Project measure / variable:   Peters2   RDW

ID, description, units MPD:6509   RDW   RBC corpuscular distribution width (RDW)   [%]  
Data set, strains Peters2   AXB BXA   28 strains     sex: both     age: 11wks
Procedure complete blood count
Ontology mappings

  STRAIN COMPARISON PLOT
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Peters2 - RBC corpuscular distribution width (RDW)



  MEASURE SUMMARY
Measure Summary FemaleMale
Number of strains tested28 strains28 strains
Mean of the strain means15.2   % 15.1   %
Median of the strain means15.1   % 15.0   %
SD of the strain means± 0.773 ± 0.725
Coefficient of variation (CV)0.0509 0.0480
Min–max range of strain means13.8   –   17.3   % 13.5   –   16.8   %
Mean sample size per strain7.7   mice 7.9   mice


  ANOVA, Q-Q NORMALITY ASSESSMENT
ANOVA summary      
FactorDFSum of squaresMean sum of squaresF valuep value (Pr>F)
sex 1 0.7429 0.7429 1.2532 0.2636
strain 27 190.6634 7.0616 11.9122 < 0.0001
sex:strain 27 28.5124 1.056 1.7814 0.0104
Residuals 393 232.9716 0.5928


Q-Q normality assessment based on residuals

  


  STRAIN MEANS (UNADJUSTED)
  
Select table page:
Strain Sex Mean SD N mice SEM CV Min, Max Z score
AXB10/PgnJ f 14.3 0.453   7 0.171 0.0317 13.6, 14.8 -1.14
AXB10/PgnJ m 13.5 0.55   8 0.194 0.0408 12.9, 14.4 -2.19
AXB12/PgnJ f 15.9 1.91   10 0.602 0.12 13.1, 19.4 0.93
AXB12/PgnJ m 14.7 1.11   8 0.394 0.0757 12.3, 15.9 -0.54
AXB13/PgnJ f 15.9 0.41   8 0.145 0.0258 15.0, 16.4 0.93
AXB13/PgnJ m 15.8 0.783   8 0.277 0.0495 14.9, 17.1 0.98
AXB15/PgnJ f 14.9 0.639   8 0.226 0.0428 14.1, 16.1 -0.37
AXB15/PgnJ m 15.1 0.392   8 0.139 0.026 14.5, 15.7 0.01
AXB19a/PgnJ f 15.1 0.628   8 0.222 0.0417 14.5, 16.5 -0.11
AXB19a/PgnJ m 15.3 0.49   8 0.173 0.0321 14.3, 15.8 0.29
AXB19b/PgnJ f 15.3 0.596   7 0.225 0.0389 14.3, 16.0 0.15
AXB19b/PgnJ m 15.5 0.647   8 0.229 0.0417 14.5, 16.3 0.57
AXB19/PgnJ f 14.7 0.547   8 0.193 0.0373 13.9, 15.5 -0.62
AXB19/PgnJ m 14.6 0.648   8 0.229 0.0445 13.8, 15.8 -0.67
AXB1/PgnJ f 13.8 0.853   5 0.381 0.0617 13.1, 14.8 -1.79
AXB1/PgnJ m 15.0 0.368   8 0.13 0.0245 14.4, 15.4 -0.12
AXB23/PgnJ f 16.7 0.927   5 0.415 0.0555 15.9, 18.3 1.96
AXB23/PgnJ m 16.8 0.818   7 0.309 0.0488 16.0, 18.2 2.36
AXB24/PgnJ f 15.7 0.762   8 0.269 0.0485 14.8, 16.8 0.67
AXB24/PgnJ m 15.5 0.495   8 0.175 0.032 14.7, 16.0 0.57
AXB2/PgnJ f 16.1 1.63   8 0.576 0.101 14.8, 19.2 1.19
AXB2/PgnJ m 15.5 0.402   8 0.142 0.0259 15.0, 16.2 0.57
AXB4/PgnJ f 17.3 0.68   6 0.278 0.0394 16.2, 18.0 2.74
AXB4/PgnJ m 16.2 0.804   9 0.268 0.0496 15.3, 17.3 1.53
AXB5/PgnJ f 14.7 0.345   7 0.13 0.0234 14.4, 15.3 -0.62
AXB5/PgnJ m 14.9 0.875   7 0.331 0.0587 14.1, 16.5 -0.26
AXB6/PgnJ f 15.1 0.548   7 0.207 0.0363 14.4, 16.1 -0.11
AXB6/PgnJ m 14.7 0.547   6 0.223 0.0373 14.1, 15.3 -0.54
AXB8/PgnJ f 15.4 1.37   7 0.519 0.0891 13.6, 17.1 0.28
AXB8/PgnJ m 15.8 0.479   8 0.169 0.0304 15.2, 16.6 0.98
BXA11/PgnJ f 15.1 0.774   8 0.274 0.0512 14.2, 16.9 -0.11
BXA11/PgnJ m 15.7 0.907   8 0.321 0.0577 14.6, 17.2 0.84
BXA12/PgnJ f 15.3 0.37   8 0.131 0.0242 14.7, 16.0 0.15
BXA12/PgnJ m 14.8 0.393   8 0.139 0.0265 14.4, 15.4 -0.4
BXA13/PgnJ f 15.2 0.673   8 0.238 0.0444 14.5, 16.5 0.02
BXA13/PgnJ m 15.0 0.466   8 0.165 0.031 14.1, 15.6 -0.12
BXA14/PgnJ f 15.5 0.964   8 0.341 0.0622 14.5, 17.3 0.41
BXA14/PgnJ m 16.4 1.03   8 0.365 0.0629 14.7, 17.8 1.81
BXA16/PgnJ f 15.6 1.2   8 0.425 0.0773 14.3, 18.3 0.54
BXA16/PgnJ m 14.9 0.196   8 0.0693 0.0132 14.5, 15.1 -0.26
BXA1/PgnJ f 14.4 0.819   8 0.29 0.0567 13.4, 15.5 -1.01
BXA1/PgnJ m 14.1 0.306   6 0.125 0.0217 13.6, 14.5 -1.36
BXA24/PgnJ f 14.2 0.907   8 0.321 0.0639 13.2, 15.3 -1.27
BXA24/PgnJ m 14.3 0.336   8 0.119 0.0235 13.9, 14.7 -1.09
BXA25/PgnJ f 15.1 1.01   8 0.356 0.0669 13.9, 16.5 -0.11
BXA25/PgnJ m 15.1 0.802   8 0.283 0.0533 14.1, 16.3 0.01
BXA26/PgnJ f 14.3 0.529   9 0.176 0.0369 13.6, 15.3 -1.14
BXA26/PgnJ m 14.7 1.03   7 0.388 0.07 13.8, 16.8 -0.54
BXA2/PgnJ f 14.2 0.239   8 0.0845 0.0168 13.9, 14.5 -1.27
BXA2/PgnJ m 14.3 0.42   10 0.133 0.0294 13.6, 14.8 -1.09
BXA4/PgnJ f 14.9 0.424   8 0.15 0.0285 14.2, 15.5 -0.37
BXA4/PgnJ m 14.4 0.853   8 0.301 0.0592 13.4, 15.8 -0.95
BXA7/PgnJ f 15.5 1.16   8 0.412 0.075 14.4, 17.4 0.41
BXA7/PgnJ m 15.3 0.56   8 0.198 0.0367 14.3, 16.0 0.29
BXA8/PgnJ f 14.9 0.422   16 0.106 0.0284 14.0, 15.5 -0.37
BXA8/PgnJ m 14.6 0.456   15 0.118 0.0313 13.9, 15.2 -0.67


  LEAST SQUARES MEANS (MODEL-ADJUSTED)
Strain Sex Mean SEM UpperCL LowerCL
AXB10/PgnJ f 14.2857 0.291 14.8578 13.7136
AXB10/PgnJ m 13.475 0.2722 14.0102 12.9398
AXB12/PgnJ f 15.86 0.2435 16.3387 15.3813
AXB12/PgnJ m 14.7125 0.2722 15.2477 14.1773
AXB13/PgnJ f 15.875 0.2722 16.4102 15.3398
AXB13/PgnJ m 15.8125 0.2722 16.3477 15.2773
AXB15/PgnJ f 14.95 0.2722 15.4852 14.4148
AXB15/PgnJ m 15.075 0.2722 15.6102 14.5398
AXB19a/PgnJ f 15.05 0.2722 15.5852 14.5148
AXB19a/PgnJ m 15.2625 0.2722 15.7977 14.7273
AXB19b/PgnJ f 15.3143 0.291 15.8864 14.7422
AXB19b/PgnJ m 15.5125 0.2722 16.0477 14.9773
AXB19/PgnJ f 14.675 0.2722 15.2102 14.1398
AXB19/PgnJ m 14.5625 0.2722 15.0977 14.0273
AXB1/PgnJ f 13.82 0.3443 14.497 13.143
AXB1/PgnJ m 15.0125 0.2722 15.5477 14.4773
AXB23/PgnJ f 16.7 0.3443 17.377 16.023
AXB23/PgnJ m 16.7714 0.291 17.3436 16.1993
AXB24/PgnJ f 15.7 0.2722 16.2352 15.1648
AXB24/PgnJ m 15.475 0.2722 16.0102 14.9398
AXB2/PgnJ f 16.0625 0.2722 16.5977 15.5273
AXB2/PgnJ m 15.5125 0.2722 16.0477 14.9773
AXB4/PgnJ f 17.2667 0.3143 17.8846 16.6487
AXB4/PgnJ m 16.2222 0.2566 16.7268 15.7177
AXB5/PgnJ f 14.7286 0.291 15.3007 14.1564
AXB5/PgnJ m 14.8857 0.291 15.4578 14.3136
AXB6/PgnJ f 15.1 0.291 15.6721 14.5279
AXB6/PgnJ m 14.65 0.3143 15.268 14.032
AXB8/PgnJ f 15.4143 0.291 15.9864 14.8422
AXB8/PgnJ m 15.7875 0.2722 16.3227 15.2523
BXA11/PgnJ f 15.1375 0.2722 15.6727 14.6023
BXA11/PgnJ m 15.725 0.2722 16.2602 15.1898
BXA12/PgnJ f 15.3 0.2722 15.8352 14.7648
BXA12/PgnJ m 14.8375 0.2722 15.3727 14.3023
BXA13/PgnJ f 15.175 0.2722 15.7102 14.6398
BXA13/PgnJ m 15.0375 0.2722 15.5727 14.5023
BXA14/PgnJ f 15.5 0.2722 16.0352 14.9648
BXA14/PgnJ m 16.4125 0.2722 16.9477 15.8773
BXA16/PgnJ f 15.5625 0.2722 16.0977 15.0273
BXA16/PgnJ m 14.8875 0.2722 15.4227 14.3523
BXA1/PgnJ f 14.4375 0.2722 14.9727 13.9023
BXA1/PgnJ m 14.1167 0.3143 14.7346 13.4987
BXA24/PgnJ f 14.2 0.2722 14.7352 13.6648
BXA24/PgnJ m 14.2875 0.2722 14.8227 13.7523
BXA25/PgnJ f 15.075 0.2722 15.6102 14.5398
BXA25/PgnJ m 15.05 0.2722 15.5852 14.5148
BXA26/PgnJ f 14.3333 0.2566 14.8379 13.8288
BXA26/PgnJ m 14.6571 0.291 15.2293 14.085
BXA2/PgnJ f 14.2 0.2722 14.7352 13.6648
BXA2/PgnJ m 14.31 0.2435 14.7887 13.8313
BXA4/PgnJ f 14.9 0.2722 15.4352 14.3648
BXA4/PgnJ m 14.4125 0.2722 14.9477 13.8773
BXA7/PgnJ f 15.525 0.2722 16.0602 14.9898
BXA7/PgnJ m 15.275 0.2722 15.8102 14.7398
BXA8/PgnJ f 14.8625 0.1925 15.2409 14.4841
BXA8/PgnJ m 14.5667 0.1988 14.9575 14.1758


  LEAST SQUARES MEANS (MODEL-ADJUSTED), SEXES COMBINED
Strain Sex Mean SEM UpperCL LowerCL
AXB10/PgnJ both 13.8804 0.1992 14.2721 13.4886
AXB12/PgnJ both 15.2862 0.1826 15.6453 14.9272
AXB13/PgnJ both 15.8438 0.1925 16.2222 15.4653
AXB15/PgnJ both 15.0125 0.1925 15.3909 14.6341
AXB19a/PgnJ both 15.1563 0.1925 15.5347 14.7778
AXB19b/PgnJ both 15.4134 0.1992 15.8051 15.0217
AXB19/PgnJ both 14.6188 0.1925 14.9972 14.2403
AXB1/PgnJ both 14.4163 0.2195 14.8477 13.9848
AXB23/PgnJ both 16.7357 0.2254 17.1789 16.2925
AXB24/PgnJ both 15.5875 0.1925 15.9659 15.2091
AXB2/PgnJ both 15.7875 0.1925 16.1659 15.4091
AXB4/PgnJ both 16.7444 0.2029 17.1433 16.3455
AXB5/PgnJ both 14.8071 0.2058 15.2117 14.4026
AXB6/PgnJ both 14.875 0.2142 15.2961 14.4539
AXB8/PgnJ both 15.6009 0.1992 15.9926 15.2092
BXA11/PgnJ both 15.4313 0.1925 15.8097 15.0528
BXA12/PgnJ both 15.0688 0.1925 15.4472 14.6903
BXA13/PgnJ both 15.1063 0.1925 15.4847 14.7278
BXA14/PgnJ both 15.9563 0.1925 16.3347 15.5778
BXA16/PgnJ both 15.225 0.1925 15.6034 14.8466
BXA1/PgnJ both 14.2771 0.2079 14.6858 13.8683
BXA24/PgnJ both 14.2438 0.1925 14.6222 13.8653
BXA25/PgnJ both 15.0625 0.1925 15.4409 14.6841
BXA26/PgnJ both 14.4952 0.194 14.8767 14.1138
BXA2/PgnJ both 14.255 0.1826 14.614 13.896
BXA4/PgnJ both 14.6563 0.1925 15.0347 14.2778
BXA7/PgnJ both 15.4 0.1925 15.7784 15.0216
BXA8/PgnJ both 14.7146 0.1384 14.9866 14.4426




  GWAS USING LINEAR MIXED MODELS