OtherJournal of neuroengineering and rehabilitation2026

Dynamic current ratio control and biophysical modeling for personalised electro-tactile perception.

Hongbo Yao, Mingyu Tan, Junjie Pan, Xijie Wu, Liming Wang, Yuhe Luo, Qiwei Xiong, Qing Zeng, Lin Shu

PMID 41668178

WHAT IT FOUND

This paper describes a virtual reality tactile feedback system.

It reports no clinical outcomes for patients and offers no guidance for therapy practice.

What this paper is

This is a technical engineering paper describing the design of a virtual reality tactile feedback system and the computational models used to predict how electrical stimulation affects finger nerves. It does not report on a clinical intervention for patients, nor does it measure functional outcomes relevant to physical, occupational, or speech-language therapy practice. There are no findings here to change clinical management.

Summarised by AI from the full paper, without a clinician reviewing it. Check it against the source before it changes what you do. Read it on PubMed →


The study

Certainty of evidence
Low

Browse

    Cite

    Hongbo Yao, Mingyu Tan, Junjie Pan, et al. Dynamic current ratio control and biophysical modeling for personalised electro-tactile perception. Journal of neuroengineering and rehabilitation. 2026.

    Read the original — we summarise, we never replace the paper.

    Dynamic current ratio control and biophysical modeling for personalised electro-tactile perception. — Applied Evidence