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Addition of a Biomimetic Fingerprint on an Artificial Fingertip Enhances Tactile Spatial Acuity

机译:在人工指尖上添加仿生指纹可增强触觉空间敏锐度

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摘要

The fingerprint is a morphological aspect of the human fingertip that has interesting implications for our sense of touch. Previous studies focused on how the fingerprint affects the perception of stimuli that excite high temporal frequencies, such as for texture perception. These studies also only add papillary ridges to their sensors. Here, we endow a biomimetic sensor with both papillary ridges (fingerprint) and a dermal stiffness contrast (stiffer intermediate ridges), and assess the impact on localization perception accuracy. The sensor is based on a novel modular version of a three-dimensional printed tactile sensor (TacTip). Tactile data were collected with these tips on nine stimuli with varying curvature. The location perception acuity of three tips [smooth, fingerprint, and fingerprint (cores)] were compared with a probabilistic classification method, finding that both fingerprinted tips increase the perceptual acuity of small spatial scales. Interestingly, the fingerprint variant had poorer accuracy than the smooth tip for larger spatial scales; however, adding cores to enhance the dermal stiffness counteracted the degradation of accuracy. This supports the theories that the fingerprint aids the classification of edges and smaller spatial scales, and demonstrates that the addition of a fingerprint to an artificial tactile sensors improves its acuity.
机译:指纹是人类指尖的形态特征,对我们的触觉具有有趣的含义。先前的研究集中在指纹如何影响激发高时间频率的刺激的感知上,例如纹理感知。这些研究还仅在其传感器中添加了乳头状脊。在这里,我们为仿生传感器提供了乳头状隆起(指纹)和皮肤刚度对比(较硬的中间隆起),并评估了对定位感知准确性的影响。该传感器基于三维打印触觉传感器(TacTip)的新型模块化版本。利用这些技巧收集了不同弯曲度的九种刺激物的触觉数据。将三个笔尖(光滑,指纹和指纹(核心))的位置感知敏锐度与概率分类方法进行了比较,发现这两个指纹敏锐的尖端都会提高小空间尺度的感知敏锐度。有趣的是,对于较大的空间比例,指纹变体的准确性比平滑尖端差。但是,增加芯部以增强真皮的刚度抵消了准确性的下降。这支持了指纹有助于边缘和较小空间尺度分类的理论,并证明了向人工触觉传感器添加指纹可以提高其敏锐度。

著录项

  • 来源
    《IEEE Robotics and Automation Letters》 |2017年第3期|1336-1343|共8页
  • 作者单位

    Bristol Robotics Laboratory, and the Department of Engineering Mathematics, University of Bristol, Bristol, U.K.;

    Bristol Robotics Laboratory, and the Department of Engineering Mathematics, University of Bristol, Bristol, U.K.;

    Bristol Robotics Laboratory, and the Department of Engineering Mathematics, University of Bristol, Bristol, U.K.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tactile sensors; Epidermis; Pins; Dermis;

    机译:触觉传感器;表皮;针;真皮;

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