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Holographic Raman tweezers controlled by multi-modal natural user interface

机译:多模态自然用户界面控制的全息拉曼镊子

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Holographic optical tweezers provide a contactless way to trap and manipulate several microobjects independently in space using focused laser beams. Although the methods of fast and efficient generation of optical traps are well developed, their user friendly control still lags behind. Even though several attempts have appeared recently to exploit touch tablets, 2D cameras, or Kinect game consoles, they have not yet reached the level of natural human interface. Here we demonstrate a multi-modal 'natural user interface' approach that combines finger and gaze tracking with gesture and speech recognition. This allows us to select objects with an operator's gaze and voice, to trap the objects and control their positions via tracking of finger movement in space and to run semi-automatic procedures such as acquisition of Raman spectra from preselected objects. This approach takes advantage of the power of human processing of images together with smooth control of human fingertips and downscales these skills to control remotely the motion of microobjects at microscale in a natural way for the human operator.
机译:全息光学镊子提供了一种非接触式的方法,可以使用聚焦激光束在空间中独立捕获和操纵多个微物体。尽管快速有效地生成光阱的方法已经得到很好的发展,但是它们的用户友好控制仍然滞后。即使最近出现了一些尝试使用触摸平板电脑,2D相机或Kinect游戏机的尝试,但它们尚未达到自然人机界面的水平。在这里,我们演示了一种多模式的“自然用户界面”方法,该方法将手指和凝视跟踪与手势和语音识别相结合。这使我们能够选择具有操作者注视和声音的物体,通过跟踪空间中的手指运动来捕获物体并控制其位置,并运行半自动程序,例如从预先选择的物体中获取拉曼光谱。这种方法利用了人类对图像进行处理的能力以及对人类指尖的平稳控制,并降低了这些技能的规模,从而以自然的方式对操作员进行了微尺度的远程微物体控制。

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