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Published on: July 4, 2018
Conditioned pain modulation affects the withdrawal reflex pattern to nociceptive stimulation in humans
Fabricio Ariel Jure1, Federico Gabriel Arguissain2, José Alberto Biurrun Manresa3
1Integrative Neuroscience, SMI®, Dept. of Health Science and Technology, Fredrik Bajers Vej 7, Aalborg Ø (9220), Aalborg, Denmark.
Conditioning pain modulation (CPM) reduces the nociceptive withdrawal reflex (NWR). This study found CPM differentially affects muscle activation patterns, suggesting supraspinal control over proximal muscles during protective withdrawal behaviors.
Area of Science:
- Neuroscience
- Physiology
- Pain Research
Background:
- Conditioning pain modulation (CPM) is known to inhibit spinal nociceptive activity.
- Previous research shows CPM reduces the nociceptive withdrawal reflex (NWR).
- The influence of descending control on muscle activation patterns during NWR is not well understood.
Purpose of the Study:
- To investigate the effects of CPM on muscle activation patterns during lower limb NWR.
- To characterize how descending inhibition modulates protective withdrawal behaviors using muscle synergy analysis.
Main Methods:
- Sixteen healthy volunteers underwent the cold-pressor test (CPT) to induce CPM.
- NWR was evoked by electrical foot stimulation before, during, and after CPT.
- Electromyographic (EMG) activity of proximal and distal lower limb muscles was recorded and analyzed using non-negative matrix factorization for muscle synergies.
Main Results:
- Two muscle synergies (Module I and II) adequately described the NWR pattern.
- CPM significantly reduced Module I activation in distal muscles (118-156 ms).
- CPM significantly reduced Module II activation in proximal muscles (150-250 ms).
Conclusions:
- Descending inhibitory pathways modulate NWR through differential muscle recruitment.
- Proximal muscles involved in protective withdrawal appear to be under greater supraspinal control.
- CPM adjusts withdrawal patterns by influencing distinct muscle groups via descending drives.
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