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1.
Artif Intell ; 216: 55-75, 2014 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-25284825

RESUMO

Patients with epilepsy can manifest short, sub-clinical epileptic "bursts" in addition to full-blown clinical seizures. We believe the relationship between these two classes of events-something not previously studied quantitatively-could yield important insights into the nature and intrinsic dynamics of seizures. A goal of our work is to parse these complex epileptic events into distinct dynamic regimes. A challenge posed by the intracranial EEG (iEEG) data we study is the fact that the number and placement of electrodes can vary between patients. We develop a Bayesian nonparametric Markov switching process that allows for (i) shared dynamic regimes between a variable number of channels, (ii) asynchronous regime-switching, and (iii) an unknown dictionary of dynamic regimes. We encode a sparse and changing set of dependencies between the channels using a Markov-switching Gaussian graphical model for the innovations process driving the channel dynamics and demonstrate the importance of this model in parsing and out-of-sample predictions of iEEG data. We show that our model produces intuitive state assignments that can help automate clinical analysis of seizures and enable the comparison of sub-clinical bursts and full clinical seizures.

2.
Nat Neurosci ; 14(12): 1599-605, 2011 Nov 13.
Artigo em Inglês | MEDLINE | ID: mdl-22081157

RESUMO

Arrays of electrodes for recording and stimulating the brain are used throughout clinical medicine and basic neuroscience research, yet are unable to sample large areas of the brain while maintaining high spatial resolution because of the need to individually wire each passive sensor at the electrode-tissue interface. To overcome this constraint, we developed new devices that integrate ultrathin and flexible silicon nanomembrane transistors into the electrode array, enabling new dense arrays of thousands of amplified and multiplexed sensors that are connected using fewer wires. We used this system to record spatial properties of cat brain activity in vivo, including sleep spindles, single-trial visual evoked responses and electrographic seizures. We found that seizures may manifest as recurrent spiral waves that propagate in the neocortex. The developments reported here herald a new generation of diagnostic and therapeutic brain-machine interface devices.


Assuntos
Mapeamento Encefálico , Ondas Encefálicas/fisiologia , Eletrodos Implantados , Eletrônica/instrumentação , Córtex Visual/fisiologia , Animais , Gatos , Estimulação Elétrica/efeitos adversos , Estimulação Elétrica/métodos , Eletroencefalografia/métodos , Potenciais Evocados Visuais , Microeletrodos , Análise Numérica Assistida por Computador , Estimulação Luminosa , Convulsões/etiologia , Convulsões/patologia
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