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  5. Uncovering the underlying mechanisms and whole-brain dynamics of deep brain stimulation for Parkinson’s disease

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Article
en
2017

Uncovering the underlying mechanisms and whole-brain dynamics of deep brain stimulation for Parkinson’s disease

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0 Files

en
2017
Vol 7 (1)
Vol. 7
DOI: 10.1038/s41598-017-10003-y

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Karl Friston
Karl Friston

University College London

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Victor M. Saenger
Joshua Kahan
Thomas Foltynie
+17 more

Abstract

Deep brain stimulation (DBS) for Parkinson's disease is a highly effective treatment in controlling otherwise debilitating symptoms. Yet the underlying brain mechanisms are currently not well understood. Whole-brain computational modeling was used to disclose the effects of DBS during resting-state functional Magnetic Resonance Imaging in ten patients with Parkinson's disease. Specifically, we explored the local and global impact that DBS has in creating asynchronous, stable or critical oscillatory conditions using a supercritical bifurcation model. We found that DBS shifts global brain dynamics of patients towards a Healthy regime. This effect was more pronounced in very specific brain areas such as the thalamus, globus pallidus and orbitofrontal regions of the right hemisphere (with the left hemisphere not analyzed given artifacts arising from the electrode lead). Global aspects of integration and synchronization were also rebalanced. Empirically, we found higher communicability and coherence brain measures during DBS-ON compared to DBS-OFF. Finally, using our model as a framework, artificial in silico DBS was applied to find potential alternative target areas for stimulation and whole-brain rebalancing. These results offer important insights into the underlying large-scale effects of DBS as well as in finding novel stimulation targets, which may offer a route to more efficacious treatments.

How to cite this publication

Victor M. Saenger, Joshua Kahan, Thomas Foltynie, Karl Friston, Tipu Z. Aziz, Alexander L. Green, Tim J. van Hartevelt, Joana Cabral, Angus Stevner, Henrique M. Fernandes, Laura Mancini, John S. Thornton, Tarek Yousry, Patricia Limousin, Ludvic Zrinzo, Marwan Hariz, Paulo Marques, Nuno Sousa, Morten L. Kringelbach, Gustavo Deco (2017). Uncovering the underlying mechanisms and whole-brain dynamics of deep brain stimulation for Parkinson’s disease. , 7(1), DOI: https://doi.org/10.1038/s41598-017-10003-y.

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Publication Details

Type

Article

Year

2017

Authors

20

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1038/s41598-017-10003-y

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