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Brain Research|March 10, 2000
Comparison of cytosine arabinoside delivery to rat brain by intravenous, intrathecal, intraventricular and intraparenchymal routes of administrationD R Groothuis, H Benalcazar, C V Allen, et al.Journal of Computer Assisted Tomography|August 1, 1981
Computed tomography of virally induced canine brain tumors: a preliminary reportD R Groothuis, M A Mikhael, J M Fischer, et al.Journal of Neuropathology and Experimental Neurology|September 1, 1983
A model for human medulloblastoma. Growth, morphology, and chromosomal analysis in vitro and in athymic miceH S Friedman, S H Bigner, R D McComb, et al.Brain Research|September 5, 1998
Changes in blood-brain barrier permeability associated with insertion of brain cannulas and microdialysis probesD R Groothuis, S Ward, K E Schlageter, et al.Cancer Research|October 15, 1988
Comparative localization of murine monoclonal antibody Me1-14 F(ab')2 fragment and whole IgG2a in human glioma xenograftsE V Colapinto, P A Humphrey, M R Zalutsky, et al.Cancer Research|October 15, 1992
The effect of an amino acid-lowering diet on the rate of melphalan entry into brain and xenotransplanted gliomaD R Groothuis, B E Lippitz, I Fekete, et al.Annals of Neurology|October 1, 1991
Quantitative measurements of capillary transport in human brain tumors by computed tomographyD R Groothuis, F J Vriesendorp, B Kupfer, et al.Biochemical Pharmacology|November 15, 1988
Buthionine sulfoximine-mediated depletion of glutathione in intracranial human glioma-derived xenograftsS X Skapek, O M Colvin, O W Griffith, et al.Cancer Chemotherapy and Pharmacology|January 1, 1995
The effect of L-amino acid oxidase on activity of melphalan against an intracranial xenograftJ N Rich, G B Elion, D Wellner, et al.Pageof 6