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Results: 11

1.
Fig A

Fig A. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for liver parameters in all rats of the MON 810 experiment. The scheme obtained for parameters at week 14 explains 62.48% of the total data variability (inertia) expressed on 2 axes (47.46% for factor 1; 15.02% for factor 2), scale d=2. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
2.
Fig C

Fig C. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for liver parameters in all rats of the MON 863 experiment. The scheme obtained for parameters at week 14 explains 42.42% of the total data variability (inertia) expressed on 2 axes (32.01% for factor 1; 10.41% for factor 2), scale d=2. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
3.
Fig 2

Fig 2. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for kidney parameters of all rats in the NK 603 experiment. The scheme obtained for parameters at week 14 explains 44.78% of the total data variability (inertia) expressed on 2 axes (27.27% for factor 1; 17.51% for factor 2), scale d=2. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
4.
Fig 6

Fig 6. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Kinetic plot for urine chloride excretion in female rats fed MON 863. For each rat at 33% GM feed level (a) and controls (b) the lines represent the variations between week 5 and 14 for this parameter (meq/time). The dotted thick line represents the mean variation.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
5.
Fig 7

Fig 7. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Kinetic plot for urine potassium in male rats fed MON 863. For each rat at 11% GM maize level (a) and controls (b) the lines represent the variations between week 5 and 14 for this parameter (mmol/L). The dotted thick line represents the mean variation.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
6.
Fig 4

Fig 4. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Kinetic plot for female rat triglyceride levels in the MON 863 feeding trial. For each rat at 11% GM maize feed level (a) and controls (b) the lines represent the variations between week 5 and 14 for this parameter (mg/dL). The dotted thick line represents the mean variation.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
7.
Fig B

Fig B. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for kidney parameters in all rats of the MON 810 experiment. The scheme obtained for parameters at week 14 explains 43.16% of the total data variability (inertia) expressed on 2 axes (24.87% for factor 1; 18.29% for factor 2), scale d=2. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
8.
Fig D

Fig D. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for kidney parameters in all rats of the MON 863 experiment. The scheme obtained for parameters at week 14 explains 47.73% of the total data variability (inertia) expressed on 2 axes (26.95% for factor 1; 20.78% for factor 2), scale d=5. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
9.
Fig 5

Fig 5. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Kinetic plot for creatinine levels in female rats fed MON 863. For each rat at 11% GM maize feeding level (a) and controls (b) the lines represent the variations between week 5 and 14 for this parameter (mg/dL). The dotted thick line represents the mean variation.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
10.
Fig 1

Fig 1. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Principal Component Analysis for liver parameters of all rats in the NK 603 feeding trial. The scheme obtained for parameters at week 14 explains 66.65% of the total data variability (inertia) expressed on 2 axes (49.84% for factor 1; 16.81% for factor 2), scale d=2. This demonstrates the clear separation of parameters values according to sex.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.
11.
Fig 3

Fig 3. From: A Comparison of the Effects of Three GM Corn Varieties on Mammalian Health.

Kinetic plot for urine creatinine clearance in male rats fed NK 603. For each rat at 33% GM maize feed level (a) and controls (b) the lines represent the variations between week 5 and 14 for this parameter (ml/min/100 g body weight). The dotted thick line represents the means variation.

Joël Spiroux de Vendômois, et al. Int J Biol Sci. 2009;5(7):706-726.

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