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scientificComputing/pointprocesses/lecture/pointprocesses-chapter.tex
2020-01-20 10:50:22 +01:00

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\documentclass[12pt]{book}
\input{../../header}
\renewcommand{\exercisesolutions}{here} % 0: here, 1: chapter, 2: end
\lstset{inputpath=../code}
\graphicspath{{figures/}}
\typein[\pagenumber]{Number of first page}
\typein[\chapternumber]{Chapter number}
\setcounter{page}{\pagenumber}
\setcounter{chapter}{\chapternumber}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\begin{document}
\include{pointprocesses}
\section{TODO}
\begin{itemize}
\item Explain difference stationary versus non-stationary point process
\item Show different types of ISI histograms (regular, noisy, poisson, bursty, locking)
\item Multitrial firing rates
\item Better explain difference between ISI method and PSTHes. The
latter is dependent on precision of spike times the former not.
\item Choice of bin width for PSTH, kernel width, also in relation sto
stimulus time scale
\item Kernle firing rate: discuss different kernel shapes, in
particular causal kernels (gamma, exponential), relation to synaptic
potentials
\end{itemize}
\end{document}