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Monitoring Local Regional Hemodynamic Signal Changes during Motor Execution and Motor Imagery Using Near-Infrared Spectroscopy. | LitMetric

AI Article Synopsis

  • The study aimed to identify where motor-related blood flow changes occur in the brain during both motor execution (ME) and motor imagery (MI) using near-infrared spectroscopy (NIRS), which is more practical than fMRI.
  • Twenty right-handed healthy participants performed a finger tapping task under different conditions while their brain activity was monitored for changes in oxygenated hemoglobin (oxy-Hb) levels.
  • The findings showed significant increases in oxy-Hb in the somatosensory motor cortex (SMC) during ME with the opposite hand, while the supplementary motor area (SMA) and premotor area (PMA) showed increases across all conditions, but without significant effects.

Article Abstract

The aim of this study was to clarify the topographical localization of motor-related regional hemodynamic signal changes during motor execution (ME) and motor imagery (MI) by using near-infrared spectroscopy (NIRS), as this technique is more clinically expedient than established methods (e.g., fMRI). Twenty right-handed healthy subjects participated in this study. The experimental protocol was a blocked design consisting of 3 cycles of 20 s of task performance and 30 s of rest. The tapping sequence task was performed with their fingers under 4 conditions: ME and MI with the right or left hand. Hemodynamic brain activity was measured with NIRS to monitor changes in oxygenated hemoglobin (oxy-Hb) concentration. Oxy-Hb in the somatosensory motor cortex (SMC) increased significantly only during contralateral ME and showed a significant interaction between task and hand. There was a main effect of hand in the left SMC. Although there were no significant main effects or interactions in the supplemental motor area (SMA) and premotor area (PMA), oxy-Hb increased substantially under all conditions. These results clarified the topographical localization by motor-related regional hemodynamic signal changes during ME and MI by using NIRS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4707267PMC
http://dx.doi.org/10.3389/fphys.2015.00416DOI Listing

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