| Literature DB >> 15882470 |
Iztok Hozo1, Benjamin Djulbegovic, Otavio Clark, Gary H Lyman.
Abstract
BACKGROUND: Outcomes collected in randomized clinical trials are observations of random variables that should be independent and identically distributed. However, in some trials, the patients are randomized more than once thus violating both of these assumptions. The probability of an event is not always the same when a patient is re-randomized; there is probably a non-zero covariance coming from observations on the same patient. This is of particular importance to the meta-analysts.Entities:
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Year: 2005 PMID: 15882470 PMCID: PMC1145185 DOI: 10.1186/1471-2288-5-17
Source DB: PubMed Journal: BMC Med Res Methodol ISSN: 1471-2288 Impact factor: 4.615
Figure 1Chouaid et al. study
Figure 2Tree diagram showing the relationships between the variables in the re-randomization process
Figure 3The 0.05 level curves for the relative difference between the risk difference before and after the re-randomization. We assume that c = 0.40 in this figure. The horizontal axis represents d – the multiplier for the probability of reoccurrence of the event after the re-randomization; The vertical axis represents x – the percentage of the patients who were re-randomized; The curves represent 0.05 relative error level curves for different values of the ratio of the total events reported and the initial number of patients entering the trial. The values of the ratio are indicated at the top of the graph. For a chosen value of the ratio : if a point (d, x) is between the two level curves with identical value (and color) – the relative error of the risk differences is less than 5%; otherwise – the relative error of the risk differences is more than 5%.
Error analysis using Anaissie et al. data
| ≈ c | ||||||||||||
| ≈ d | ||||||||||||
| -.286 | -.272 | -.259 | -.245 | -.232 | -.197 | -.162 | -.128 | -.096 | -.064 | .033 | ||
| -.198 | -.186 | -.175 | -.163 | -.152 | -.122 | -.093 | -.064 | -.036 | -.009 | .018 | ||
| -.131 | -.121 | -.111 | -.101 | -.091 | -.065 | -.039 | -.014 | .011 | .035 | .059 | ||
| -.077 | -.068 | -.059 | -.050 | -.041 | -.018 | .005 | .028 | .050 | .072 | .093 | ||
| -.032 | -.024 | -.016 | -.008 | .021 | .042 | .063 | .083 | .103 | .123 | |||
| .062 | .069 | .075 | .082 | .089 | .106 | .123 | .140 | .156 | .173 | .189 | ||
| .131 | .136 | .142 | .147 | .153 | .168 | .182 | .196 | .211 | .225 | .238 | ||
| .183 | .188 | .193 | .198 | .203 | .229 | .241 | .254 | .266 | .278 | |||
| .226 | .231 | .235 | .239 | .244 | .255 | .267 | .278 | .289 | .300 | .311 | ||
| .262 | .266 | .270 | .274 | .278 | .288 | .299 | .309 | .319 | .329 | .339 | ||
| .293 | .296 | .300 | .303 | .307 | .317 | .326 | .335 | .345 | .354 | .363 | ||
Figure 4Meta-analysis conducted with Review Manager using the reported data from Anaissie et al. with re-randomized data included.
Figure 5Meta-analysis conducted with Review Manager using our estimates for the data from Anaissie et al. without including the re-randomized data.