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Cell and Tissue Research|February 7, 1998
Tissue engineering: generation of differentiated artificial tissues for biomedical applicationsW W Minuth, M Sittinger, S KlothBiotechniques|March 1, 1996
Approach to an organo-typical environment for cultured cells and tissuesW W Minuth, S Kloth, J Aigner, et al.Cell and Tissue Research|January 20, 2000
Existence of a dense reticular meshwork surrounding the nephron inducer in neonatal rabbit kidneyR Strehl, V Trautner, S Kloth, et al.Kidney International|April 29, 1998
Basic fibroblast growth factor is a morphogenic modulator in kidney vessel developmentS Kloth, J Gerdes, C Wanke, et al.European Journal of Cell Biology|February 1, 1992
Construction of an apparatus for perfusion cell cultures which enables in vitro experiments under organotypic conditionsW W Minuth, G Stöckl, S Kloth, et al.Journal of Biomaterials Science. Polymer Edition|July 15, 2000
Physiological and cell biological aspects of perfusion culture technique employed to generate differentiated tissues for long term biomaterial testing and tissue engineeringW W Minuth, K Schumacher, R Strehl, et al.Cell and Tissue Research|August 1, 1994
Interrelationship of renal vascular development and nephrogenesisS Kloth, J Aigner, A Schmidbauer, et al.Epithelial Cell Biology|January 1, 1995
Transitional differentiation patterns of principal and intercalated cells during renal collecting duct developmentJ Aigner, S Kloth, M L Jennings, et al.Kidney International|September 1, 1993
Histochemical markers reveal an unexpected heterogeneous composition of the renal embryonic collecting duct epitheliumS Kloth, J Aigner, E Brandt, et al.Experimental Nephrology|December 5, 1997
Electrolyte environment modulates differentiation in embryonic renal collecting duct epitheliaW W Minuth, P Steiner, R Strehl, et al.Pageof 15