Table 1 Parameter sets used for simulation of potentials depicted in Fig. 7a): the one used (Value Set 1), the alternative one (Value Set 2) to produce the same potentials, and the one (Value Set 3) to produce the same fire patterns as in Fig. 7a).

From: Simple capacitor-switch model of excitatory and inhibitory neuron with all parts biologically explained allows input fire pattern dependent chaotic oscillations

Parameter

Parameter sets and their alternatives for the same voltage on C and potential on Routput as in Fig. 7a)

Similar parameter set for at least the same fire patterns as in Fig. 7a)*

Value Set 1

Value Set 2

Value Set 3

DCinput max voltage

+20 V

+20 V

+10 V

DCinput frequency

200 Hz

200 Hz

200 Hz

DCinput duty cycle

5%

5%

5%

Rinput resistance

6 Ω

60 Ω

6 Ω

Rout resistance

10 Ω

100 Ω

10 Ω

The base unit

Rground resistance

1000 Ω

10 000 Ω

1000 Ω

C capacitance

500 nF

50 nF

500 nF

S upper bound threshold voltage (VS, upper bound)

+10 V

+10 V

+5 V

S lower bound threshold voltage (VS, lower bound)

−5 V

−5 V

−2.5 V

DCwithdraw voltage (VDC withdraw)

+20 V

+20 V

+10 V

  1. The parameter sets are derived for diodes modeled by the ideal diode model. These would slightly differ for other models, like the Shockley diode model.
  2. *The recorded potential could differ from the values in Fig. 7a) by a multiplication constant.