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1  relaxation), with magnitude that depends on event frequency.
2 approximately twofold) increase in recycling event frequency.
3 st by 30% without changing the overall burst event frequency.
4 omplexity can be accounted for using binding event frequency.
5 d research across a range of study sizes and event frequencies.
6       Our objective was to determine adverse event frequency after urgent reversal with frozen plasma
7 ell tolerated, with no difference in adverse event frequency among 95 vaccinees vs 102 placebo recipi
8 amic Ca(2+) signal parameters (active sites, event frequency, amplitude, duration, and spatial spread
9  single RRE molecule was visualized, and the event frequencies and corresponding binding and dissocia
10 dian clock-regulated daily rhythms in firing event frequency and bursting proportion under light:dark
11 have been studied to ascertain translocation event frequency and capture rate.
12                                         Both event frequency and clustering of events near the start
13 ility, assessed as treatment-related adverse-event frequency and severity.
14 g degrees and evaluate the effects on fusion event frequency and the rates of fusion pore transitions
15 y end points requires attention to estimated event frequency and/or random assignment to a control gr
16 ts >2 Mb in size, we observed an increase in event frequency as event size decreased.
17 helial microdomain inversely to alter Ca(2+) event frequency; at low pressures the consequence is act
18     Local glutamate application enhanced the event frequency by 3.5-fold on average and up to 10-fold
19 increased load, Ca(2+) spark (inter-RyR CICR events) frequency decreased and sparks terminated earlie
20                                      Adverse event frequencies did not significantly differ between G
21               Pulmonary function and adverse event frequency did not change with escalation of allerg
22 similar sigmoid function fits the normalized event frequency evolution for both nanopores, thus the u
23                 Baseline characteristics and event frequencies for TIMI 11B, ACUTE II, and INTERACT w
24  Crohn's disease in humans reduced epileptic event frequency in tumor-bearing mice compared with untr
25  of life events against which to compare the event frequencies of women with chromosomally normal los
26 o 50 degrees C, the molecules unfold and the event frequency of current blockade increases.
27 based on laboratory values, reported adverse event frequencies, or electrocardiograph findings.
28  novel experience by increasing their Ca(2+) event frequency preferentially.
29  confirmed the ability of CompEx to increase event frequencies, preserve treatment effect, and reduce
30 ompared to bare actin for myoVa-HMM based on event frequency, run length, and speed.
31 r polystyrene particles demonstrate that the event frequency scales linearly with applied pressure an
32 ed a large increase in spontaneous miniature event frequency that was specific to excitatory neurotra
33 requency ablation resulted in a reduction of event frequency to levels significantly lower than those
34 e of CompEx in seven trials by comparing the event frequency, treatment effect (hazard ratio; HR), an
35 dilation associated with increases in Ca(2+) event frequency was inhibited, and basal myogenic tone w
36                           Otherwise, adverse event frequency was similar in the 2 groups.
37                              Serious adverse event frequencies were similar between groups, without e

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