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Ultra-low-cost 3D gaze estimation: an intuitive high information throughput compliment to direct brain-machine interfaces

机译:超低成本3D凝视估计:直观的高信息吞吐能力可直接用于人机界面

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摘要

Eye movements are highly correlated with motor intentions and are often retained by patients with serious motor deficiencies. Despite this, eye tracking is not widely used as control interface for movement in impaired patients due to poor signal interpretation and lack of control flexibility. We propose that tracking the gaze position in 3D rather than 2D provides a considerably richer signal for human machine interfaces by allowing direct interaction with the environment rather than via computer displays. We demonstrate here that by using mass-produced video-game hardware, it is possible to produce an ultra-low-cost binocular eye-tracker with comparable performance to commercial systems, yet 800 times cheaper. Our head-mounted system has 30 USD material costs and operates at over 120 Hz sampling rate with a 0.5-1 degree of visual angle resolution. We perform 2D and 3D gaze estimation, controlling a real-time volumetric cursor essential for driving complex user interfaces. Our approach yields an information throughput of 43 bits s~ more than ten times that of invasive and semi-invasive brain-machine interfaces (BMIs) that are vastly more expensive. Unlike many BMIs our system yields effective real-time closed loop control of devices (10 ms latency), after just ten minutes of training, which we demonstrate through a novel BMI benchmark-the control of the video arcade game 'Pong'.
机译:眼球运动与运动意图高度相关,经常被严重运动障碍的患者保留。尽管如此,由于信号解释较差且缺乏控制灵活性,因此眼动追踪并未广泛用作受损患者运动的控制界面。我们建议通过允许直接与环境交互而不是通过计算机显示器,在3D而不是2D中跟踪注视位置为人机界面提供了更丰富的信号。我们在这里证明,通过使用大量生产的视频游戏硬件,可以生产出性能与商用系统相当但价格却便宜800倍的超低成本双目眼动仪。我们的头戴式系统的材料成本为30美元,并以超过120 Hz的采样率运行,且视角分辨率为0.5-1。我们执行2D和3D凝视估计,控制对于驱动复杂用户界面必不可少的实时体积光标。我们的方法产生的信息吞吐量为43位s〜,是侵入式和半侵入式脑机接口(BMI)的十倍之多,后者的成本要高得多。与许多BMI不同,我们的系统仅需十分钟的培训,即可对设备进行有效的实时闭环控制(延迟为10毫秒),我们通过新颖的BMI基准演示了对视频街机游戏“ Pong”的控制。

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  • 来源
    《Journal of neural engineering》 |2012年第4期|p.046016.1-046016.11|共11页
  • 作者

    W W Abbott; A A Faisal;

  • 作者单位

    Department of Bioengineering, Imperial College London, SW7 2AZ London, UK;

    Department of Bioengineering, Imperial College London, SW7 2AZ London, UK,Department of Computing, Imperial College London, SW7 2AZ London, UK;

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