6533b7d7fe1ef96bd12685cb

RESEARCH PRODUCT

Kinesthetic motor imagery training modulates frontal midline theta during imagination of a dart throw.

E. WeberMichael Doppelmayr

subject

AdultMalemedicine.medical_specialtyBrain activity and meditationElectroencephalography050105 experimental psychology03 medical and health sciencesYoung Adult0302 clinical medicinePhysical medicine and rehabilitationMotor imageryPhysiology (medical)medicineHumans0501 psychology and cognitive sciencesAttentionTheta RhythmKinesthesisCommunicationmedicine.diagnostic_testProprioceptionbusiness.industryGeneral Neuroscience05 social sciencesKinesthetic learningFrontal LobeNeuropsychology and Physiological PsychologyFrontal lobeImaginationFemalePsychologybusinessMotor learningFunctional magnetic resonance imaginghuman activities030217 neurology & neurosurgeryPsychomotor Performance

description

Motor imagery (MI) is a frequently used and effective method for motor learning in sports as well as in other domains. Electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) studies indicated that experts within a certain sport exhibit a more pronounced brain activity during MI as compared to novices. Similar to the execution, during MI the motor sequence has to be planned. Thus, the frontal attentional system, in part represented by the frontal midline theta (4-7Hz), is closely related to these processes and presumably plays a major role in MI as well. In this study, a MI dart training and its impact on frontal midline theta activity (fmt) during MI are examined. 53 healthy subjects with no prior dart experience were randomly allocated to a kinesthetic training group (KinVis) or to a control group (Control). Both groups performed 15 training sessions. While in the KinVis group dart throwing was accompanied by MI, the Control group trained without MI. Dart performance and fmt activity during MI within the first and the 15th session were compared. As expected, the performance increase was more pronounced in the KinVis group. Furthermore, frontal theta amplitude was significantly increased in the KinVis group during MI in the 15th training session as compared to the baseline. These results confirm the effectivity of MI. The enhanced fmt activity in the KinVis group can be interpreted as a better allocation of the requested resources in the frontal attentional network after MI.

10.1016/j.ijpsycho.2016.11.002https://pubmed.ncbi.nlm.nih.gov/27825901