Separation of multiple evoked responses using differential amplitude and latency variability
Kevin H. Knuth, Wilson A. Truccolo, Steven L. Bressler, Mingzhou Ding
Abstract
In neuroelectrophysiology one records electric potentials or magnetic fields generated by ensembles of synchronously active neurons in response to externally presented stimuli. These evoked responses are often produced by multiple generators in the presence of ongoing background activity. While source localization techniques or current source density estimation are usually used to identify generators, application of blind source separation techniques to obtain independent components has become more popular. We approach this problem by applying the Bayesian methodology to a more physiologically-realistic source model. As it is generally accepted that single trials vary in amplitude and latency, we incorporate this variability into the model. Rather than making the unrealistic assumption that these cortical components are independent of one another, our algorithm utilizes the differential amplitude and latency variability of the evoked waveforms to identify the cortical components. The algorithm is applied to intracortically-recorded local field potentials in monkeys performing a visuomotor task.
Create a lesson
Related papers
T2 estimation from MOLLI acquisitions
Catarina N Carvalho, Andreia S Gaspar, Rita G Nunes et al.
The Magnetic-Resonance-Based, Omni-Directional Hydrophone
Nathan Thyberg, Davi Cavinatto, Katia Oler et al.
Closing the gap: A two-site MLC matching study for Varian TrueBeam Linear Accelerators
Michael Douglass, Corey Bridger, Mitchell Herrick et al.
Geant4 Simulation of an X-ray Beam Monitoring Detector based on plastic scintillators
C. H. Zepeda Fernández, E. Moreno Barbosa, J. M. Arredondo-Velázquez et al.
Dosimetric equivalence of deep learning prostate contours after LDR brachytherapy: pre-declared margins, patient-level acceptance thresholds and the incremental predictive value of DVH indices
Louis-Bernard St-Cyr, Anne Saint-Laurent, José Angel Lesteiro-Tejeda et al.
Fail-closed conformal multiresolution error control for conservative three-dimensional dose remapping in synthetic phantoms
Yuntao Wang