Deep learning for enhanced prosthetic control: Real-time motor intent decoding for simultaneous control of artificial limbs

J Zbinden, J Molin… - IEEE Transactions on …, 2024 - ieeexplore.ieee.org
The development of advanced prosthetic devices that can be seamlessly used during an
individual's daily life remains a significant challenge in the field of rehabilitation engineering …

Novel wearable device for mindful sensorimotor training: Integrating motor decoding and somatosensory stimulation for neurorehabilitation

M Buist, S Damercheli, J Zbinden… - … on Neural Systems …, 2024 - ieeexplore.ieee.org
Sensorimotor impairment is a prevalent condition requiring effective rehabilitation strategies.
This study introduces a novel wearable device for Mindful Sensorimotor Training (MiSMT) …

Intuitive control of additional prosthetic joints via electro-neuromuscular constructs improves functional and disability outcomes during home use—a case study

J Zbinden, EJ Earley… - Journal of Neural …, 2024 - iopscience.iop.org
Objective. The advent of surgical reconstruction techniques has enabled the recreation of
myoelectric controls sites that were previously lost due to amputation. This advancement is …

Towards Pose Invariant Bionic Limb Control: A comparative study of two unsupervised domain adaptation methods

A Hannius, R Laezza, J Zbinden - Authorea Preprints, 2024 - techrxiv.org
Bionic limb control through myoelectric pattern recognition, offering intuitive decoding of
motor intent, can improve the quality of life for individuals with amputations. However, most …

From sequential to simultaneous prosthetic control: Decoding simultaneous finger movements from individual ground truth EMG patterns

J Zbinden, S Edwards - … Conference of the IEEE Engineering in …, 2024 - ieeexplore.ieee.org
Myoelectric bionic limbs hold the promise of restoring functionality and improving life quality
for people with amputation. With recent advances in surgical reconstruction, which created …