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19 results on '"Shields, B.M."'

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1. Parental origin of sequence variants associated with complex diseases

2. A Meta-Analysis of Thyroid-Related Traits Reveals Novel Loci and Gender-Specific Differences in the Regulation of Thyroid Function

3. Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes

4. Identification of novel genetic Loci associated with thyroid peroxidase antibodies and clinical thyroid disease

5. Identification of Novel Genetic Loci Associated with Thyroid Peroxidase Antibodies and Clinical Thyroid Disease

6. Traumatic injuries in the Archaic Period: an example from Mulberry Creek, Alabama

8. A meta-analysis of thyroid-related traits reveals novel loci and gender-specific differences in the regulation of thyroid function

9. A Meta-Analysis of Thyroid-Related Traits Reveals Novel Loci and Gender-Specific Differences in the Regulation of Thyroid Function

10. A genome-wide approach accounting for body mass index identifies genetic variants influencing fasting glycemic traits and insulin resistance.

11. Novel loci for adiponectin levels and their influence on type 2 diabetes and metabolic traits: a multi-ethnic meta-analysis of 45,891 individuals.

12. Variants in ADCY5 and near CCNL1 are associated with fetal growth and birth weight

13. New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk

14. Twelve type 2 diabetes susceptibility loci identified through large-scale association analysis

15. Referral rates for diagnostic testing support an incidence of permanent neonatal diabetes in three European countries of at least 1 in 260,000 live births.

16. Effective treatment with oral sulfonylureas in patients with diabetes due to sulfonylurea receptor 1 (SUR1) mutations.

17. A common variation in deiodinase 1 gene DIO1 is associated with the relative levels of free thyroxine and triiodothyronine

19. A genome-wide approach accounting for body mass index identifies genetic variants influencing fasting glycemic traits and insulin resistance

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