Methods and applications have come a long way since then. In the end we will conclude that it is possible to record and analyze synchronized brain and body dynamics related to movement or exercise tasks.Įighty-four years passed since Hans Berger recorded the first human electroencephalogram, thus the creation of EEG ( Berger, 1929 La Vaque, 1999). Additionally, we present various recording systems, EEG electrodes, caps and methods for determinating real/custom electrode positions.
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These descriptions cover suggestions on how to avoid and reduce motion artifacts, hardware, software and techniques for synchronously recording EEG, EMG, kinematics, kinetics, and eye movements during motion. This article attempts to compile and describe relevant methodological solutions that emerged in order to measure body and brain dynamics during motion. Thus, most studies about the human brain have examined activations during static conditions.
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However, there are methodological difficulties which can occur when recording EEG during movement such as movement artifacts. In terms of behavior, this encompasses actions, such as movements that are performed in response to the environment. This is so, because EEG is relatively cheap, easy to wear, light weight and has high temporal resolution. EEG is one of the most popular methods of studying and understanding the processes that underlie behavior. 3Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, AB, CanadaĮEG involves the recording, analysis, and interpretation of voltages recorded on the human scalp which originate from brain gray matter.
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2Digital Sports Group, Pattern Recognition Lab, Department of Computer Science, Friedrich-Alexander-University Erlangen-Nuremberg, Erlangen, Germany.1Department of Sports and Exercise Medicine, Institute of Sport Science and Sport, Friedrich-Alexander-University Erlangen-Nuremberg, Erlangen, Germany.Reis 1 *, Felix Hebenstreit 2, Florian Gabsteiger 2, Vinzenz von Tscharner 3 and Matthias Lochmann 1