Abstract:
Objective: The study aims to characterize the motor unit (MU) loss in spastic biceps brachii muscle (BBM) of chronic stroke survivors before and after botulinum neurotoxi...Show MoreMetadata
Abstract:
Objective: The study aims to characterize the motor unit (MU) loss in spastic biceps brachii muscle (BBM) of chronic stroke survivors before and after botulinum neurotoxin (BoNT) injection. Methods: High-density weighted average (HDWA) motor unit number estimation (MUNE) was employed to estimate the number of functioning motor units of BBMs of eight chronic stroke survivors 1-week before (1st visit) and 3-week after (2nd visit) BoNT injection based on the surface electromyography (sEMG) signals recorded during voluntary contraction and supramaximal electrical stimulation. Result: Significant lower MUNE was estimated from the spastic BBMs compared to the non-spastic MUNEs during two visits. A surprisingly higher MUNE was obtained from the spastic side during the 2nd visit after BoNT injection. Conclusions: The HDWA MUNE technique can be employed to characterize the motor unit loss in spastic muscle caused by upper motor neuro lesions at contraction level up to 30% MVC, but may fail to detect the MU loss caused by the chemodenervation effect of BoNT due to the non-uniform denervation of small and large size MUs. Significance: This study presents the first effort to evaluate the applicability of HDWA MUNE technique to characterize the MU loss in the spastic muscle following stroke and the subsequent BoNT injection for the treatment of post-stroke spasticity. The finding of this study suggests that HDWA MUNE can be a sensitive approach to detect the MU loss in spastic muscles after stroke, but the large inter-subject MUNE variability after the BoNT injection should be interpreted with caution.
Published in: IEEE Transactions on Biomedical Engineering ( Volume: 70, Issue: 3, March 2023)
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- IEEE Keywords
- Index Terms
- Botulinum ,
- Stroke Survivors ,
- Motor Unit ,
- Chronic Stroke ,
- Biceps Brachii ,
- Muscle Spasticity ,
- Number Of Motor Units ,
- Chronic Stroke Survivors ,
- Botulinum Neurotoxin Injection ,
- Motor Unit Number Estimation ,
- Muscle Atrophy ,
- Electrical Stimulation ,
- Voluntary Contraction ,
- Maximal Voluntary Contraction ,
- Surface Electromyography ,
- Contraction Level ,
- Supramaximal Stimulation ,
- Clinical Treatment ,
- Motor Neurons ,
- Nervous System Diseases ,
- Neuropathological Conditions ,
- Mean Percentage Difference ,
- Reinnervation ,
- Spike-triggered Average ,
- Elbow Flexors ,
- Maximal Voluntary Contraction Force ,
- Transcutaneous Electrical Nerve Stimulation ,
- Muscle Of Patients ,
- Modified Ashworth Scale ,
- Histogram Plots
- Author Keywords
- MeSH Terms
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Botulinum ,
- Stroke Survivors ,
- Motor Unit ,
- Chronic Stroke ,
- Biceps Brachii ,
- Muscle Spasticity ,
- Number Of Motor Units ,
- Chronic Stroke Survivors ,
- Botulinum Neurotoxin Injection ,
- Motor Unit Number Estimation ,
- Muscle Atrophy ,
- Electrical Stimulation ,
- Voluntary Contraction ,
- Maximal Voluntary Contraction ,
- Surface Electromyography ,
- Contraction Level ,
- Supramaximal Stimulation ,
- Clinical Treatment ,
- Motor Neurons ,
- Nervous System Diseases ,
- Neuropathological Conditions ,
- Mean Percentage Difference ,
- Reinnervation ,
- Spike-triggered Average ,
- Elbow Flexors ,
- Maximal Voluntary Contraction Force ,
- Transcutaneous Electrical Nerve Stimulation ,
- Muscle Of Patients ,
- Modified Ashworth Scale ,
- Histogram Plots
- Author Keywords
- MeSH Terms