Biometric‐Tuned E‐Skin Sensor with Real Fingerprints Provides Insights on Tactile Perception: Rosa Parks Had Better Surface Vibrational Sensation than Richard Nixon

Author:

Hou Senlin1ORCID,Huang Qingyun23,Zhang Hongyu1,Chen Qingjiu1,Wu Cong4,Wu Mengge5,Meng Chen1,Yao Kuanming5,Yu Xinge3,Roy Vellaisamy A. L.6,Daoud Walid1,Wang Jianping7,Li Wen Jung1ORCID

Affiliation:

1. Department of Mechanical Engineering City University of Hong Kong Hong Kong 999077 China

2. Department of Industrial Engineering and Management School of Mechanical Engineering Shanghai Jiao Tong University Shanghai 200240 China

3. State Key Laboratory of Mechanical Systems and Vibration Shanghai Jiao Tong University Shanghai 200240 China

4. Hong Kong Centre for Cerebro‐cardiovascular Health Engineering (COCHE) Hong Kong 999077 China

5. Department of Biomedical Engineering City University of Hong Kong Hong Kong 999077 China

6. School of Science and Technology Hong Kong Metropolitan University Hong Kong 999077 China

7. Department of Computer Science City University of Hong Kong Hong Kong 999077 China

Abstract

AbstractThe dense mechanoreceptors in human fingertips enable texture discrimination. Recent advances in flexible electronics have created tactile sensors that effectively replicate slowly adapting (SA) and rapidly adapting (RA) mechanoreceptors. However, the influence of dermatoglyphic structures on tactile signal transmission, such as the effect of fingerprint ridge filtering on friction‐induced vibration frequencies, remains unexplored. A novel multi‐layer flexible sensor with an artificially synthesized skin surface capable of replicating arbitrary fingerprints is developed. This sensor simultaneously detects pressure (SA response) and vibration (RA response), enabling texture recognition. Fingerprint ridge patterns from notable historical figures – Rosa Parks, Richard Nixon, Martin Luther King Jr., and Ronald Reagan – are fabricated on the sensor surface. Vibration frequency responses to assorted fabric textures are measured and compared between fingerprint replicas. Results demonstrate that fingerprint topography substantially impacts skin‐surface vibrational transmission. Specifically, Parks' fingerprint structure conveyed higher frequencies more clearly than those of Nixon, King, or Reagan. This work suggests individual fingerprint ridge morphological variation influences tactile perception and can confer adaptive advantages for fine texture discrimination. The flexible bioinspired sensor provides new insights into human vibrotactile processing by modeling fingerprint‐filtered mechanical signals at the finger‐object interface.

Publisher

Wiley

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