首页> 外文会议>Annual International IEEE-EMBS Special Topic Conference on Microtechnologies in Medicine Biology >A hybrid natural/artificial electrostatic actuator for tactile stimulation
【24h】

A hybrid natural/artificial electrostatic actuator for tactile stimulation

机译:用于触觉刺激的混合自然/人造静电执行器

获取原文

摘要

Two modes of tactile communication have been previously explored - electrocutaneous and electrostatic. The electrostatic mode has the significant advantage of not passing electrical current into tissue to effect stimulation of afferent touch nerves. In previous research, we microfabricated electrostatic tactile displays on a 4-inch wafer using standard clean room processing. Tactile perception studies performed on those showed that subjects could discriminate simple spatial geometric patterns. The focus of the current work is to develop a better understanding of the basic mechanism of perception (activation of receptors) during electrostatic stimulation at the skin-display interface. Three displays were constructed with polyimide (PI) dielectric layers of varying thickness. Studies were performed on human subjects to determine the dependence of threshold of sensation on the P1 thickness using both the method of limits and two-alternate forced-choice techniques. The theoretical model for the behavior of the interface (a parallel-plate capacitor) suggests a linear relationship between voltage and dielectric thickness. However, our results indicate that the thickness has little or no effect on the threshold. The results are promising in that they may provide an indirect estimate of the depth of the subcutaneous conductive layer of the skin, and a better understanding of the interface.
机译:先前已经探索了两种触觉通信 - 电静电和静电。静电模式具有未将电流传递到组织中的显着优势,以促进致传入触摸神经。在以前的研究中,使用标准洁净室处理,我们在4英寸晶片上显示微制造的静电触觉。对那些进行的触觉感知研究表明,受试者可以区分简单的空间几何图案。目前工作的重点是在皮肤显示界面处的静电刺激期间更好地了解静电刺激期间感知(受体激活)的基本机制。用聚酰亚胺(PI)介电层构造三个显示器的不同厚度。对人对象进行研究,以确定使用限制方法和双交替强制选择技术的方法对P1厚度的感觉阈值的依赖性。接口行为(平行板电容器)的理论模型表明电压和介电厚度之间的线性关系。但是,我们的结果表明厚度对阈值几乎没有影响。结果在于它们可以提供对皮肤皮下导电层的深度的间接估计,并更好地了解界面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号