Academic Journal
Q1Wearable Technologies
About Wearable Technologies
Wearable Technologies is a scholarly journal published by Cambridge University Press. SCImago 2025 lists it in Q1, with an SJR of 0.704 and H-index of 21.
Coverage: 2020-2026. Research categories: Rehabilitation (Q1); Biomedical Engineering (Q2); Human-Computer Interaction (Q2).
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
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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
Prosthetics and Rehabilitation Robotics; Muscle activation and electromyography studies; Stroke Rehabilitation and Recovery; Musculoskeletal pain and rehabilitation; Balance, Gait, and Falls Prevention; Advanced Sensor and Energy Harvesting Materials.
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.
State of the art of lower limb prosthesis simulators: A literature review
Imke Neelen, Bob van der Windt, Matthew Justin Major, Gerwin Smit et al.
2026 · DOI: 10.1017/wtc.2026.10038Battlefield exoskeleton usability for lower-limb trauma in prolonged field care: A mixed-methods approach
Ciera A. Price, Catharina C. Gaeth, Julia A. Gambill, William Brett Johnson et al.
2026 · DOI: 10.1017/wtc.2025.10036Shoulder-wearable soft robot for assisting older adults in scapular stretching
Kosuke Isobe, Masakazu Hirokawa, Yasuhiro Suzuki, Hideki Kadone et al.
2026 · DOI: 10.1017/wtc.2026.10044Wearable-only estimation of L5-S1 joint moments during lifting: A CEINMS-based validation
Filippo Motta, Mohamed Irfan Refai, Alberto Ranavolo, Tiwana Varrecchia et al.
2026 · DOI: 10.1017/wtc.2026.10047Effects of ankle-foot prosthesis design on gait and standing performance in transfemoral prosthesis users: A scoping review
Miguel A. Vaca, Molly Beestrum, Steven A. Gard, Matthew J. Major et al.
2026 · DOI: 10.1017/wtc.2025.10037A preliminary study of the efficacy of bimodal versus unimodal stumble recovery responses in a powered knee prosthesis
Shane T. King, Maura E. Eveld, Leo G. Vailati, Karl E. Zelik et al.
2026 · DOI: 10.1017/wtc.2026.10040Effects of a wearable-based intervention in overweight and obese adolescents: A randomized controlled trial considering gender, baseline activity, and intervention exposure
Adrián Mateo-Orcajada, Raquel Vaquero-Cristóbal, Lucía Abenza-Cano
2026 · DOI: 10.1017/wtc.2026.10039A lightweight passive ankle exoskeleton with dual-phase energy harvesting and stiffness adaptation
Kaitai Li, Zhao Yang, Heyuan Wang, Xuesong Ye et al.
2026 · DOI: 10.1017/wtc.2026.10046Posture clip: Sit properly or I won’t let you work
Arka Majhi, Aparajita Mondal
2026 · DOI: 10.1017/wtc.2026.10041Concerted control framework for human-exoskeleton co-adaptation using ground reaction forces
Vahid Firouzi, Arjang Ahmadi, Dennis Haufe, Andre Seyfarth et al.
2026 · DOI: 10.1017/wtc.2026.10042Feasibility of a new soft ankle exoskeleton on people with dropfoot post-stroke
Xiaochen Zhang, Axel Fredriksen, Elena M. Gutierrez-Farewik, Susanne Palmcrantz et al.
2026 · DOI: 10.1017/wtc.2026.10043Prospective value of a backward-walking controller for a swing-assist knee prosthesis
Marion Hagstrom, David Marsh, Michael Goldfarb
2026 · DOI: 10.1017/wtc.2026.10048Muscle fatigue and recovery aware control with a hybrid exoskeleton – A preliminary study in spinal cord injury
Krysten Faith Lambeth, Ashwin Iyer, Christine Alexis Cleveland, Michael Lewek et al.
2026 · DOI: 10.1017/wtc.2026.10045SenseRisc: An instrumented smart shirt for risk prevention in the workplace
Christian Tamantini, Fabrizio Marra, Joshua Di Tocco, Stefano Di Modica et al.
2025 · DOI: 10.1017/wtc.2025.10Evaluation of fatigue progression during overhead tasks and the effects of exoskeleton assistance
Seemab Zakir, Lorenzo Grazi, Francesco Giovacchini, Nicola Vitiello et al.
2025 · DOI: 10.1017/wtc.2025.10008Design optimization platform for assistive wearable devices applied to a knee damper exoskeleton
Asghar Mahmoudi, Stephan Rinderknecht, Andre Seyfarth, Maziar A. Sharbafi et al.
2025 · DOI: 10.1017/wtc.2025.10016Joint coordination constraints using an upper limb exoskeleton impact novel skill acquisition
Keya Ghonasgi, Reuth Mirsky, Adrian M. Haith, Peter Stone et al.
2025 · DOI: 10.1017/wtc.2025.10028Wearable system for the measurement of gait cycle kinematic and kinetic signals
Manuela Gomez-Correa, Mariana Alegria, David Cruz-Ortiz, Mariana Ballesteros et al.
2025 · DOI: 10.1017/wtc.2025.10032Autonomous slip control inspired by human physiology for improved shared control strategy
Joana Matos, Patricia Capsi-Morales, Cristina Piazza
2025 · DOI: 10.1017/wtc.2025.10007Quantifying sitting posture: A pilot feasibility study of computer vision and wearable sensors (Posture Lab) using a manikin model
Supachai Vorapojpisut, Suphawit Sansuk, Phoomtai Yindee, Darawadee Panich et al.
2025 · DOI: 10.1017/wtc.2025.10005Reviews
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Version History
October 2, 2026 at 9:06 pm
October 2, 2026