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Towards a Technology-Based Assessment of Sensory-Motor Pathological States Through Tactile Illusions

机译:通过触觉幻象实现基于技术的感觉运动病理状态评估

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Touch provides important information on the physical properties of external objects, and contributes to the sense of our hand position and displacement in perceptual tasks. Recent studies showed that the texture of the touched surface produced a bias on the perceived tactile motion, ultimately affecting the direction of hand motion in reaching tasks. Specifically, moving on a plate with parallel ridges, the hand motion deviates towards a direction opposite with respect to the one predicted by tactile flow mathematical model, i.e. perpendicular to the ridges. Here, we used this phenomenon to quantitatively assess an impairment in tactile channel. We asked healthy participants slide the hand on a plate with parallel ridges, either with bare fingertip or by wearing a glove. The glove condition simulated a dysfunction in tactile channel, as may occur in pathological conditions, for e.g. due to a neurological disease. Our hypothesis is that, wearing a glove, the systematic error induced by the texture orientation will be smaller because the information provided by the tactile channel is noisier. Results are in agreement with our hypothesis, and could open interesting perspectives towards a quantitative technology-based tool for the assessment of tactile impairment in pathological conditions.
机译:触摸可提供有关外部对象物理特性的重要信息,并有助于我们在感知任务中手的位置和位移感。最近的研究表明,触摸表面的质感对感知的触觉运动产生了偏差,最终影响了手部运动在完成任务时的方向。具体地说,在具有平行脊的板上移动时,手的运动朝着与由触觉流数学模型预测的方向相反的方向,即垂直于脊。在这里,我们使用这种现象来定量评估触觉通道的损害。我们要求健康的参与者用裸露的指尖或戴着手套将手在带有平行脊的板上滑动。手套状况模拟了例如在病理状况下可能发生的触觉通道功能障碍。由于神经系统疾病。我们的假设是,戴着手套,由于触觉通道提供的信息噪声较大,因此由纹理取向引起的系统误差将较小。结果与我们的假设相符,并且可以为基于病理学的触觉损伤评估的基于定量技术的工具开辟有趣的前景。

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