hyperpolarisation response
hyperpolarisation state
hyperpolarisation mechanism
hyperpolarisation effect
hyperpolarisation potential
hyperpolarisation threshold
hyperpolarisation phase
hyperpolarisation level
hyperpolarisation duration
hyperpolarisation of the cell membrane can inhibit action potentials.
during hyperpolarisation, the neuron becomes less likely to fire.
hyperpolarisation is crucial for regulating neuronal excitability.
the process of hyperpolarisation can affect neurotransmitter release.
hyperpolarisation can be induced by various ion channels.
understanding hyperpolarisation helps in studying cardiac function.
hyperpolarisation affects the overall excitability of the tissue.
researchers are investigating the role of hyperpolarisation in pain modulation.
hyperpolarisation can result from increased potassium ion permeability.
inhibitory synapses often lead to hyperpolarisation of the postsynaptic neuron.
hyperpolarisation response
hyperpolarisation state
hyperpolarisation mechanism
hyperpolarisation effect
hyperpolarisation potential
hyperpolarisation threshold
hyperpolarisation phase
hyperpolarisation level
hyperpolarisation duration
hyperpolarisation of the cell membrane can inhibit action potentials.
during hyperpolarisation, the neuron becomes less likely to fire.
hyperpolarisation is crucial for regulating neuronal excitability.
the process of hyperpolarisation can affect neurotransmitter release.
hyperpolarisation can be induced by various ion channels.
understanding hyperpolarisation helps in studying cardiac function.
hyperpolarisation affects the overall excitability of the tissue.
researchers are investigating the role of hyperpolarisation in pain modulation.
hyperpolarisation can result from increased potassium ion permeability.
inhibitory synapses often lead to hyperpolarisation of the postsynaptic neuron.
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