Aftereffects of alpha transcranial alternating current stimulation over the primary sensorimotor cortex on cortical processing of pain

Последействие транскраниальной стимуляции переменным током альфа-частоты над первичной сенсомоторной корой на корковую обработку боли
Weiwei Peng, Richu Jin, Yilin Zhan, Wutao Lou, Xiaoyun Li
2022-10-26

alpha-tACSfunctional connectivityfunctional magnetic resonance imagingpain processingprimary sensorimotor cortex
ABSTRACT: Transcranial alternating current stimulation (tACS) is believed to modulate brain oscillations in a frequency-specific manner. Given the correlation between sensorimotor α-oscillations and pain perception, tACS that targets sensorimotor α-oscillations has the potential to reduce pain. Therefore, this study sought to determine the aftereffects of α-tACS over unilateral primary sensorimotor cortex (SM1) on the perceptual and neural responses to noxious painful stimulation of the contralateral hand. Using a double-blinded and sham-controlled design, 60 healthy participants were recruited to receive either α-tACS or sham stimulation of unilateral SM1 through an electrode montage in a 4 × 1 ring configuration. Neural responses to laser nociceptive stimuli were assessed using functional magnetic resonance imaging immediately before and after α-tACS intervention. Perceptual reports were recorded simultaneously. Compared with sham stimulation, α-tACS attenuated bilateral SM1 responses to painful stimuli delivered to the contralateral hand. Although α-tACS did not exert direct effect on subjective pain perception, it can indirectly decrease ratings of pain perception by reducing brain activity within the targeted SM1. Moreover, α-tACS decreased the functional connectivity between the targeted SM1 and a network of regions that are crucially involved in pain processing, including the middle cingulate cortex, contralateral somatosensory cortex, and dorsolateral prefrontal cortex. These results demonstrated that after α-tACS applied over the unilateral SM1 does attenuate subsequent neural processing of pain within bilateral sensorimotor regions as well as sensorimotor functional connectivity. The findings provide evidence that sensorimotor α-oscillations directly affect pain processing and support the application of sensorimotor α-tACS for inducing pain analgesia.
1
Compared with sham stimulation, α-tACS attenuated bilateral primary sensorimotor cortex responses to laser-induced pain in the contralateral hand.
2
In a double-blinded, sham-controlled study of 60 healthy participants, unilateral sensorimotor α-tACS was applied using a 4 × 1 ring electrode montage.
3
The findings indicate that sensorimotor α-oscillations influence pain processing and support α-tACS over sensorimotor cortex as a potential analgesic intervention.
4
α-tACS did not directly change subjective pain perception but indirectly reduced pain ratings by decreasing activity in the targeted sensorimotor cortex.
5
α-tACS reduced functional connectivity between the targeted sensorimotor cortex and pain-related regions, including the middle cingulate cortex, contralateral somatosensory cortex, and dorsolateral prefrontal cortex.

Pain processing in the bilateral sensorimotor cortex following α-tACS over unilateral primary sensorimotor cortex

Aftereffects of sensorimotor α-tACS on neural and perceptual responses to noxious stimulation, including bilateral SM1 activity, pain-related functional connectivity, and pain ratings

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2022-10-26
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Weiwei Peng
Richu Jin
Yilin Zhan
Wutao Lou
Xiaoyun Li
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