Assisting with Fingertip Force Control by Active Bio-Acoustic Sensing and Electrical Muscle Stimulation
Arinobu Niijima, Yuki Kubo
Abstract
Fingertip force control plays an important role in learning motor skills. Exoskeleton gloves have been developed to assist with fingertip force control, but having the equipment on the fingers interferes with finger motion control and tactile sensation. Thus, we present a system for assisting with voluntary fingertip force control that does not require any devices to be worn on the fingers. In this study, we focused particularly on lateral pinch force, which is grip force achieved with the pad of the thumb and the lateral surface of the index finger to grasp objects. We use active bio-acoustic sensing to estimate voluntary pinch force with piezo elements attached to the back of the hand and electrical muscle stimulation (EMS) to the forearm to control involuntary pinch force in a closed-loop system. We developed three prototypes and conducted user studies to investigate whether our system can assist with pinch force control under several target forces, from weak to strong. Our user studies showed that the combination of active bio-acoustic sensing and EMS can assist users in maintaining the pinch force closer to the target force.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 4fb968b4-5799-40b3-89a3-3f42fd917874Cited by top-tier papers3
- SplitBody: Reducing Mental Workload while Multitasking via Muscle StimulationRomain Nith, Yun Ho, Pedro LopesCHI 2024 · 20 citations
- Adaptive Electrical Muscle Stimulation Improves Muscle MemorySiya Choudhary, Romain Nith, Yun Ho, Jas Brooks et al.CHI 2025 · 7 citations
- Modeling Perceived Force of Electrical Muscle Stimulation to Improve User's RecallMithil Guruvugari, Romain Nith, Pedro LopesCHI 2026 · 1 citation
Related papers
- Increasing Electrical Muscle Stimulation's Dexterity by means of Back of the Hand ActuationAkifumi Takahashi, Jas Brooks, Hiroyuki Kajimoto, Pedro LopesCHI 2021 · 60 citations
- Can a Smartwatch Move Your Fingers? Compact and Practical Electrical Muscle Stimulation in a SmartwatchAkifumi Takahashi, Yudai Tanaka, Archit Tamhane, Alan Shen et al.UIST 2024 · 15 citations
- Full-hand Electro-Tactile Feedback without Obstructing Palmar Side of HandYudai Tanaka, Alan Shen, Andy Kong, Pedro LopesCHI 2023 · 65 citations
- EStatiG: Wearable Haptic Feedback with Multi-Phalanx Electrostatic Brake for Enhanced Object Perception in VRNicha Vanichvoranun, Hojeong Lee, Seoyeon Kim, Sang Ho YoonUbiComp 2024 · 15 citations
- Paired-EMS: Enhancing Electrical Muscle Stimulation (EMS)-based Force Feedback Experience by Stimulating Both Muscles in Antagonistic PairsChia-Yu Cheng, Yu Chen, Sitaresmi Wahyu Handani, Avijit Balabantaray et al.CHI 2024 · 11 citations
