Kaushik K. Majumdar, Ph.D.

Systems Science & Informatics Unit Indian Statistical Institute, Baranagar, West Bengal, India 
Phase synchronization, Brain functions modeling
"Kaushik K Majumdar"
Mean distance: 19.49 (cluster 32)
Cross-listing: Computational Biology Tree

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Bharath RD, Panda R, Raj J, et al. (2019) Machine learning identifies "rsfMRI epilepsy networks" in temporal lobe epilepsy. European Radiology
V KR, Rajagopalan SS, Bhardwaj S, et al. (2018) Machine learning detects EEG microstate alterations in patients living with temporal lobe epilepsy. Seizure. 61: 8-13
Pathak A, Ramesh A, Mitra A, et al. (2018) Automatic seizure detection by modified line length and Mahalanobis distance function Biomedical Signal Processing and Control. 44: 279-287
Dheer P, Chaitanya G, Pizarro D, et al. (2017) Seizure Detection and Network Dynamics of Generalized Convulsive Seizures: Towards Rational Designing of Closed-Loop Neuromodulation. Neuroscience Journal. 2017: 9606213
Nayak CS, Mariyappa N, Majumdar KK, et al. (2017) Heightened Background Cortical Synchrony in Patients With Epilepsy: EEG Phase Synchrony Analysis During Awake and Sleep Stages Using Novel Ensemble Measure. Clinical Eeg and Neuroscience. 1550059417696559
Malali A, Chaitanya G, Gowda S, et al. (2016) Analysis of cortical rhythms in intracranial EEG by temporal difference operators during epileptic seizures Biomedical Signal Processing and Control. 26: 98-108
Majumdar K, Prasad PD, Verma S. (2014) Synchronization implies seizure or seizure implies synchronization? Brain Topography. 27: 112-122
Biswas R, Khamaru K, Majumdar KK. (2014) A Peak Synchronization Measure for Multiple Signals Ieee Transactions On Signal Processing. 62: 4390-4398
Majumdar K. (2014) Simultaneous multi-channel spikes and inverted spikes in focal epileptic ECoG are more after offset than during the seizure Biomedical Signal Processing and Control. 10: 58-64
Prasad PD, Datta SV, Majumdar K. (2013) Enhanced phase and amplitude synchronization toward focal seizure offset. Clinical Eeg and Neuroscience. 44: 16-24
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