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Decadurabolin is structurally very similar to testosterone except that there is a change in one change in the 19th atomof carbon (i.e., the carbon atom at the beginning of the carbon chain in testosterone-like structures, which occurs because the 19th carbon atom is not carbonized, nor is it carbonated). It has been shown with animal models that an increase in anabolic steroid levels during prolonged dosing can be due to increases in the size of testosterone-like structures that form. (See the next chart.) We know that anabolic steroid levels are not dependent on the number of carbon atoms in the structure of a steroid, nor are we sure what part of the structure is responsible. This is likely important information if we are to extrapolate the results of the D-ATP/Phenylalanine study to other, less well-studied testosterone-like steroid structures. The next chart indicates how well the D-ATP/Phenylalanine study compared to a previous study that was just completed in 2002 that did not examine these differences. The results showed no correlation within the three testosterone-like structures. However, it was not clear from this study whether differences between the two groups of structures were statistically significant. (Of course, in the D-ATP/Phenylalanine study, there was a significant difference between D- and D-Citreales, but the difference was only very modest and did not lead to any meaningful conclusions.) In the 2002 study that used only one (D-ATP/Phenylalanine), it was found that D-ATP/Phenylalanine increased protein synthesis more than D-Citreales. (This was not found by our group.) Finally, the data show that there is no significant difference between D-Citreales and D-ATP/Phenylalanine. (It should be noted that D-Citreales results were based solely on post-absorption assays; the D-ATP/Phenylalanine study used a post-absorption assay that found an increase in intracellular DA; both D-Citreales and D-ATP/Phenylalanine can also increase the level of intracellular DA or have a role in DA degradation. The significance of this difference in the post-absorption assay is still being studied.) In the 2000 study, D-ATP/Phenylalanine did have a significant effect on extracellular amino acids. However, the study involved only three structures. In Similar articles: