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Motor Control Commons

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2025

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Articles 31 - 34 of 34

Full-Text Articles in Motor Control

Normative Performance Test Metrics In Professional Female Club Soccer, Andy Seraphin, Christi Edson, Cory Price, Barrett Jones, Amanda Jagielo, Justin Mullner Mar 2025

Normative Performance Test Metrics In Professional Female Club Soccer, Andy Seraphin, Christi Edson, Cory Price, Barrett Jones, Amanda Jagielo, Justin Mullner

Journal of Sports Medicine and Allied Health Sciences: Official Journal of the Ohio Athletic Trainers Association

Objective: To establish normative ranges in common performance tests for professional women’s club soccer. Setting:1st division professional women’s soccer club in the United States

Participants: Twenty-eight healthy professional women’s soccer players (Age: 27.8 ± 5.1 years; Body Mass: 66.2 ± 6.7 kg). Main Outcome Measures: Countermovement Jump, Isometric Mid-Thigh Pull, and Nordic Hamstring Curl tests were performed to obtain lower body compound strength, power, and eccentric hamstring strength. Paired-samples t tests were used to determine between-limbs differences for each outcome measure. Results: Jump height had a mean of 28.9 ± 4.2 cm. Peak vertical force (IMTP) had a …


Effects Of Added Vestibular Noise On Blindfolded Locomotor Veering, Russell J. Carmichael, Allison Sam, Philip K. Schot Phd Jan 2025

Effects Of Added Vestibular Noise On Blindfolded Locomotor Veering, Russell J. Carmichael, Allison Sam, Philip K. Schot Phd

International Journal of Undergraduate Research and Creative Activities

BACKGROUND: Nearly every fundamentally healthy human, regardless of fitness, age, or gender is incapable of walking in a perfectly straight line when visual information is removed. This is known as veering. Many different potential causes have been examined, but the most persuasive explanation is that without visual input, sensory interference (or noise) accumulates and causes random motor output errors. OBJECTIVE: The aim of this study was to examine veering behavior during blindfolded walking when added vestibular noise (vibration) was applied to the skull at select locations. METHODS: A handheld massager attached at the top of the head or over one …


You’Re Too Slow! Self-Selected Volitional Efforts Reveal Unexploited Neuromuscular Reserve Capacity Compared To Maximal Efforts During Fatiguing, Load Equated Resistance Exercise, Brian Benitez Jan 2025

You’Re Too Slow! Self-Selected Volitional Efforts Reveal Unexploited Neuromuscular Reserve Capacity Compared To Maximal Efforts During Fatiguing, Load Equated Resistance Exercise, Brian Benitez

Theses and Dissertations--Kinesiology and Health Promotion

This investigation examined how movement intent influences neuromuscular excitation strategies during fatiguing resistance exercise, comparing maximal intended concentric efforts versus self-selected volitional efforts during load-equated Smith machine back squat exercise to quantify reserve capacity and characterize underlying neuromuscular mechanisms. Twenty-three resistance-trained participants (12 males, 11 females) completed a repeated-measures design, with replication, across six visits, performing smith machine back squat repetitions-to-failure at 70% 1RM under maximal intent (accelerate rapidly) and volitional intent (self-selected effort) conditions. Maximal voluntary isometric contractions used rapid (instantaneous 10-second effort) and ramp (5-second build-up, 5-second maximal) protocols. Surface electromyography (sEMG) was recorded from vastus lateralis and …


Computational Approaches For Diagnosing Neurological Impairments And Restoring Functional Movement, Serhii Bahdasariants Jan 2025

Computational Approaches For Diagnosing Neurological Impairments And Restoring Functional Movement, Serhii Bahdasariants

Graduate Theses, Dissertations, and Problem Reports (ETD)

Movement is the primary means by which the nervous system converts intention into interaction with the environment. Voluntary limb motion enables standing, walking, reaching, and grasping—actions that underpin self‑care, communication, and economic participation. When diseases or injuries disrupt the pathways that couple neural commands to muscle forces—whether through cortical stroke, spinal cord injury, or peripheral nerve damage—mechanical outcomes such as weakness, loss of coordination, and ultimately reduced mobility emerge. These impairments cascade into secondary complications, increased dependence on caregivers, and diminished quality of life. Quantifying how the lesion alters the mechanics of movement is therefore essential for designing targeted interventions …