Update README.md

Signed-off-by: David Rotermund <54365609+davrot@users.noreply.github.com>
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David Rotermund 2024-02-16 14:32:27 +01:00 committed by GitHub
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@ -96,7 +96,7 @@ $$M_{\infty} = \frac{1}{1+ \exp(-(V+57mV) / 6.2mV)}$$
$$H_{\infty} = \frac{1}{1+ \exp(-(V+81mV) / 4mV)}$$ $$H_{\infty} = \frac{1}{1+ \exp(-(V+81mV) / 4mV)}$$
$$\tau_M = 0.612 ms + \frac{1ms}{\exp(-(V+132mV)/16.7 mV) + \exp(-(V+16.8mV)/18.2 mV)}$$ $$\tau_M = 0.612 ms + \frac{1ms}{\exp(-(V+132mV)/16.7 mV) + \exp((V+16.8mV)/18.2 mV)}$$
if $V < -80 mV$: if $V < -80 mV$:
@ -105,3 +105,10 @@ $$\tau_H = 1ms \exp((V+467mV)/66.6mV)$$
else: else:
$$\tau_H = 28ms + 1ms \exp(-(V+22mV)/10.5mV)$$ $$\tau_H = 28ms + 1ms \exp(-(V+22mV)/10.5mV)$$
## Ca2+- depentdent K+ Conducatance
$$c_\infty = \left( \frac{[Ca^{2+}]}{[Ca^{2+}] + 3 \mu M} \right) \frac{1}{1+\exp(-V+28.3mV)/12.6mV}$$
$$\tau_C = 90.3ms - \frac{75.1ms}{1+\exp(-V+46mV)/22.7mV}$$