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Journal of Theoretical Biology|January 21, 2000
A mathematical model of tumour angiogenesis incorporating cellular traction and viscoelastic effectsM J Holmes, B D SleemanIMA Journal of Mathematics Applied in Medicine and Biology|January 1, 1990
A mathematical model for the production and secretion of tumour angiogenesis factor in tumoursM A Chaplain, B D SleemanBulletin of Mathematical Biology|November 4, 2004
Lattice and non-lattice models of tumour angiogenesisM J Plank, B D SleemanJournal of Mathematical Biology|August 14, 1999
Aggregation and collapse in a mechanical model of fungal tip growthC M Regalado, B D SleemanIMA Journal of Mathematics Applied in Medicine and Biology|April 29, 1998
Fluid transport in vascularized tumours and metastasisB D Sleeman, H R NimmoMathematical Biosciences|December 21, 2000
A mathematical model for the roles of pericytes and macrophages in the initiation of angiogenesis. I. The role of protease inhibitors in preventing angiogenesisH A Levine, B D Sleeman, M Nilsen-HamiltonJournal of Mathematical Biology|April 24, 2001
Mathematical modeling of the onset of capillary formation initiating angiogenesisH A Levine, B D Sleeman, M Nilsen-HamiltonJournal of Theoretical Biology|July 13, 2004
A mathematical model of tumour angiogenesis, regulated by vascular endothelial growth factor and the angiopoietinsM J Plank, B D Sleeman, P F JonesGrowth Factors (Chur, Switzerland)|June 8, 2004
The role of the angiopoietins in tumour angiogenesisM J Plank, B D Sleeman, P F JonesBulletin of Mathematical Biology|September 22, 2001
Mathematical modeling of capillary formation and development in tumor angiogenesis: penetration into the stromaH A Levine, S Pamuk, B D Sleeman, et al.Pageof 3