Synaptic transmission in the nervous system involves the activation of receptor proteins that permit rapid transmembrane fluxes of ions. Ionic gradients across the membrane determine the direction and driving force for the flow of ions and are therefore crucial in setting the properties of synaptic transmission. These ionic gradients are established by a variety of mechanisms, including pump and transporter proteins. However, the gradients can be affected by periods of neural activity, which in turn, are predicted to influence the properties of ongoing synaptic transmission. In this thesis I have examined the concentration gradients of two ions that play a fundamental role in synaptic transmission: chloride ions (Cl-) and protons (H+). Typ...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
Oscillatory network activity arises from interactions between synaptic and intrinsic membrane proper...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends criti...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Fast postsynaptic inhibition in the brain is mediated by ionotropic GABAA receptors (GABAARs), which...
Fast postsynaptic inhibition in the brain is mediated by ionotropic GABAA receptors (GABAARs), which...
Changes in membrane voltage brought about by ion fluxes through voltage and transmitter-gated channe...
It is becoming increasingly apparent that the strength of GABAergic synaptic transmission is dynamic...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
Oscillatory network activity arises from interactions between synaptic and intrinsic membrane proper...
In the CNS, prolonged activation of GABAA receptors (GABAARs) has been shown to evoke biphasic posts...
The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends criti...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
The overall aim of the present thesis is to clarify the control of intracellular chloride homeostasi...
Fast postsynaptic inhibition in the brain is mediated by ionotropic GABAA receptors (GABAARs), which...
Fast postsynaptic inhibition in the brain is mediated by ionotropic GABAA receptors (GABAARs), which...
Changes in membrane voltage brought about by ion fluxes through voltage and transmitter-gated channe...
It is becoming increasingly apparent that the strength of GABAergic synaptic transmission is dynamic...
The impact of GABAergic transmission on neuronal excitability depends on the Cl--gradient across mem...
Fast synaptic inhibition is a critical determinant of neuronal output, with subcellular targeting of...
Chloride homeostasis is a critical determinant of the strength and robustness of inhibition mediated...
Chloride homeostasis has a pivotal role in controlling neuronal excitability in the adult brain and ...
Oscillatory network activity arises from interactions between synaptic and intrinsic membrane proper...