Exact(1)
Rosenbaum and Rubin [34] based this rule on results from Cochran and Rubin [35] that indicated that a caliper width of 1/4 of the standard deviation of the estimated propensity score would remove at least 90%% of the bias in a normally distributed covariate.
Similar(59)
Moeckel and Donnelly based this decision on a rule proposed by Flowerdew, Feng and Manley [11], that zones across a study area should have a similar number of households.
We searched for potential off target sites based on this rule, and found 41 potential off targets of the sgp53 (named p53-off-1 to p53-off-41 p53-off-41 p53-off-41nomexisting S2).
3,212 target human proteins were found as interacting with H7N9 proteins based on this rule.
Based on this rule he constructed a "table of shadows"—essentially a table of cotangents for each degree from 1° to 90°.
Based on this rule, we can speculate the ncRNA's function when it interacts with other ncRNAs.
Based on this rule, we can infer that most of rice miRNAs would reduce the mature miRNAs production, thanks to the instability of hairpin structures caused by SNPs in stem regions.
Based on this rule, time delay control is introduced to stabilize the system with a virtual TMD, and a procedure to determine the optimal time delay and gain is proposed.
Based on this rule, a fundamental concept is presented for designing split-and-recombine mixers that performs 180° rotation of fluid interface, and possible channel configurations composed of 3D bent channels are proposed.
Based on this rule, we developed score functions and automated methods for orienting TM helices, for which locations and tilt angles have been determined using, e.g., cryo-EM data.
A single-parameter random graph model based on this rule predicts numerous features of the cortical network: (1) the existence of a network core and the distribution of cliques, (2) global and local binary properties, (3) global and local weight-based communication efficiencies modeled as network conductance, and (4) overall wire-length minimization.
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Justyna Jupowicz-Kozak
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