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Responses of cutaneous mechanoreceptors within fingerpad to stimulus information for tactile softness sensation of materials

机译:指内的皮肤机械感受器对刺激信息的响应,以实现材料的触感柔软感

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摘要

Softness sensation is one of primitive tactile textures. While the psychophysical characteristics of softness sensation have been thoroughly studied, it is lack of a deep understanding of the underlying neuromechanical principles. On the stimulus–response processes of human fingerpad touching fabrics and the physiological properties of slowly adapting type I (SAIs) cutaneous mechanoreceptors within fingerpad, a fabric-skin-receptor coupling model was built and validated. By the fabric-skin-receptor model a series of numerical experiments was conducted, and how the evoked neural responses of cutaneous mechanoreceptors change with the composite compliance of both fingerpad skin and the materials in contact was investigated. The results indicated that the evoked neural responses of populations of cutaneous mechanoreceptors by the physical stimulus from fabrics were nearly proportional to the perceived softness magnitude, and nonlinearly increased and then decreased with the effective elastic modulus of fabrics or the relative elastic modulus of fabrics to soft tissues within fingerpad, where the nonlinear inflection point depended on the touching force level. Therefore, it concluded that the tactile judgment of the physical information for softness sensation of objects was an encoding of neural responses of populations of SAIs cutaneous mechanoreceptors, and the physical information depended on the mechanical interaction of fingerpad and objects in contact.
机译:柔软感是原始的触感质地之一。虽然已经对柔软感的心理生理特性进行了深入研究,但对基本的神经力学原理缺乏深入的了解。在人类指垫接触织物的刺激反应过程以及指垫内缓慢适应的I型(SAIs)皮肤机械感受器的生理特性的基础上,建立并验证了织物-皮肤-受体的耦合模型。通过织物-皮肤-受体模型进行了一系列数值实验,研究了皮肤机械感受器的诱发神经反应如何随指板皮肤和接触材料的复合顺应性而变化。结果表明,织物的物理刺激引起的皮肤机械感受器群体的神经反应几乎与感知的柔软度成正比,并且随着织物的有效弹性模量或织物相对于柔软的相对弹性模量呈非线性上升然后下降的趋势。指垫内的组织,其中非线性拐点取决于触摸力水平。因此,可以得出结论,物理信息对物体柔软感的触觉判断是SAI皮肤机械感受器群体神经反应的编码,而物理信息取决于指垫和接触物体的机械相互作用。

著录项

  • 来源
    《Cognitive Neurodynamics》 |2013年第5期|441-447|共7页
  • 作者单位

    Key Lab of Textile Science and Technology Ministry of Education Donghua University">(1);

    College of Textiles Donghua University">(2);

    Key Lab of Textile Science and Technology Ministry of Education Donghua University">(1);

    Key Lab of Textile Science and Technology Ministry of Education Donghua University">(1);

    Institute for Brain Information Processing and Cognitive Neurodynamics East China University of Science and Technology">(3);

    Key Lab of Textile Science and Technology Ministry of Education Donghua University">(1);

    College of Textiles Donghua University">(2);

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

    Mechanoreceptors; Tactile; Softness; Elastic modulus; Neuromechanics;

    机译:机械感受器;触;柔软度弹性模量神经力学;

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