By Todd C. Handy
Contemporary advancements within the instruments and methods of knowledge acquisition and research in cognitive electrophysiology.
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Additional info for Brain Signal Analysis: Advances in Neuroelectric and Neuromagnetic Methods
Principles of Topographic Analyses for Electrical Neuroimaging 31 a. GFP waveforms 4 3 2 μV 1 Initial presentation Repeated presentation 0 0 50 100 150 200 250 300 350 400 450 ms b. 3 Reference-free measures and analyses of VEPs in response to initial and repeated presentations of visual objects. (a) The GFP waveforms. Analysis of these waveforms failed to reveal any statistically reliable differences. (b) The global dissimilarity as a function of time (white trace) superimposed on the results of the TANOVA analysis (grayscale intensity plot).
In the case of initial versus repeated object presentations, what these analyses show is that over the 0 to 70 ms, 268 to 350 ms, and 352 to 430 ms time periods one template map better accounts for responses to initial presentations, whereas another map better accounts for responses to repeated presentations. 4c) in order to determine the speciﬁc time ranges when a given experimental condition was better accounted for by one template map versus another. 3b). From these analyses the reader should see how topographic analyses can assist a researcher in identifying and differentiating the neurophysiologic bases of effects without necessitating the a priori selection of either a subset of electrodes or a speciﬁc window of time.
Schetzen M. 1981. Nonlinear system modeling based on the Wiener theory. Proc IEEE 69:1557–73. Schechter I, Butler PD, Zemon VM, Revheim N, Saperstein AM, Jalbrzikowski M, Pasternak R, Silipo G, Javitt DC. 2005. Impairments in generation of early-stage transient visual evoked potentials to magno- and parvocellular-selective stimuli in schizophrenia. Clin Neurophysiol 116:2204–15. Spencer KM, Nestor PG, Niznikiewicz MA, Salisbury DF, Shenton ME, McCarley RW. 2003. Abnormal neural synchrony in schizophrenia.
Brain Signal Analysis: Advances in Neuroelectric and Neuromagnetic Methods by Todd C. Handy