Electroneurophysiological responses to fabric-skin dynamic contact with different fabrics among different types of people

Author:

Ye Ting12ORCID,Cui Lina3ORCID,Zhang Chuyang3,Qiu Yiping13ORCID

Affiliation:

1. Department of Technical Textiles, College of Textiles, Donghua University, Shanghai, China

2. Department of Clothing and Accessory Design, College of Fine Arts and Design, Wenzhou University, Wenzhou, China

3. Department of Clothing and Accessory Design, College of Textiles and Apparel, Quanzhou Normal University, Quanzhou, China

Abstract

Electroneurophysiology has been more and more widely used to evaluate the tactile comfort of fabrics. In our previous study, it was found that three different types of subjects exist, namely extraordinary, ordinary, and non-sensitive people, corresponding to their electroneurophysiological responses to fabric-skin contact. In the current study, 19 subjects were recruited, including one extraordinary sensitive, eight ordinary sensitive and 10 non-sensitive subjects who were tested with a smooth cotton fabric and a rough polyester fabric in a fabric-skin dynamic contact experiment. Electromyography, electroencephalography, and electrocardiography signals of the human body, paired with subjective evaluation were carried out. The results show that the rough polyester fabric, compared with the smooth cotton fabric, tended to cause higher mean amplitude and larger waveform area of the myoelectric potential, reduced energy percentage of α wave, improved pneumogastric nerve activity and heart rate variability of the ordinary sensitive subjects, indicating more discomfort in fabric-skin dynamic contact. However, for the non-sensitive subjects, no consistent pattern could be observed in all of the above indicators. Therefore, the ordinary sensitive subjects are more suitable in clothing tactile comfort evaluation using electroneurophysiological measurements. In addition, it was found that ordinary sensitive subjects are predominantly females while non-sensitive subjects are most likely males.

Funder

the Advanced Nonwoven Materials Innovation Platform Program of Fujian

Fujian Provincial Department of Science and Technology

the Open Competition Mechanism Project of Science and Technology Department of Quanzhou City

Department of Education of Zhejiang Province

Commissioned Project by Quanzhou Peak Shoes Co., LTD

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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