A Biomimetic Nociceptor Using Centrosymmetric Crystals for Machine Intelligence
Wenjie Wang, Yingfei Wang, Xiang Li, Long Chen, Lilei Yu, Anlian Pan, Jie Tan, Quan Yuan
- Year
- 2023
- Citations
- 25
- Access
- Open access
Abstract
Abstract Pain sensation is a crucial aspect of perception in the body. Force‐activated nociceptors encode electrochemical signals and yield multilevel information of pain, thus enabling smart feedback. Inspired by the natural template, multi‐dimensional mechano‐sensing materials provide promising approaches for biomimetic nociceptors in intelligent terminals. However, the reliance on non‐centrosymmetric crystals has narrowed the range of these materials. Here centrosymmetric crystal Cr 3+ ‐doped zinc gallogermanate (ZGGO:Cr) with multi‐dimensional mechano‐sensing is reported, eliminating the limitation of crystal structure. Under forces, ZGGO:Cr generates electrical signals imitating those of neuronal systems, and produces luminescence for spatial mapping of mechanical stimuli, suggesting a path toward bionic pain perception. On that basis, a wireless biomimetic nociceptor system is developed and a smart pain reflex in a robotic hand and robot‐assisted biopsy surgery of rat and dog is achieved.
Keywords
Related papers
Robots and Jobs: Evidence from US Labor Markets
Daron Acemoğlu, Pascual Restrepo
2019
Skin-like pressure and strain sensors based on transparent elastic films of carbon nanotubes
Darren J. Lipomi, Michael Vosgueritchian, Benjamin C. K. Tee +4 more
2011
Stretchable, Skin‐Mountable, and Wearable Strain Sensors and Their Potential Applications: A Review
Morteza Amjadi, Ki‐Uk Kyung, Inkyu Park +1 more
2016
Reach and grasp by people with tetraplegia using a neurally controlled robotic arm
Leigh R. Hochberg, Daniel Bacher, Beata Jarosiewicz +8 more
2012