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. Author manuscript; available in PMC: 2017 May 1.
Published in final edited form as: Bone. 2016 Mar 4;86:91–97. doi: 10.1016/j.bone.2016.03.003

Figure 4.

Figure 4

(A) Mineral depolarization ratio was significantly decreased by radiation, indicating increased molecular orientation of the bone mineral at weeks 0–12. (B) Matrix depolarization ratio was similarly affected, indicating increased molecular alignment of collagen fibrils in response to radiation at weeks 0–12. Data are presented as mean ± standard deviation, with ANOVA presented in tables underneath each graph. Tukey's post-hoc pairwise comparisons within each time point are identified as follows: * denotes p < 0.05 vs. VEH-Ctrl; § denotes p < 0.05 vs. VEH-RTx.