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5 els with a time constant of approximately 12 microsec has been recorded with a high-speed patch-clamp
6 rd open-ear leading for 4 kHz stimuli and 15 microsec toward the opposite-ear leading for 8 kHz stimu
7 identified by minimal synaptic jitter (<150 microsec) and divided into two groups: CAP-sensitive (n
8 Omega), and short time constants (about 200 microsec) as a consequence of the activation at rest of
9 cated the release of 3000 molecules over 200 microsec, much smaller and faster events than quanta ass
10 stimulation over 12 weeks (2.5 to 5 V, 240- microsec pulse duration, 35 Hz, 3 to 6 pulses per burst,
11 sinus was stimulated electrically (120V, 250 microsec duration, 0.3 Hz), and neurons of the trigemino
12 lated for electrical stimulation (150 V; 250 microsec duration; 0.5, 1, 2, 5, 10 and 20 Hz) and the d
14 rains were similar (t1/2 approximately = 300 microsec), whereas the rate of re-reduction sensitive to
15 0 degrees ) with interclick delays of +/-300 microsec were perceived by the cat as originating from p
16 of a conformational event on the order of 35 microsec, which is not seen in the other mutant (Phe62Fl
18 he molten globule state at pH 2, tauR is 2.5 microsec, increasing further with the formation of salt-
19 was shifted from normal by approximately 55 microsec toward open-ear leading for 4 kHz stimuli and 1
20 ve an apparent relaxation time, tauR, of 1.6 microsec in 3 M guanidine-HCl at pH 7 and 20 degrees C.
21 successive shocks) averaging 84.03 +/- 3.74 microsec (n = 72) and were completely blocked by the non
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