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Frontiers in Human Neuroscience· 2016Q1

Transcranial Direct Current Stimulation Combined with Aerobic Exercise to Optimize Analgesic Responses in Fibromyalgia: A Randomized Placebo-Controlled Clinical Trial

Mariana Emerenciano de Mendonça, Marcel Simis, Luanda Collange Grecco, Linamara Rizzo Battistella et al.

Short summary

Combining transcranial direct current stimulation (tDCS) with aerobic exercise (AE) significantly reduced pain intensity in fibromyalgia patients more than either intervention alone, with effect sizes greater than 0.55.

AI-generated from the title and abstract; the full text is not read.

Key points

  • The combination of tDCS and aerobic exercise significantly reduced pain intensity in fibromyalgia patients compared to AE alone (p=0.007) and tDCS alone (p=0.0056).
  • Post-hoc analysis revealed differences between the tDCS/AE group and the tDCS-only group after one week and one month of intervention.
  • The combined treatment showed the greatest response in improving anxiety and mood levels.
  • No significant differences in motor cortex plasticity, as assessed by TMS, were observed across the three groups (tDCS+AE, AE only, tDCS only).

AI-generated from the title and abstract; the full text is not read.

Abstract

UNLABELLED: Fibromyalgia is a chronic pain syndrome that is associated with maladaptive plasticity in neural central circuits. One of the neural circuits that are involved in pain in fibromyalgia is the primary motor cortex. We tested a combination intervention that aimed to modulate the motor system: transcranial direct current stimulation (tDCS) of the primary motor cortex (M1) and aerobic exercise (AE). In this phase II, sham-controlled randomized clinical trial, 45 subjects were assigned to 1 of 3 groups: tDCS + AE, AE only, and tDCS only. The following outcomes were assessed: intensity of pain, level of anxiety, quality of life, mood, pressure pain threshold, and cortical plasticity, as indexed by transcranial magnetic stimulation. There was a significant effect for the group-time interaction for intensity of pain, demonstrating that tDCS/AE was superior to AE [F (13, 364) = 2.25, p = 0.007] and tDCS [F (13, 364) = 2.33, p = 0.0056] alone. Post-hoc adjusted analysis showed a difference between tDCS/AE and tDCS group after the first week of stimulation and after 1 month intervention period (p = 0.02 and p = 0.03, respectively). Further, after treatment there was a significant difference between groups in anxiety and mood levels. The combination treatment effected the greatest response. The three groups had no differences regarding responses in motor cortex plasticity, as assessed by TMS. The combination of tDCS with aerobic exercise is superior compared with each individual intervention (cohen's d effect sizes > 0.55). The combination intervention had a significant effect on pain, anxiety and mood. Based on the similar effects on cortical plasticity outcomes, the combination intervention might have affected other neural circuits, such as those that control the affective-emotional aspects of pain. TRIAL REGISTRATION: (www.ClinicalTrials.gov), identifier NTC02358902.

The authors' abstract, as published at the source. Frontiers in Human Neuroscience, 2016 · DOI ↗

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Field: Neurology (Neuroscience)

NeurologyNeuroscience