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4 frequency of miniature end-plate potential (mEPP) at the NMJs in Acta1+/Ki mice, compared with those
6 and, although miniature end plate potential (mEPPs) amplitude and frequency were unchanged, these eve
7 ve changes of miniature endplate potentials (mEPPs) and voltage responses to step current pulses in i
10 Exposure to ATP (20 microm) prolonged the mEPP falling phase by 31 +/- 7.5% (values +/- s.d., n =