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1 nts after 2 ms voltage pulses that triggered action currents.
2 (z) to reflect the circular component of the action currents.
3 n, we simultaneously recorded Na(+) flux and action currents along the proximal axonal length.
4                               Pyramidal cell action currents also contributed to the field.
5           In the first minute after sealing, action currents are variable in shape and size, presumab
6  in turn determine the extent to which nodal action currents can be short-circuited underneath the my
7 t role in the development and propagation of action currents during stimulation at the apex.
8  presence of GABA, 1 micromol/L SP increased action current frequency by a factor of 2.7+/-0.6 (n=5,
9  extracellular glucose there is an increased action current frequency concomitant with decreased sing
10 d in cell-attached configuration spontaneous action currents from hippocampal stratum lacunosum-molec
11 otentials at 2 Hz, we found that peak inward action current in IB4 +ve neurones was reduced, whereas
12 .8 in IB4 +ve neurones, and the reduction in action current in IB4 +ve neurones with repetitive stimu
13 s a simplified description of the effects of action currents in extracellular space as well as resist
14  when brief, local GABA application elicited action currents in GnRH neurons from fed and fasted mice
15 , and the effect of repetitive activation on action currents in IB4 +ve and ve neurones.
16                   In support of this notion, action currents in postsynaptic acousticolateralis neuro
17                         Lack of postsynaptic action currents in the mutants suggests that the remaini
18     Here, we discuss potential mechanisms of action, current knowledge and future perspectives of cli
19  to produce a time series of two-dimensional action current maps.
20                                The resulting action currents produce an electrical inhibition that co
21 usly electrically active and generating Ca2+ action currents that were largely insensitive to diazoxi
22 o the distinct contributions of synaptic and action currents to the EEG signal and sheds light on the

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