Algorithmic design of a noise-resistant and efficient closed-loop deep brain stimulation system: A computational approach

被引:6
作者
Karamintziou, Sofia D. [1 ,2 ]
Custodio, Ana Luisa [3 ]
Piallat, Brigitte [4 ,5 ]
Polosan, Mircea [6 ]
Chabardes, Stephan [4 ,5 ,7 ]
Stathis, Pantelis G. [8 ]
Tagaris, George A. [9 ]
Sakas, Damianos E. [10 ]
Polychronaki, Georgia E. [1 ]
Tsirogiannis, George L. [1 ]
David, Olivier [4 ,5 ]
Nikita, Konstantina S. [1 ]
机构
[1] Natl Tech Univ Athens, Sch Elect & Comp Engn, Athens, Greece
[2] Univ Calif Riverside, Dept Mech Engn, Riverside, CA 92521 USA
[3] FCT UNL CMA, Dept Math, Caparica, Portugal
[4] Univ Grenoble Alpes, Grenoble Inst Neurosci, GIN, Grenoble, France
[5] INSERM, U1216, Grenoble, France
[6] Univ Hosp Grenoble, Dept Psychiat, Grenoble, France
[7] Univ Hosp Grenoble, Dept Neurosurg, Grenoble, France
[8] Mediterraneo Hosp, Dept Neurol, Athens, Greece
[9] G Gennimatas Gen Hosp Athens, Dept Neurol, Athens, Greece
[10] Univ Athens, Sch Med, Evangelismos Gen Hosp, Dept Neurosurg, Athens, Greece
来源
PLOS ONE | 2017年 / 12卷 / 02期
关键词
HIGH-FREQUENCY STIMULATION; HUMAN SUBTHALAMIC NUCLEUS; PARKINSONS-DISEASE; NEURONAL OSCILLATIONS; GLOBUS-PALLIDUS; BASAL GANGLIA; NEUROMODULATION; PARAMETERS; SEVERITY; DEVICE;
D O I
10.1371/journal.pone.0171458
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Advances in the field of closed-loop neuromodulation call for analysis and modeling approaches capable of confronting challenges related to the complex neuronal response to stimulation and the presence of strong internal and measurement noise in neural recordings. Here we elaborate on the algorithmic aspects of a noise-resistant closed-loop subthalamic nucleus deep brain stimulation system for advanced Parkinson's disease and treatment-refractory obsessive-compulsive disorder, ensuring remarkable performance in terms of both efficiency and selectivity of stimulation, as well as in terms of computational speed. First, we propose an efficient method drawn from dynamical systems theory, for the reliable assessment of significant nonlinear coupling between beta and high-frequency subthalamic neuronal activity, as a biomarker for feedback control. Further, we present a model-based strategy through which optimal parameters of stimulation for minimum energy desynchronizing control of neuronal activity are being identified. The strategy integrates stochastic modeling and derivative-free optimization of neural dynamics based on quadratic modeling. On the basis of numerical simulations, we demonstrate the potential of the presented modeling approach to identify, at a relatively low computational cost, stimulation settings potentially associated with a significantly higher degree of efficiency and selectivity compared with stimulation settings determined post-operatively. Our data reinforce the hypothesis that model-based control strategies are crucial for the design of novel stimulation protocols at the backstage of clinical applications.
引用
收藏
页数:26
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