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Negative Acceleration and Adaptive Automation Approaches to Counter the Effect of Acceleration Induced Loss of Consciousness

机译:负加速度和自适应自动化方法来抵消加速诱导意识丧失的影响

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摘要

Gravity-induced loss of consciousness (GLOC) is a major human factors problem facing fighter pilots today. A recent study by Tripp et al. (2006) reported that the GLOC episode consists of 24 sec of unconsciousness and confusion/disorientation followed by 55 sec in which performance efficiency is compromised. Hence, fighter pilots in the throes of GLOC can travel 12 miles while not in control of their aircraft. Using a centrifuge to simulate gravitational forces together with tracking and math tasks to simulate flight control and navigation, this study attacked the GLOC problem in two ways: (1) by employing negative acceleration following GLOC onset to decrease GLOC recovery time and (2) by assessing the utility of a of cerebral tissue oxygen saturation (rSO_2) measure as a possible triggering mechanism for an adaptive automation recovery system. Negative acceleration had no significant effect on the duration of the GLOC episode. Declines in rSO_2 from baseline pinpointed when pilots would cease active flight control and when GLOC would set in. Thus, the rSO_2 measure may be of effective value as an adaptive automation GLOC recovery system trigger. The rSO_2 measure also showed that loss of blood oxygen is not the sole factor underlying performance deficits in GLOC. Tissue oxygen saturation retuned to baseline levels shortly after the centrifuge came to a complete stop following GLOC onset but the performance deficits continued for 55 sec after rSO_2 returned to baseline.
机译:重力引起的意识(GLOC)的损失是当今面临的战斗机飞行员的主要人为因素的问题。最近的一项研究由Tripp等。 (2006)报道,GLOC情节由无意识和混乱24秒/定向障碍,接着55秒,其中性能效率受到损害。因此,在GLOC的阵痛战斗机飞行员可以旅行,而不是在他们飞机的控制12英里。通过采用负加速度以下GLOC开始通过降低GLOC恢复时间和(2)(1):使用离心分离机以跟踪和数学的任务,模拟飞行控制与导航,模拟重力在一起,这项研究攻击GLOC问题两种方式评估脑组织氧饱和度的(rSO_2)测量作为用于自适应自动化回收系统的可能的触发机制的效用。负加速度对承付的发作的持续时间没有显著影响。从基线的下降rSO_2精确定位时的飞行员将停止有源飞行控制,并且当将承付设置,因此,rSO_2度量可以是有效的值作为自适应自动化GLOC回收系统触发。该rSO_2措施也表明,血液中氧气的损失是不是在GLOC基本性能赤字的唯一因素。组织氧饱和度回到了基线水平离心机后不久以下GLOC发病但性能赤字持续55秒后rSO_2回到基线来到一个完全停止。

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