航空航天和战术训练
眼动追踪可以更深入地了解人类行为,帮助您了解个人或团队在执行模拟环境或真实环境下的任务执行情况。
从航空和驾驶模拟器到医疗培训环境,眼动追踪技术能够揭示用户实际所见,从而解锁更深层次的理解、改善决策制定,并带来可衡量的性能提升。
模拟是指利用逼真且受控的环境或系统来复现现实世界中的场景,使个人能够在无现实风险的情况下练习技能、测试决策并分析表现。
它在航空、医疗保健和驾驶等领域得到广泛应用,在这些领域中,专业人员可以安全地培养情境意识,改善决策制定,并在复杂或高压情况下优化他们的反应。
当模拟与眼动追踪等技术相结合时,其效力将更加强大——它能深入洞察注意力、感知和行为,帮助组织更好地理解人们如何与环境互动。
眼眼动追踪通过精准捕捉用户在模拟训练中的视线落点、注视时机以及可能遗漏的信息,为模拟训练增添了全新的维度。
这可以实现:
提升提升态势感知
更深入地理解视觉注意力。
识别识别感知缺口
找出关键的注意力缺口和错误。
客观的表现分析
获得对人类行为和表现的客观洞察。
个性化培训方案
支持数据驱动的决策与评估。
更快的能力发展
加速技能发展与绩效提升。
探索结合眼动追踪的模拟培训如何在各行业中应用。
It's quite easy to use. They put on the glasses, and we start the recording. We go out and do the tests and try to evaluate them afterward. It has been very interesting to look at these recordings to see if there is a relation between where [drivers] look and what kind of decisions they make.
Eye tracking technology has been instrumental in our research. The accuracy, ease of use, and advanced features have allowed us to push the boundaries of human-factors research in aviation.
The ability to actually see through the surgeon’s eyes is important and visualizing where their hand motions are is critical to success.
This is the first time we can get data on visual human information collection. We can use this to optimize training procedures and operative procedures.
Our GT simulator proved to be ideal for this activity. Everything starts from the need to respect the adaptive capabilities of the human body and, specifically, the driver’s visual system. We brought a real car chassis into the simulator, mounted on our three-degrees-of-freedom motion system, and built a 180° visual environment that does not generate sensory conflicts.
我们团队在运用技术与研究专长开展高效模拟训练方面拥有丰富的经验。
让我们共同探讨您的绩效培训需求吧。