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Developing a tDCS-Enhanced Dual-Task Flight Simulator for Evaluating Learning

机译:开发TDCS增强的双重任务飞行模拟器,用于评估学习

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The field of enhancing skill acquisition, particularly in professions necessitating the mastery of a complex combination of physical and mental abilities, is rapidly progressing and amenable to novel training protocols involving both neuroimaging and neurostimulation. Aircraft piloting in particular is an ideal medium for testing new training protocols, because objective performance measures are well-understood and modern flight simulator programs are realistic and high-fidelity. Here, we describe the development of a flight simulator protocol that allows for the analysis of neurostimulation-enhanced skill acquisition both within and between subjects. A three-block design was created to collect data pre-training, during feedback training, and post-training while being recorded in an fMRI. The dual task consists of 30-45 s trials landing a plane on one of two runways, indicated by an arrow displayed on the simulator screen, while simultaneously responding to auditory stimuli played constantly during each trial with button presses. The landing task is presented at two difficulty levels in pseudorandom balanced order, modulated by wind speed and direction. Two auditory conditions, response and control (no response), are used for a two by two design. For the feedback training, subjects are provided with relevant measures of how well they are able to land on the specified runway as well as their accuracy in the auditory task. Subjects will be randomly assigned to tDCS stimulation or sham groups, with stim receiving 30 min of 1.5 mA high definition-tDCS to the right ventrolateral prefrontal cortex during the training block. Altogether, this novel combination of stimulation, neuroimaging, and dual-task training will allow for an in-depth, multi-factor analysis of cognitive workload, behavioral performance, neurostimulation effects, and learning of a complex mental and physical task.
机译:提高技能获取的领域,特别是在需要掌握身心和精神能力的复杂组合的职业领域,这是迅速进展和旨在涉及神经影像和神经刺激的新型训练方案。特别是飞机策略是用于测试新培训协议的理想媒介,因为客观的性能措施是良好的理解,现代飞行模拟器计划是现实的,高保真。在这里,我们描述了一种飞行模拟器协议的开发,允许分析受试者内部和之间的神经刺激增强的技能获取。创建了三个块设计,以收集数据预培训,在反馈培训期间和培训后在FMRI中记录。双重任务由30-45秒的试验组成,该试验在两个跑道之一上降落飞机,由模拟器屏幕上显示的箭头表示,同时在每个试验中同时响应在每次试验期间在按钮按下的情况下在每次试验期间播放的刺激。着陆任务以伪随机均衡顺序的两个难度呈现,由风速和方向调制。两个听觉条件,响应和控制(无响应)用于两种设计。对于反馈培训,受试者提供了有关他们能够降落在特定跑道上的相关措施以及听觉任务中的准确性。受试者将被随机分配给TDCS刺激或假组,在训练块期间,致力接收30分钟的1.5 mA高清-TDC到右侧介口前额叶皮质。完全是这种新颖的刺激,神经影像学和双任务培训的组合将允许深入,多因素分析认知工作量,行为性能,神经刺激效果以及复杂的心理和物理任务的学习。

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