
Academic Journal
Q1Bioelectronic Medicine
About Bioelectronic Medicine
Bioelectronic Medicine is a scholarly journal published by BioMed Central Ltd. SCImago 2025 lists it in Q1, with an SJR of 1.147 and H-index of 31.
Coverage: 2014-2016, 2018-2026. Research categories: Biomedical Engineering (Q1); Computer Science Applications (Q1); Medicine (miscellaneous) (Q1).
Verified field sources
- Journal Impact Factor: 6.8 — Official source; checked 2026-10-03. Journal metric year and editorial leadership as listed on the Springer Nature journal homepage.
- Impact Factor year: 2025 — Official source; checked 2026-10-03. Journal metric year and editorial leadership as listed on the Springer Nature journal homepage.
- Editor(s): Kevin J. Tracey MD (Editor-in-Chief) — Official source; checked 2026-10-03. Journal metric year and editorial leadership as listed on the Springer Nature journal homepage.
Open-access policies and author information
Reported in the official DOAJ public CSV snapshot (2026-09-01), downloaded 2026-10-03. Record updated 2026-03-17. This snapshot does not establish today’s listing status or fee quotation.
Publisher policy links recorded by DOAJ
- Aims and scope ↗
- Editorial board ↗
- Instructions for authors ↗
- Peer-review policy ↗
- Publication fees ↗
- Fee waivers ↗
- Licence terms ↗
- Copyright policy ↗
- Preservation policy ↗
Source: DOAJ journal record. Journal metadata is distributed by DOAJ under CC0. Confirm current fees, tax, eligibility and waiver terms with the publisher.
Source-backed journal facts
Topics in published research
Vagus Nerve Stimulation Research; Neuroscience and Neural Engineering; EEG and Brain-Computer Interfaces; Heart Rate Variability and Autonomic Control; Neurological disorders and treatments; Nicotinic Acetylcholine Receptors Study.
OpenAlex classifies topics from published works. These topics are not the publisher’s official aims and scope.
Source: OpenAlex source record. Retrieved 2026-10-03. Source record updated 2026-10-02. OpenAlex metrics are different from SCImago metrics and the Clarivate Journal Impact Factor.
Journal Metrics
Quartile, SJR and the listed SCImago H-index use the 2025 imported SCImago dataset. A quartile may vary by subject category. Values without a source or reporting year are unverified historical entries. Verify the current Journal Impact Factor with Clarivate or the publisher before using it.
Aims & Scope
The publisher’s official aims and scope have not yet been verified for this profile. Use the journal website to check subject fit and accepted article types before submitting.
Recent Research Articles
Latest publications matched automatically by ISSN.
Accelerating the development of bioelectronic medicine: outcomes and innovations from the NIH SPARC initiative
Bhavesh Patel, Victor Pikov, Margot S. Damaser, Jyl Boline et al.
2026-09-04 · DOI: 10.1186/s42234-026-00213-zTeaching through technology: comparing student experiences of VR and computer simulations in orthoptics education
Michael Batterley, Georg Meyer, Jignasa Mehta, Simon Campion et al.
2026-08-29 · DOI: 10.1186/s42234-026-00214-yAccelerating the development of bioelectronic medicine: overview and impact of the NIH Stimulating Peripheral Activity to Relieve Conditions (SPARC) initiative
Katelynn A. Milora, Rebecca M. Black, Andrew C. Weitz, Michael B. Wolfson et al.
2026-08-19 · DOI: 10.1186/s42234-026-00212-0Continuous vs. intermittent chronic vagus nerve stimulation: effects on T-cell dependent antibody response, heart rate variability and body weight in immunized mice
Michael Gerber, Ibrahim Mughrabi, Izumi Kurata-Sato, Ethan Paliwoda et al.
2026-07-22 · DOI: 10.1186/s42234-026-00211-1Autonomic and neural responses to varying transcutaneous cervical electrical stimulation parameters
Shubham Debnath, Fylaktis Fylaktou, Blake T. Gurfein, Theodoros P. Zanos et al.
2026-07-06 · DOI: 10.1186/s42234-026-00210-2Vagus nerve control of HMGB1 accessibility: a bioelectronic strategy for inflammation and pain
Huan Yang, Michael Brines, Ulf Andersson
2026-06-24 · DOI: 10.1186/s42234-026-00209-9Effects of transcutaneous auricular vagus nerve stimulation or combined vagal and trigeminal nerve stimulation on platelet function and laboratory hemostasis parameters in healthy human subjects
Jared M. Huston, Carlos E. Bravo-Iñiguez, Julien Papoin, Maaryj Ahmad et al.
2026-06-05 · DOI: 10.1186/s42234-026-00208-wA novel, wearable, in-ear EEG technology to assess sleep and daytime sleepiness
Jonathan Berent, Prabhjyot Saini, Andrew X. Stewart, Devansh Bheda et al.
2026-05-22 · DOI: 10.1186/s42234-026-00207-xParticipant-centered tolerability of transcutaneous auricular vagus nerve stimulation: insights from two crossover studies
Gabriel Gonzalez, Maximillian O’Malley, Jessica Bolanos, Danielle Taylor et al.
2026-05-08 · DOI: 10.1186/s42234-026-00206-yVagus nerve stimulation in Crohn’s disease: long-term outcomes, mechanistic insights, and the promise of non-invasive approaches
Valérie Sinniger, Sonia Pellissier, Bruno Bonaz
2026-04-17 · DOI: 10.1186/s42234-026-00205-zA novel transcutaneous auricular neurostimulation electrode configuration for treatment of heavy menstrual bleeding: an open-label trial
Christopher J. Czura, Angela C. Weyand, Maureen K. Baldwin, Michael Recht et al.
2026-04-04 · DOI: 10.1186/s42234-026-00203-1Neural Interfaces for Bioelectronic Medicine
Dimitrios A. Koutsouras, Geert Langereis
2026-03-28 · DOI: 10.1186/s42234-026-00204-0Virtual reality volumetric rendering versus cross-sectional imaging for pancreatic cancer resectability assessment: a pilot randomized controlled reader study
Karl Eisenträger, Kaya Saribeyoglu, Uli Fehrenbach, Matthäus Felsenstein et al.
2026-03-09 · DOI: 10.1186/s42234-026-00202-2A robust, real‑time telemetry protocol for miniaturized neural implants using off‑the‑shelf hardware
Mohamed Elgohary, Michael Recine, Jason Wong, Timir Datta-Chaudhuri et al.
2026-03-07 · DOI: 10.1186/s42234-026-00201-3Scaling beyond the vagus nerve: historical and contemporary progress on electrode-based small-diameter peripheral nerve interfaces
Max Li, Christine Ly, Jinghua Wen, Paritosh Rustogi et al.
2026-02-28 · DOI: 10.1186/s42234-025-00199-0Exploring vagus nerve stimulation in postoperative delirium and dementia
Rachel M. Spicer, Peder S. Olofsson, Fiona E. Harrison
2026-02-20 · DOI: 10.1186/s42234-026-00200-4Cognitive neurobehavior and synaptic plasticity after vagus nerve stimulation in female rats: Interaction between estrous cycle and neurostimulation
Laura K. Olsen, Krysten A. Jones, Birendra Sharma, Victoria T. Ethridge et al.
2026-02-02 · DOI: 10.1186/s42234-025-00196-3The sixth bioelectronic medicine summit: Neurotechnologies for individuals and communities
Siyar Bahadir, Jacob T. Robinson, Leslie R. Morse, Paul B. Yoo et al.
2026-01-28 · DOI: 10.1186/s42234-025-00195-4Electrical stimulation of the vagus nerve improves amyloid pathology in delirium superimposed on dementia
Chengcheng Song, Pau Yen Wu, William J. Huffman, Jennifer David-Bercholz et al.
2026-01-16 · DOI: 10.1186/s42234-025-00194-5Resonant core–shell magnetoelectric nanoparticles as sensors of neural magnetic activity: a computational study
Giulia Caiani, Emma Chiaramello, Paolo Ravazzani, Serena Fiocchi et al.
2026-01-09 · DOI: 10.1186/s42234-025-00198-1Reviews
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Version History
October 4, 2026 at 8:56 pm
September 25, 2026