Related Experiment Video

Updated: Aug 3, 2026

A Simple and Scalable Fabrication Method for Organic Electronic Devices on Textiles
06:21

A Simple and Scalable Fabrication Method for Organic Electronic Devices on Textiles

Published on: March 13, 2017

10.6K

Design and Characterization of a Textile Electrode System for the Detection of High-Density sEMG

Giacinto Luigi Cerone, Alberto Botter, Taian Vieira

    IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society
    |June 7, 2021
    PubMed

    Abstract:

    Muscle activity monitoring in dynamic conditions is a crucial need in different scenarios, ranging from sport to rehabilitation science and applied physiology. The acquisition of surface electromyographic (sEMG) signals by means of grids of electrodes (High-Density sEMG, HD-sEMG) allows obtaining relevant information on muscle function and recruitment strategies. During dynamic conditions, this possibility demands both a wearable and miniaturized acquisition system and a system of electrodes easy to wear, assuring a stable electrode-skin interface. While recent advancements have been made on the former issue, detection systems specifically designed for dynamic conditions are at best incipient. The aim of this work is to design, characterize, and test a wearable, HD-sEMG detection system based on textile technology. A 32-electrodes, 15 mm inter-electrode distance textile grid was designed and prototyped. The electrical properties of the material constituting the detection system and of the electrode-skin interface were characterized. The quality of sEMG signals was assessed in both static and dynamic contractions. The performance of the textile detection system was comparable to that of conventional systems in terms of stability of the traces, properties of the electrode-skin interface and quality of the collected sEMG signals during quasi-isometric and highly dynamic tasks.

    More Related Videos

    Scalable Solution-processed Fabrication Strategy for High-performance, Flexible, Transparent Electrodes with Embedded Metal Mesh
    11:09

    Scalable Solution-processed Fabrication Strategy for High-performance, Flexible, Transparent Electrodes with Embedded Metal Mesh

    Published on: June 23, 2017

    10.4K
    Conformable Wearable Electrodes: From Fabrication to Electrophysiological Assessment
    10:03

    Conformable Wearable Electrodes: From Fabrication to Electrophysiological Assessment

    Published on: July 22, 2022

    4.6K

    Related Experiment Videos

    Last Updated: Aug 3, 2026

    A Simple and Scalable Fabrication Method for Organic Electronic Devices on Textiles
    06:21

    A Simple and Scalable Fabrication Method for Organic Electronic Devices on Textiles

    Published on: March 13, 2017

    10.6K
    Scalable Solution-processed Fabrication Strategy for High-performance, Flexible, Transparent Electrodes with Embedded Metal Mesh
    11:09

    Scalable Solution-processed Fabrication Strategy for High-performance, Flexible, Transparent Electrodes with Embedded Metal Mesh

    Published on: June 23, 2017

    10.4K
    Conformable Wearable Electrodes: From Fabrication to Electrophysiological Assessment
    10:03

    Conformable Wearable Electrodes: From Fabrication to Electrophysiological Assessment

    Published on: July 22, 2022

    4.6K

    Related Concept Videos

    Electrodeposition01:08

    Electrodeposition

    Electrodeposition is a technique used to separate an analyte from interferents by electrochemical processes. Here, the analyte is a metal ion that can be deposited on an electrode immersed in the sample solution. The electrochemical setup consists of an anode and a cathode. When an electric current is applied to the setup, oxidation occurs at the anode. At the cathode, which consists of a large metal surface, metal ions undergo reduction and deposit onto the surface.
    Electrodeposition can...

    Articles linked to this work by shared authors, journal, and citation graph.

    Combined Assessment of Body Composition and Neuromuscular Performance in Clinical Practice.

    Journal of visualized experiments : JoVE·2026

    Interactions between motor unit firing and fascicle dynamics during shortening and lengthening contractions.

    Journal of neurophysiology·2026

    Recording Cortical Somatosensory Responses During Cross-Country Skiing: A Feasibility and Reproducibility EEG Study.

    The European journal of neuroscience·2026

    Motor unit behavior adaptations across lifespan: sex differences in young, middle-aged and old adults.

    npj aging·2026

    Mechanical load monitoring in rugby: limitations and future perspectives.

    Frontiers in sports and active living·2026

    Shortened muscle position enhances firing rates of higher-recruitment-threshold motor units during submaximal contraction in tibialis anterior muscle.

    Journal of neurophysiology·2026

    Robust brain-computer interface (BCI) control during frequency-tuned transcranial alternating current stimulation (tACS).

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Versatile Exoskeleton Control Supports Elderly Joint Energetics During Hip-Intensive Tasks.

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Spared Motor Neurons Enable Control of a Robotic Sixth Finger for Functional Grasping in Tetraplegia.

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Energy-Efficient Peripheral Magnetic Stimulation via Pulse-Shape Optimization using a Dual-Coil Architecture with Monopolar-Like Nerve-Axis Field.

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Onset-Triggered Vote-Locking (OTVL) for Stable Myoelectric Control of Multi-DoF Prosthetic Hands.

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Multiplication of compound signals in neural array signal processing improves signal quality and detectability of action potentials.

    IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society·2026

    Skeletal Muscle Dysfunction in Heart Failure: Mechanistic Insights and Therapeutic Implications.

    JACC. Heart failure·2026

    Molecular hydrogen and osteoarthritis: multi-target mechanisms and therapeutic effectiveness.

    Medical gas research·2026

    Misalignment Between Perceived and Actual Ability on a Balance Beam Walking Task.

    Journal of motor behavior·2026

    Fracture-Centred Skeletal Reporting Profiles of Glucose-Lowering Drug Classes in FAERS and JADER: Cross-Database and Regional Reporting-Context Analyses.

    Diabetes, obesity & metabolism·2026

    Repeated stretch-shortening cycles enhance force and work despite brief deactivation between cycles.

    The Journal of experimental biology·2026

    Development and Internal Validation of an Explainable Machine Learning Model for Physical Activity Adherence Among Community-Dwelling Patients with Type 2 Diabetes Mellitus.

    Patient preference and adherence·2026
    See all related articles
    JoVE
    x logofacebook logolinkedin logoyoutube logo
    ABOUT JoVE
    OverviewLeadershipBlogJoVE Help Center
    AUTHORS
    Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
    LIBRARIANS
    TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
    RESEARCH
    JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
    EDUCATION
    JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
    Terms & Conditions of Use
    Privacy Policy
    Policies
    Jove
    Visualize
    Contact Us