Forearm rotation (supination/pronation) alters corticospinal excitability to the biceps brachii, but it is unclear whether corticospinal excitability is influenced by joint angle, muscle length, or both. Thus the purpose of this study was to separately examine elbow joint angle and muscle length on corticospinal excitability. Corticospinal excitability to the biceps and triceps brachii was measured using motor evoked potentials (MEPs) elicited via transcranial magnetic stimulation. Spinal excitability was measured using cervicomedullary motor evoked potentials (CMEPs) elicited via transmastoid electrical stimulation. Elbow angles were manipulated with a fixed biceps brachii muscle length (and vice versa) across five unique postures: ) forearm neutral, elbow flexion 90°; ) forearm supinated, elbow flexion 90°; ) forearm pronated, elbow flexion 90°; ) forearm supinated, elbow flexion 78°; and ) forearm pronated, elbow flexion 113°. A musculoskeletal model determined biceps brachii muscle length for , and elbow joint angles () were selected to maintain biceps length across forearm orientations. MEPs and CMEPs were elicited at rest and during an isometric contraction of 10% of maximal biceps muscle activity. At rest, MEP amplitudes to the biceps were largest during supination, which was independent of elbow joint angle. CMEP amplitudes were not different when the elbow was fixed at 90° but were largest in pronation when muscle length was controlled. During an isometric contraction, there were no significant differences across forearm postures for either MEP or CMEP amplitudes. These results highlight that elbow joint angle and biceps brachii muscle length can each independently influence spinal excitability. Changes in upper limb posture can influence the responsiveness of the central nervous system to artificial stimulations. We established a novel approach integrating neurophysiology techniques with biomechanical modeling. Through this approach, the effects of elbow joint angle and biceps brachii muscle length on corticospinal and spinal excitability were assessed. We demonstrate that spinal excitability is uniquely influenced by joint angle and muscle length, and this highlights the importance of accounting for muscle length in neurophysiological studies.
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http://dx.doi.org/10.1152/jn.00620.2018 | DOI Listing |
Sci Data
December 2024
The University of North Carolina at Chapel Hill and North Carolina State University, Joint Department of Biomedical Engineering, Raleigh, 27695, USA.
The role of the human ankle joint in activities of daily living, including walking, maintaining balance, and participating in sports, is of paramount importance. Ankle joint dorsiflexion and plantarflexion functionalities mainly account for ground clearance and propulsion power generation during locomotion tasks, where those functionalities are driven by the contraction of ankle joint skeleton muscles. Studies of corresponding muscle contractility during ankle dynamic functions will facilitate us to better understand the joint torque/power generation mechanism, better diagnose potential muscular disorders on the ankle joint, or better develop wearable assistive/rehabilitative robotic devices that assist in community ambulation.
View Article and Find Full Text PDFJ Craniofac Surg
October 2024
Department of Neurosurgery, Northern Jiangsu People's Hospital, Northern Jiangsu People's Hospital affiliated Yangzhou University.
Objective: To explore the anatomic characteristics of C7 nerve localization, course, and length during cross-transfer surgery of the C7 nerve through the anterior vertebral approach and investigate the feasibility, safety, and clinical efficacy of C7 nerve transfer surgery through the anterior vertebral approach for the treatment of central upper limb spastic paralysis.
Methods: Four fresh-frozen adult head and neck samples were selected. C7 nerve transfer surgery was simulated through the anterior vertebral approach.
Neurosurg Rev
December 2024
Evidence-Based Nursing-Center, School of Nursing, Lanzhou University, 730010, No.28, West Yan Road, Chengguan District, Lanzhou, Gansu Province, China.
Stroke is the second leading cause of death and the third-leading cause of disability in the world. The skeletal muscles play a key role in disability following stroke. Although many studies have reported the prevalence and risk factors of sarcopenia in patients with stroke, the results have not been synthesized.
View Article and Find Full Text PDFVet Sci
November 2024
College of Animal Science and Technology, Jiangxi Agricultural University, Nanchang 330045, China.
The duck industry is vital for supplying high-quality protein, making research into the development of duck skeletal muscle critical for improving meat and egg production. In this study, we leveraged Oxford Nanopore Technologies (ONT) sequencing to perform full-length transcriptome sequencing of myoblasts harvested from the leg muscles of duck embryos at embryonic day 13 (E13), specifically examining both the proliferative (GM) and differentiation (DM) phases. Our analysis identified a total of 5797 novel transcripts along with 2332 long non-coding RNAs (lncRNAs), revealing substantial changes in gene expression linked to muscle development.
View Article and Find Full Text PDFToxins (Basel)
December 2024
Department of Neurology, Tokushima University, Tokushima 770-8503, Japan.
Oromandibular dystonia (OMD) is a focal dystonia characterized by contractions of the masticatory, lingual, and other muscles of the stomatognathic system. We conducted a systematic review and meta-analysis to elucidate the impact and safety of botulinum toxin in OMD. The eligibility criteria were full-length original articles that provided data evaluating the efficacy and adverse effects of onabotulinumtoxinA injections in patients with OMD.
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