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A minimally invasive neurostimulation method for controlling abnormal synchronisation in the neuronal activity.
- Source :
-
PLoS computational biology [PLoS Comput Biol] 2018 Jul 19; Vol. 14 (7), pp. e1006296. Date of Electronic Publication: 2018 Jul 19 (Print Publication: 2018). - Publication Year :
- 2018
-
Abstract
- Many collective phenomena in Nature emerge from the -partial- synchronisation of the units comprising a system. In the case of the brain, this self-organised process allows groups of neurons to fire in highly intricate partially synchronised patterns and eventually lead to high level cognitive outputs and control over the human body. However, when the synchronisation patterns are altered and hypersynchronisation occurs, undesirable effects can occur. This is particularly striking and well documented in the case of epileptic seizures and tremors in neurodegenerative diseases such as Parkinson's disease. In this paper, we propose an innovative, minimally invasive, control method that can effectively desynchronise misfiring brain regions and thus mitigate and even eliminate the symptoms of the diseases. The control strategy, grounded in the Hamiltonian control theory, is applied to ensembles of neurons modelled via the Kuramoto or the Stuart-Landau models and allows for heterogeneous coupling among the interacting unities. The theory has been complemented with dedicated numerical simulations performed using the small-world Newman-Watts network and the random ErdÅ‘s-Rényi network. Finally the method has been compared with the gold-standard Proportional-Differential Feedback control technique. Our method is shown to achieve equivalent levels of desynchronisation using lesser control strength and/or fewer controllers, being thus minimally invasive.<br />Competing Interests: The authors have declared that no competing interests exist.
- Subjects :
- Brain cytology
Humans
Microelectrodes
Models, Neurological
Neurodegenerative Diseases complications
Neurodegenerative Diseases physiopathology
Neurodegenerative Diseases surgery
Parkinson Disease complications
Parkinson Disease physiopathology
Parkinson Disease surgery
Parkinson Disease therapy
Seizures etiology
Tremor etiology
Brain physiology
Brain physiopathology
Cortical Synchronization
Deep Brain Stimulation methods
Minimally Invasive Surgical Procedures methods
Neurodegenerative Diseases therapy
Neurons physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1553-7358
- Volume :
- 14
- Issue :
- 7
- Database :
- MEDLINE
- Journal :
- PLoS computational biology
- Publication Type :
- Academic Journal
- Accession number :
- 30024878
- Full Text :
- https://doi.org/10.1371/journal.pcbi.1006296