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Neurotoxicology|March 26, 1999
Zidovudine [AZT] myotoxicity: quantitative separation of AZT effects on proliferation and differentiation of muscle cells in vitro. Lack of myotoxicity potentiation by retrovirusA J Waclawik, J Vann, G Schmelz, et al.Brain Research|October 16, 1989
Neuropeptide degradation by large vessel and microvessel-derived endothelial cells in vitro: cell surface catabolism of thyrotropin releasing hormone (TRH)J M Rozental, G Kaminska, J Turner, et al.Bulletin of Experimental Biology and Medicine|November 30, 2010
Effect of bovine serum albumin on mitochondrial respiration in the brain and liver of mice and ratsA V Panov, V A Vavilin, V V Lyakhovich, et al.Neurologic Clinics|February 1, 1987
Intravenous thyrotropin-releasing hormone in patients with amyotrophic lateral sclerosis. Dose-response and randomized concurrent placebo-controlled pilot studiesB R Brooks, R L Sufit, G K Montgomery, et al.Neurology|January 1, 1980
Norepinephrine and gamma-aminobutyric acid in amyotrophic lateral sclerosisM G Ziegler, B R Brooks, C R Lake, et al.Archives of Neurology|May 1, 1979
CSF viral antibodies. Evaluation in amyotrophic lateral sclerosis and late-onset postpoliomyelitis progressive muscular atrophyJ E Kurent, B R Brooks, D L Madden, et al.Journal of Chemical Theory and Computation|November 27, 2015
Mobile Block Hessian Approach with Adjoined Blocks: An Efficient Approach for the Calculation of Frequencies in MacromoleculesA Ghysels, V Van Speybroeck, E Pauwels, et al.Neurology|February 1, 1993
Home ventilation for amyotrophic lateral sclerosis patients: outcomes, costs, and patient, family, and physician attitudesA H Moss, P Casey, C B Stocking, et al.Experimental Brain Research|February 8, 2006
Subcortical reorganization in amyotrophic lateral sclerosisC Konrad, A Jansen, H Henningsen, et al.Pageof 12