Related Experiment Video
Updated: Sep 20, 2025

Bilateral Assessment of the Corticospinal Pathways of the Ankle Muscles Using Navigated Transcranial Magnetic Stimulation
Published on: February 19, 2019
Modulation of motor unit recruitment threshold and common synaptic inputs in triceps surae muscles: effects of ankle
Xin Sienna Yu1,2, Jackson T Levine1,3, José L Pons1,2,3
1Legs and Walking Lab, Shirley Ryan AbilityLab, Chicago, Illinois, United States.
Abstract:
The objective of this study was to investigate how altering muscle length by changing ankle position affects force control, motor unit recruitment threshold, and motor unit coherence within and across triceps surae muscles. Sixteen healthy young adults performed isometric plantarflexion (PF) at three ankle positions with the ankle plantarflexed at 20° (PF20°), at the neural position (PF0°), and dorsiflexed at 20° (DF20°). High-density surface electromyography was used to record the medial and lateral heads of the gastrocnemius muscle (GM and GL) and the medial and lateral portions of the soleus muscle (SL and SM). Motor unit cumulative spike trains (MUCST) were used to calculate intramuscular, intermuscular, and Force-MUCST coherence in the delta (0-5 Hz), alpha (5-15 Hz), and beta (15-35 Hz) frequency bands. Recruitment thresholds of motor units matched across positions decreased when shifting the ankle from a shortened to lengthened position in GM, SL, and SM, while remaining unchanged and highest in GL. This change in ankle position also led to increased GM-SM coherence and intramuscular coherence in SM and SL in the delta band and improvements in force steadiness. In contrast, alpha band intramuscular coherence and Force-MUCST coherence decreased. Minimal changes were observed in beta band coherence across positions. This study reveals a neuromuscular control strategy that modulates motor unit recruitment and common synaptic inputs of triceps surae to maintain force output during isometric plantarflexions at varying muscle lengths.NEW & NOTEWORTHY This study demonstrates that changes in ankle position alter muscle length, impact force steadiness, motor unit recruitment thresholds, and oscillatory common inputs in the triceps surae. It highlights a neuromuscular control strategy that integrates afferent feedback, muscle mechanical properties, and descending inputs to synergistic plantarflexors. These findings provide a foundation for further investigation into muscle coordination during multijoint, dynamic movements.
Related Concept Videos
Motor Unit Stimulation
The latent period of contraction marks the onset of excitation-contraction coupling, when the action potential propagates across the sarcolemma, preparing the muscle fibers for contraction. As the fibers enter the contraction phase, the...
Somatic Spinal Reflexes
One of the most well-known somatic spinal reflexes is the stretch reflex, which is activated by the sudden stretching of a muscle. This reflex involves the activation of specialized sensory receptors called muscle spindles, which are located in the muscle tissue and detect changes in the length and speed of muscle contractions. When a muscle is suddenly...
Muscle Stimulation Frequency
Wave summation
At low firing rates, motor neurons induce individual twitch contractions in muscle fibers. These twitches...
Neuromuscular Junction And Blockade
Relaxation of Skeletal Muscles
When an action potential reaches the axon terminal, it depolarizes the membrane and opens voltage-gated sodium channels. Sodium ions enter the cell, further depolarizing the presynaptic membrane. This depolarization causes voltage-gated calcium channels to open....
Motor Units
Motor units come in different sizes, with smaller units...

