night, while using visual aid in terms of night vision goggles (NVG). During slow-level walking, complete lack of visual input alters kinematics and markedly increases the metabolic demand, whereas the effect on kinematics and energy expenditure of restricting the peripheral visual field by wearing NVG is still unknown. The purpose was to evaluate whether metabolic demands and kinematics during level walking are affected by complete darkness with and without visual aid.

MATERIALS AND METHODS

Eleven healthy men walked on a treadmill (inclination: +2.3°, velocity: 4 km/h) with full vision in a lighted laboratory (Light), and in complete darkness wearing either a blindfold (Dark), or restricting the visual field to about 40° by wearing monocular (Mono) or binocular (Bino) NVG. Oxygen uptake ($\dot{\text{V}}$O2) was measured to evaluate metabolic demands. Inertial measurement units were used to estimate kinematics, and the outcome was validated by using a motion capture system. Ratings of perceived exertion, discomfort, and mental stress were evaluated after each condition using a Borg ratio scale. Physiologic and kinematic variables were evaluated using repeated measures analysis of variance (ANOVA), whereas ratings were evaluated using non-parametric Friedman ANOVA.

RESULTS

$\dot{\text{V}}$ O2 was 20% higher in the Dark (1.2 ± 0.2 L/min) than the Light (1.0 ± 0.2 L/min) condition. Nominally, $\dot{\text{V}}$O2 in the Mono (1.1 ± 0.2 L/min) and Bino (1.1 ± 0.2 L/min) conditions fell in between those in the Light and Dark conditions but was not statistically different from either the Light or the Dark condition. Step length was shorter in the Dark (-9%, 1.22 ± 0.16 m) and Mono (-6%, 1.27 ± 0.09 m) conditions than in the Light condition (1.35 ± 0.11 m), whereas the Bino (1.28 ± 0.08 m) condition was not statistically different from either the Light or the Dark condition. The three conditions with no or limited vision were perceived more physically demanding, more uncomfortable, and more mentally stressful than the Light condition, and the Dark condition was perceived more mentally stressful than both NVG conditions.

CONCLUSIONS

The study confirms that complete lack of visual cues markedly reduces the mechanical efficiency during level walking, even under obstacle-free and highly predictable conditions. That $\dot{\text{V}}$O2 and step length values for the NVG conditions fell in between those of the Light and Dark conditions suggest that both foveal and peripheral vision may play important roles in optimizing the mechanical efficiency during level walking.

摘要

简介

现役军人在夜间通常进行脚部作战,同时使用夜视镜(NVG)作为视觉辅助。在低速行走时,完全没有视觉输入会改变运动学,显著增加代谢需求,而佩戴 NVG 限制周边视野对运动学和能量消耗的影响尚不清楚。目的是评估在有和没有视觉辅助的完全黑暗中,水平行走时的代谢需求和运动学是否受到影响。

材料和方法

11 名健康男性在带倾斜度为+2.3°、速度为 4km/h 的跑步机上行走,在灯光充足的实验室中保持全面视觉(Light),并在完全黑暗中佩戴眼罩(Dark),或通过佩戴单目(Mono)或双目(Bino)NVG 将视野限制在大约 40°。测量摄氧量($\dot{\text{V}}$O2)以评估代谢需求。使用惯性测量单元估计运动学,并用运动捕捉系统验证结果。在每种情况下后,使用 Borg 比例量表评估感知用力、不适和精神压力的评分。使用重复测量方差分析(ANOVA)评估生理和运动学变量,而使用非参数 Friedman ANOVA 评估评分。

结果

黑暗条件下的$\dot{\text{V}}$O2(1.2±0.2L/min)比灯光条件(1.0±0.2L/min)高 20%。名义上,Mono(1.1±0.2L/min)和 Bino(1.1±0.2L/min)条件下的$\dot{\text{V}}$O2介于灯光和黑暗条件之间,但与灯光或黑暗条件均无统计学差异。黑暗条件下的步长比灯光条件下短(-9%,1.22±0.16m)和 Mono 条件下短(-6%,1.27±0.09m),而 Bino 条件下的步长与灯光或黑暗条件均无统计学差异。完全没有或有限的视觉条件比灯光条件下的感知更具身体挑战性、更不适和更精神压力,黑暗条件比两种 NVG 条件下的感知更具精神压力。

结论

该研究证实,即使在无障碍和高度可预测的条件下,完全缺乏视觉线索也会显著降低水平行走时的机械效率。NVG 条件下的$\dot{\text{V}}$O2 和步长值介于灯光和黑暗条件之间,表明中央凹和周边视觉都可能在优化水平行走的机械效率方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/347e/10363013/c7de57c6ce84/usac327f1.jpg

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