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Medical Hypotheses|September 1, 1995
A molecular model for bipolar affective disorderH M Lachman, D F PapolosLife Sciences|January 1, 1989
Abnormal signal transduction: a hypothetical model for bipolar affective disorderH M Lachman, D F PapolosAmerican Journal of Medical Genetics|July 18, 2000
Analysis of the pseudoautosomal X-linked gene SYBL1in bipolar affective disorder: description of a new candidate allele for psychiatric disordersT Saito, S Parsia, D F Papolos, et al.Psychiatry Research|July 31, 1996
Modulation of learned helplessness by 5-hydroxytryptamine2A receptor antisense oligodeoxynucleotidesD F Papolos, Y M Yu, E Rosenbaum, et al.Brain Research|July 5, 1991
Lithium augments pilocarpine-induced fos gene expression in rat brainE D Weiner, V D Kalasapudi, D F Papolos, et al.Psychiatric Genetics|April 1, 1997
Lack of association of catechol-O-methyltransferase (COMT) functional polymorphism in bipolar affective disorderH M Lachman, J Kelsoe, L Moreno, et al.Brain Research. Molecular Brain Research|January 1, 1992
Acute lithium treatment enhances neuropeptide Y gene expression in rat hippocampusE D Weiner, A M Mallat, D F Papolos, et al.Molecular Psychiatry|August 14, 1998
Ultra-ultra rapid cycling bipolar disorder is associated with the low activity catecholamine-O-methyltransferase alleleD F Papolos, S Veit, G L Faedda, et al.Brain Research|July 2, 1993
Effects of the antiglucocorticoid RU 38486 on the induction of learned helpless behavior in Sprague-Dawley ratsD F Papolos, E Edwards, R Marmur, et al.Brain Research|June 25, 1990
Lithium augments fos protoonocogene expression in PC12 pheochromocytoma cells: implications for therapeutic action of lithiumV D Kalasapudi, G Sheftel, M M Divish, et al.Pageof 4