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The relationship between energy, phase charge, impedance, and perceived sensation in electrotactile stimulation

机译:电触觉刺激中能量,相电荷,阻抗和感知感觉之间的关系

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Electrotactile stimulation is a common method of sensory substitution and haptic feedback. One problem with this method has been the large variability in perceived sensation that derives from changes in the impedance of the electrode-skin interface. One way to reduce this variability is to modulate stimulation parameters (current amplitude and pulse duration) in response to impedance changes, which are reflected in the time domain by changes in measured peak resistance, Rp. To work well, this approach requires knowing precisely the relationship between stimulation parameters, peak resistance, and perceived sensation. In this paper, experimental results show that at a constant level of perceived sensation there are linear relationships between Rp and both peak pulse energy, Ep, and phase charge, Q, from which stimulation parameters are easily computed. These linear relationships held across different subjects, sessions, magnitudes of sensation, stimulation locations, and electrode sizes. The average R2 values for these linear relationships were 0.957 for Ep vs. Rp and 0.960 for Q vs. Rp, indicating a nearly perfect fit.
机译:电触觉刺激是感觉替代和触觉反馈的常见方法。该方法的一个问题是,由于电极-皮肤界面的阻抗变化而引起的感知感觉的较大差异。减小这种可变性的一种方法是响应阻抗变化来调制刺激参数(电流幅度和脉冲持续时间),这些阻抗变化会在时域中通过测量的峰值电阻Rp的变化反映出来。为了很好地工作,这种方法需要精确了解刺激参数,峰值阻力和感知到的感觉之间的关系。在本文中,实验结果表明,在恒定的感知感觉水平下,Rp与峰值脉冲能量Ep和相位电荷Q之间存在线性关系,由此可以轻松计算刺激参数。这些线性关系跨越不同的主题,会话,感觉大小,刺激位置和电极大小。这些线性关系的平均R 2 值分别为Ep与Rp的0.957和Q与Rp的0.960,表明几乎是完美的拟合。

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