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Trends in Plant Science|March 10, 2001
Motile plant cell body: a "bug" within a "cage"F Baluska, D Volkmann, P W BarlowInternational Review of Cytology|January 1, 1997
Nuclear components with microtubule-organizing properties in multicellular eukaryotes: functional and evolutionary considerationsF Baluska, D Volkmann, P W BarlowPlant & Cell Physiology|October 1, 1996
Complete disintegration of the microtubular cytoskeleton precedes its auxin-mediated reconstruction in postmitotic maize root cellsF Baluska, P W Barlow, D VolkmannEuropean Journal of Cell Biology|February 1, 1997
Rearrangements of F-actin arrays in growing cells of intact maize root apex tissues: a major developmental switch occurs in the postmitotic transition regionF Baluska, S Vitha, P W Barlow, et al.Biology of the Cell|June 1, 1997
Impact of taxol-mediated stabilization of microtubules on nuclear morphology, ploidy levels and cell growth in maize rootsF Baluska, J Samaj, D Volkmann, et al.The Histochemical Journal|November 30, 2000
Comparison of cryofixation and aldehyde fixation for plant actin immunocytochemistry: aldehydes do not destroy F-actinS Vitha, F Baluska, M Braun, et al.Microscopy Research and Technique|October 19, 1999
Actin cytoskeleton in plants: from transport networks to signaling networksD Volkmann, F BaluskaEuropean Journal of Cell Biology|June 1, 1993
The role of the microtubular cytoskeleton in determining nuclear chromatin structure and passage of maize root cells through the cell cycleF Baluska, P W BarlowDevelopmental Biology|November 10, 2000
Root hair formation: F-actin-dependent tip growth is initiated by local assembly of profilin-supported F-actin meshworks accumulated within expansin-enriched bulgesF Baluska, J Salaj, J Mathur, et al.Pageof 10