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Applied Clinical Informatics|May 7, 2013
Understanding why clinicians answer or ignore clinical decision support promptsA E Carroll, V Anand, S M DownsApplied Clinical Informatics|October 9, 2015
Computer Decision Support Changes Physician Practice But Not Knowledge Regarding Autism Spectrum DisordersN S Bauer, A E Carroll, C Saha, et al.Applied Clinical Informatics|April 8, 2015
Leveraging electronic tablets for general pediatric care: a pilot studyV Anand, S McKee, T M Dugan, et al.Molecular Reproduction and Development|May 17, 2000
Adenosine blocks hormone-induced meiotic maturation by suppressing purine de novo synthesisS M DownsBiology of Reproduction|July 1, 1997
Hypoxanthine regulation of oocyte maturation in the mouse: insights using hypoxanthine phosphoribosyltransferase-deficient animalsS M DownsZygote (Cambridge, England)|March 29, 2001
A gap-junction-mediated signal, rather than an external paracrine factor, predominates during meiotic induction in isolated mouse oocytesS M DownsMolecular Reproduction and Development|May 1, 1993
Purine control of mouse oocyte maturation: evidence that nonmetabolized hypoxanthine maintains meiotic arrestS M DownsThe Journal of Experimental Zoology|October 2, 1998
Precursors of the purine backbone augment the inhibitory action of hypoxanthine and dibutyryl cAMP on mouse oocyte maturationS M DownsBiology of Reproduction|June 1, 1994
High performance liquid chromatography analysis of hypoxanthine metabolism in mouse oocyte-cumulus cell complexes: effects of purine metabolic perturbantsS M DownsDevelopmental Biology|February 1, 1995
The influence of glucose, cumulus cells, and metabolic coupling on ATP levels and meiotic control in the isolated mouse oocyteS M DownsPageof 22