Improving Motor Corticothalamic Communication after Stroke Using Real-Time fMRI Connectivity-Based Neurofeedback

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Abstract

Background. Two thirds of stroke survivors experience motor impairment resulting in long-term disability. The anatomical substrate is often the disruption of cortico-subcortical pathways. It has been proposed that reestablishment of cortico-subcortical communication relates to functional recovery. Objective. In this study, we applied a novel training protocol to augment ipsilesional cortico-subcortical connectivity after stroke. Chronic stroke patients with severe motor impairment were provided online feedback of blood-oxygenation level dependent signal connectivity between cortical and subcortical regions critical for motor function using real-time functional magnetic resonance imaging neurofeedback. Results. In this proof of principle study, 3 out of 4 patients learned to voluntarily modulate cortico-subcortical connectivity as intended. Conclusions. Our results document for the first time the feasibility and safety for patients with chronic stroke and severe motor impairment to self-regulate and augment ipsilesional cortico-subcortical connectivity through neurofeedback using real-time functional magnetic resonance imaging.

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APA

Liew, S. L., Rana, M., Cornelsen, S., Fortunato De Barros Filho, M., Birbaumer, N., Sitaram, R., … Soekadar, S. R. (2016). Improving Motor Corticothalamic Communication after Stroke Using Real-Time fMRI Connectivity-Based Neurofeedback. Neurorehabilitation and Neural Repair, 30(7), 671–675. https://doi.org/10.1177/1545968315619699

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