This study evaluated changes in brain-muscle coordination in patients with ankle sprain after one session of microneedle-knife therapy. Microneedle-knife therapy is a minimally invasive treatment applied to soft tissues related to the lower leg and foot. Eleven participants completed electroencephalography (EEG) and electromyography (EMG) recordings before and after treatment. During each recording, participants performed ankle dorsiflexion, eversion, and inversion or isometric contraction tasks. The primary analysis examined corticomuscular coupling, which reflects coordination between activity in motor-related brain regions and lower-limb muscles, particularly within the beta frequency band of 15 to 30 Hz.
This was a single-group, pre-post interventional study involving participants with ankle sprain. Each participant received one session of microneedle-knife therapy targeting relevant soft-tissue regions of the lower leg and foot. No other therapeutic intervention was administered as part of the study during the treatment period. Synchronous EEG and EMG recordings were performed before and after microneedle-knife therapy. EEG signals were recorded using a NeuSen W64 wireless EEG acquisition system at a sampling frequency of 1,000 Hz. EMG signals were recorded using a Trigno Wireless EMG System. A common trigger was used to temporally align the EEG and EMG signals. The motor assessment included three ankle tasks: dorsiflexion, eversion, and inversion or isometric contraction. Participants performed the tasks while seated and began each movement after an instruction from the researcher. Each movement lasted approximately 3 seconds and was repeated at least five times. A 1-minute rest period was provided between tasks to reduce fatigue. The tasks were performed in a fixed order: dorsiflexion, eversion, and inversion or isometric contraction. EEG signals from frontal, central, and parietal scalp regions were analyzed, with particular attention to the motor-related C3, C4, and Cz channels. EMG signals were recorded from the tibialis anterior, peroneus longus, extensor digitorum longus, medial gastrocnemius, lateral gastrocnemius, and soleus muscles. For each movement event, the signal segment from 0.5 to 2.0 seconds after the movement instruction was used for analysis. Corticomuscular coupling was assessed using the covariance-based coherence (caCOH) index. The principal analysis focused on mean caCOH within the beta frequency band of 15 to 30 Hz and compared measurements obtained before and after treatment across the three ankle motor tasks.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
11
One session of microneedle-knife therapy was administered to soft-tissue regions related to the affected lower leg and foot. No other therapeutic intervention was administered as part of the study during the treatment period.
The Affiliated Dongyang Hospital of Wenzhou Medical University, Dongyang, Zhejiang, China
Dongyang, Zhejiang, China
Change From Pre-Treatment in Mean Beta-Band Corticomuscular Coupling Measured by caCOH
Mean caCOH within the beta frequency band of 15 to 30 Hz was calculated from synchronized EEG and EMG recordings for each participant during ankle dorsiflexion, eversion, and inversion or isometric contraction tasks. The primary analysis focused on motor-related EEG channels C3 and C4 and task-relevant lower-limb muscles. Change in caCOH was calculated as the post-treatment value minus the pre-treatment value. A positive change indicates increased corticomuscular coupling after treatment.
Time frame: Baseline and immediately after the single microneedle-knife therapy session
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