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Validity and reliability of wearable inertial sensors in healthy adult walking: A systematic review and meta-analysis
Abstract Background Inertial measurement units (IMUs) offer the ability to measure walking
gait through a variety of biomechanical outcomes (eg, spatiotemporal, kinematics, other) …
gait through a variety of biomechanical outcomes (eg, spatiotemporal, kinematics, other) …
[HTML][HTML] Osteoarthritis year in review 2020: Mechanics
JLA Wilson, D Kobsar - Osteoarthritis and cartilage, 2021 - Elsevier
The mechanical environment of the joint during dynamic activity plays a significant role in
osteoarthritis processes. Understanding how the magnitude, pattern and duration of joint …
osteoarthritis processes. Understanding how the magnitude, pattern and duration of joint …
A deep learning method for foot progression angle detection in plantar pressure images
Foot progression angle (FPA) analysis is one of the core methods to detect gait pathologies
as basic information to prevent foot injury from excessive in-toeing and out-toeing. Deep …
as basic information to prevent foot injury from excessive in-toeing and out-toeing. Deep …
3D printed flexible wearable sensors based on triply periodic minimal surface structures for biomonitoring applications
ME Imanian, M Kardan-Halvaei… - Smart Materials and …, 2022 - iopscience.iop.org
Soft piezoresistive wearable conductors have led to a paradigm shift in the monitoring of
human bodily motions. Cellular additively manufactured conductors are promising …
human bodily motions. Cellular additively manufactured conductors are promising …
Magnetometer-free, IMU-based foot progression angle estimation for real-life walking conditions
Foot progression angle (FPA) is vital in many disease assessment and rehabilitation
applications, however previous magneto-IMU-based FPA estimation algorithms can be …
applications, however previous magneto-IMU-based FPA estimation algorithms can be …
IMU-Based Kinematics Estimation Accuracy Affects Gait Retraining Using Vibrotactile Cues
N Rokhmanova, O Pearl… - … on Neural Systems …, 2024 - ieeexplore.ieee.org
Wearable sensing using inertial measurement units (IMUs) is enabling portable and
customized gait retraining for knee osteoarthritis. However, the vibrotactile feedback that …
customized gait retraining for knee osteoarthritis. However, the vibrotactile feedback that …
[HTML][HTML] Inertial measurement units and application for remote health care in hip and knee osteoarthritis: Narrative review
MJ Rose, KE Costello, S Eigenbrot… - JMIR Rehabilitation …, 2022 - rehab.jmir.org
Background: Measuring and modifying movement-related joint loading is integral to the
management of lower extremity osteoarthritis (OA). Although traditional approaches rely on …
management of lower extremity osteoarthritis (OA). Although traditional approaches rely on …
Portable, automated foot progression angle gait modification via a proof-of-concept haptic feedback-sensorized shoe
Modifying the foot progression angle (FPA) is a non-pharmacological, non-surgical
treatment option for knee osteoarthritis, however current widespread adoption has been …
treatment option for knee osteoarthritis, however current widespread adoption has been …
Wearable real-time haptic biofeedback foot progression angle gait modification to assess short-term retention and cognitive demand
Foot progression angle gait (FPA) modification is an important part of rehabilitation for a
variety of neuromuscular and musculoskeletal diseases. While wearable haptic biofeedback …
variety of neuromuscular and musculoskeletal diseases. While wearable haptic biofeedback …
Remotely delivered, individualized, and self-directed gait modification for knee osteoarthritis: A pilot trial
Background Gait modification interventions have reported variable results and relied on in-
person biofeedback limiting clinical accessibility. Our objective was to assess a remotely …
person biofeedback limiting clinical accessibility. Our objective was to assess a remotely …