Jove
Visualize
Contact Us
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

Related Concept Videos

You might also read

Related Articles

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

Sort by
Same author

The median effective dose (ED<sub>50</sub>) of remimazolam combined with esketamine for conscious sedation in patients with dental anxiety undergoing outpatient dental surgery: a prospective, dose-finding study.

BMC anesthesiology·2026
Same author

Broussonin A Attenuates Type 2 Diabetic Osteoporosis by Reactivating JAK2/STAT3 Signaling to Inhibit Ferroptosis in BMSCs.

Phytotherapy research : PTR·2026
Same author

Physics-inspired perspective on synergistic optimization: a deep receding-horizon optimization strategy for denitrification and ammonia slip suppression in waste incineration.

Bioresource technology·2026
Same author

Direct extraction of bromine from seawater through an electrolysis-driven styrene enrichment process.

Nature communications·2026
Same author

EGFR mimotope alleviates renal fibrosis by promoting EGFR/RPL6/PCBP2 ternary complex formation.

NPJ vaccines·2026
Same author

Spatially Separated Activation-Conversion Nitride Catalysts for Accelerated Ammonia Synthesis.

ACS applied materials & interfaces·2026

Related Experiment Video

Updated: Jul 4, 2025

Implantation and Control of Wireless, Battery-free Systems for Peripheral Nerve Interfacing
07:13

Implantation and Control of Wireless, Battery-free Systems for Peripheral Nerve Interfacing

Published on: October 20, 2021

3.2K

Wirelessly Powered and Bi-Directional Data Communication System With Adaptive Conversion Chain for Multisite

Mohammad Javad Karimi, Menghe Jin, Yuxuan Zhou

    IEEE Transactions on Biomedical Circuits and Systems
    |January 29, 2024
    PubMed
    Summary

    This study presents a novel wireless power and data system for multiple implanted biomedical devices. It achieves efficient, safe operation using dual-band coils and advanced control, reaching a 31.2% power transfer efficiency.

    More Related Videos

    A Wireless, Bidirectional Interface for In Vivo Recording and Stimulation of Neural Activity in Freely Behaving Rats
    10:41

    A Wireless, Bidirectional Interface for In Vivo Recording and Stimulation of Neural Activity in Freely Behaving Rats

    Published on: November 7, 2017

    13.3K
    Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver
    08:25

    Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver

    Published on: August 27, 2021

    2.6K

    Related Experiment Videos

    Last Updated: Jul 4, 2025

    Implantation and Control of Wireless, Battery-free Systems for Peripheral Nerve Interfacing
    07:13

    Implantation and Control of Wireless, Battery-free Systems for Peripheral Nerve Interfacing

    Published on: October 20, 2021

    3.2K
    A Wireless, Bidirectional Interface for In Vivo Recording and Stimulation of Neural Activity in Freely Behaving Rats
    10:41

    A Wireless, Bidirectional Interface for In Vivo Recording and Stimulation of Neural Activity in Freely Behaving Rats

    Published on: November 7, 2017

    13.3K
    Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver
    08:25

    Construction of a Wireless-Enabled Endoscopically Implantable Sensor for pH Monitoring with Zero-Bias Schottky Diode-based Receiver

    Published on: August 27, 2021

    2.6K

    Area of Science:

    • Biomedical Engineering
    • Electrical Engineering
    • Implantable Devices

    Background:

    • Wireless power transfer is crucial for implantable biomedical devices.
    • Existing systems face challenges in efficiency and multi-site communication.

    Purpose of the Study:

    • To develop a full wireless power and data communication system for multisite implanted biomedical applications.
    • To enhance power transfer efficiency (PTE) and ensure safe operation.

    Main Methods:

    • Utilized dual-band coils for separate wireless power and data reception per implant.
    • Implemented bi-directional half-duplex communication using amplitude and load shift keying (ASK and LSK) modulation.
    • Employed a digitally assisted active rectifier, automatic resonance tuning, and a closed-loop power control unit.

    Main Results:

    • Achieved separate wireless power and data communication for each implant using different resonance frequencies.
    • Demonstrated bi-directional communication with ASK and LSK modulation over a single inductive link.
    • Maximized overall PTE to 31.2% from the transmitter coil to the implant load.
    • Integrated a novel self-sampling separated- Vb ASK demodulator for data conversion.

    Conclusions:

    • The developed system offers a robust solution for wirelessly powering and communicating with multisite implanted biomedical devices.
    • The system's design ensures efficient power transfer, safe operation, and reliable data communication.
    • Fabricated using a standard 180-nm CMOS process, the system demonstrates practical feasibility for biomedical applications.