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  1. Limb Preference and Skill Level Dependence During the Imagery of a Whole-Body Movement: A Functional Near Infrared Spectroscopy Study.Selina C. Wriessnegger, Kris Unterhauser & Günther Bauernfeind - 2022 - Frontiers in Human Neuroscience 16.
    In the past years motor imagery turned out to be also an innovative and effective tool for motor learning and improvement of sports performance. Whereas many studies investigating sports MI focusing on upper or lower limbs involvement, knowledge about involved neural structures during whole-body movements is still limited. In the present study we investigated brain activity of climbers during a kinesthetic motor imagery climbing task with different difficulties by means of functional near infrared spectroscopy. Twenty healthy participants were split into (...)
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  • Frequency Specific Cortical Dynamics During Motor Imagery Are Influenced by Prior Physical Activity.Selina C. Wriessnegger, Clemens Brunner & Gernot R. Müller-Putz - 2018 - Frontiers in Psychology 9.
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  • Hemodynamic Signal Changes During Motor Imagery Task Performance Are Associated With the Degree of Motor Task Learning.Naoki Iso, Takefumi Moriuchi, Kengo Fujiwara, Moemi Matsuo, Wataru Mitsunaga, Takashi Hasegawa, Fumiko Iso, Kilchoon Cho, Makoto Suzuki & Toshio Higashi - 2021 - Frontiers in Human Neuroscience 15.
    PurposeThis study aimed to investigate whether oxygenated hemoglobin generated during a motor imagery task is associated with the motor learning level of the task.MethodsWe included 16 right-handed healthy participants who were trained to perform a ball rotation task. Hemodynamic brain activity was measured using near-infrared spectroscopy to monitor changes in oxy-Hb concentration during the BR MI task. The experimental protocol used a block design, and measurements were performed three times before and after the initial training of the BR task as (...)
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  • Neural Suppression Elicited During Motor Imagery Following the Observation of Biological Motion From Point-Light Walker Stimuli.Alice Grazia, Michael Wimmer, Gernot R. Müller-Putz & Selina C. Wriessnegger - 2022 - Frontiers in Human Neuroscience 15.
    Introduction: Advantageous effects of biological motion detection, a low-perceptual mechanism that allows the rapid recognition and understanding of spatiotemporal characteristics of movement via salient kinematics information, can be amplified when combined with motor imagery, i.e., the mental simulation of motor acts. According to Jeannerod’s neurostimulation theory, asynchronous firing and reduction of mu and beta rhythm oscillations, referred to as suppression over the sensorimotor area, are sensitive to both MI and action observation of BM. Yet, not many studies investigated the use (...)
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