Multiscale artificial spider web for comprehensive pressure sensing and human-machine interaction

J Jing Dai K Kwan-Nyeong Kim G Guangzhong Xie D Dong-Su Choi S Seung-Woo Lee E Eojin Yoon C Chan-Yul Park H Han Dai S Somin Kim H Hyun-Haeng Lee T Tae-Woo Lee

Abstract

Abstract Flexible pressure sensors are key components of Internet of Things systems for monitoring environmental and physiological signals, yet simultaneously achieving a high sensitivity, a fast response time, and a high mechanical durability remains challenging owing to the lack of sophisticated structural designs that balance sensing performance and robustness. Here, we demonstrate a multiscale artificial spider web (MASW) fabricated via copper-mesh-assisted electrospinning of biodegradable polylactic acid, forming a nanofiber network that efficiently transmits stress while enhancing mechanical stability. The resulting pressure sensor simultaneously shows a high sensitivity of 39.85 [kPa] −1 , a fast response of 42 ms and high durability over 6000 loading cycles, enabling reliable and versatile neural-network-assisted real-time monitoring of multiple physiological signals, including pulse, breathing, and vocalization. Furthermore, leveraging precise joint movement signal acquisition, a human-machine interaction system was developed with potential applications in fine motor rehabilitation for Parkinson’s disease, suggesting strong promise for sustainable healthcare and IoT systems.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 04, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

J

Jing Dai

K

Kwan-Nyeong Kim

G

Guangzhong Xie

D

Dong-Su Choi

S

Seung-Woo Lee

E

Eojin Yoon

C

Chan-Yul Park

H

Han Dai

S

Somin Kim

H

Hyun-Haeng Lee

T

Tae-Woo Lee