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Performed the experiments: IJ HL. Analyzed the data: IJ HL. Wrote the paper: IJ HL. Is the Subject Area "Magnesium" applicable to this article. Yes NoIs the Subject Area "Magnesium alloys" applicable to this article. Yes NoIs the Subject Area "Corrosion" applicable to this article. Yes NoIs the Subject Area "Medical implants" applicable to this article. Yes NoIs the Subject Area "Yttrium" applicable to this article.

Yes NoIs the Subject Area "Fluid physiology" applicable to this article. Yes NoIs lateral flow immunoassay Subject Area "Microstructure" applicable to this article. Yes NoIs the Subject Area "Saline solutions" applicable to this article.

IntroductionMagnesium alloys possess many advantageous properties over current materials used for biomedical implants. Three key interacting factors influence degradation rate and mode Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA magnesium. Materials and Methods Preparation of pure magnesium and magnesium-yttrium alloy samples Commercially pure magnesium foil (Goodfellow Corporation, as-rolled, 99. Degradation of pure magnesium and magnesium-yttrium alloy in immersion solution Degradation of pure implants bad and the magnesium-yttrium alloy was investigated by the immersion method.

Statistical analysis of degradation data The three factors that control the dependent variable (i. Degradation appearance in DI water. Change of mass and pH of DI water. Degradation appearance in PBS. Change of mass and pH of PBS. Statistical analysis of mass loss during degradation There were significant interactions among alloy composition, sample surface type, and immersion media, as demonstrated through three-way factorial ANOVA analysis.

Statistical significance of the three factors (alloy composition, sample surface type, immersion media) on sample lifetime and their interactions.

Interactions between three key factors that Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA sample lifetime. Discussion The effects of surface and composition on the sample degradation in DI elarica johnson The results of this study confirmed that both surface (metallic versus oxide) and composition (alloying with Y versus pure Mg) contributed to the degradation in DI water.

The effects of surface and composition on the Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA degradation in PBS It is Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA true that both surface (metallic versus oxide) and composition (alloying with Y versus pure Mg) contributed to the degradation in PBS.

Conclusions This Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA demonstrated that the presence or absence of yttrium in magnesium alloys, the presence or absence of surface oxides, and the presence or absence of physiological ions in the immersion fluid collectively contributed to magnesium degradation, and interacted with one another on influencing magnesium degradation rate and mode.

Acknowledgments The authors thank the Central Facility for Advanced Microscopy and Microanalysis at the University of California, Riverside for the use of SEM XL30 and EDAX detector. Author ContributionsConceived and designed the experiments: HL. Witte F (2010) The history of biodegradable magnesium Hydrocodone Bitartrate and Acetaminophen (Zydone)- FDA a review. Brar HS, Platt MO, Sarntinoranont M, Martin PI, Manuel MV (2009) Magnesium as a biodegradable and bioabsorbable material for medical implants.

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Comments:

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