\begin{table}[ht!] % \fontsize{10pt}{10pt} \centering % \begin{tabular}[x]{@{}l@{}} \\ \end{tabular} \linespread{1.}\selectfont \fontsize{10pt}{12pt}\selectfont{ \begin{tabular}{c|c|c|c|c|c|c|c|c|c|} % in mS/cm^2 & \begin{tabular}[x]{@{}c@{}} RS\\Pyra-\\midal \end{tabular} & \begin{tabular}[x]{@{}c@{}} RS\\Inhib-\\itory\end{tabular} & FS & \begin{tabular}[x]{@{}c@{}} Cb\\Stellate \end{tabular}& \begin{tabular}[x]{@{}c@{}}Cb\\Stellate\\+\Kv \end{tabular} & \begin{tabular}[x]{@{}c@{}}Cb\\Stellate\\\(\Delta\)\Kv \end{tabular} & STN &\begin{tabular}[x]{@{}c@{}} STN\\+\Kv \end{tabular} &\begin{tabular}[x]{@{}c@{}} STN\\\(\Delta\)\Kv \end{tabular} \\\Xhline{3\arrayrulewidth} \(g_{Na}\) & 56 & 10 & 58 & 3.4 & 3.4 & 3.4 & 49 & 49 & 49 \\ \(g_{K}\) & 5.4 & 1.89 & 3.51 & 9.0556 & 8.15 &9.0556 & 57 & 56.43 & 57 \\ \(g_{K_V1.1}\) & 0.6 & 0.21 & 0.39 & - & 0.90556 & 1.50159 & - & 0.57 & 0.5 \\ \(g_{A}\) & - & - & - & 15.0159 & 15.0159 & - & 5 & 5 & - \\ \(g_{M}\) & 0.075 & 0.0098 &0.075 & - & - & - & - & - & - \\ \(g_{L}\) & - & - & - & - & - & - & 5 & 5 & 5 \\ \(g_{T}\) & - & - & - & 0.45045 & 0.45045 & 0.45045 & 5 & 5 & 5 \\ \(g_{Ca,K}\) & - & - & - & - & - & - & 1 & 1 & 1 \\ \(g_{Leak}\) &0.0205 & 0.0205 & 0.038 & 0.07407 & 0.07407 & 0.07407 & 0.035 & 0.035 & 0.035 \\%\Xhline{1\arrayrulewidth} \(\tau_{max_M}\)& 608 & 934 & 502 & - & - & - & - & - & - \\ \(C_m\) & 118.44 & 119.99 & 101.71& 177.83 & 177.83 & 177.83 & 118.44& 118.44& 118.44 \\ \end{tabular}} \caption[Cell properties and conductances of neuronal models]{Cell properties and conductances of regular spiking pyramidal neuron (RS Pyramidal), regular spiking inhibitory neuron (RS Inhibitory), fast spiking neuron (FS), cerebellar stellate cell (Cb Stellate), with additional \(I_{K_V1.1}\) (Cb Stellate \(\Delta\)\Kv) and with \(I_{K_V1.1}\) replacement of \(I_A\) (Cb Stellate \(\Delta\)\Kv), and subthalamic nucleus neuron (STN), with additional \(I_{K_V1.1}\) (STN \(\Delta\)\Kv) and with \(I_{K_V1.1}\) replacement of \(I_A\) (STN \Kv) models. All conductances are given in \(mS/cm^2\). Capacitances (\(C_m\)) and \(\tau_{max_p}\) are given in \(pF\) and \(ms\) respectively.} \label{tab:g} \end{table}