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Cell Motility and the Cytoskeleton|January 1, 1994
Physical model of axonemal splittingM E Holwill, P Satir
Biophysical Journal|October 1, 1990
A physical model of microtubule sliding in ciliary axonemesM E Holwill, P Satir
The Journal of Cell Biology|August 1, 1974
Dynamics of the hispid flagellum of Ochromonas danica. The role of mastigonemesM E Holwill, P D Peters
Nature|October 30, 1980
Motile flagellar axonemes with a 9 + 1 microtubule configurationS Marchese-Ragona, M E Holwill
The Journal of Experimental Biology|August 1, 1976
Effects of calcium on flagellar movement in the trypanosome Crithidia oncopeltiM E Holwill, J L McGregor
Biophysical Journal|November 1, 1971
A mechanochemical model of flagellar activityC A Miles, M E Holwill
Cell Motility and the Cytoskeleton|June 24, 1999
Assessment of inner dynein arm structure and possible function in ciliary and flagellar axonemesH C Taylor, P Satir, M E Holwill
The Journal of Experimental Biology|February 1, 1979
A sliding microtubule model incorporating axonemal twist and compatible with three-dimensional ciliary bendingM E Holwill, H J Cohen, P Satir
Biophysical Journal|December 1, 1995
Mechanochemical aspects of axonemal dynein activity studied by in vitro microtubule translocationT Hamasaki, M E Holwill, K Barkalow, et al.
Journal of Cell Science|January 1, 1991
Computer modelling of Tetrahymena axonemes at macromolecular resolution. Interpretation of electron micrographsP Sugrue, J Avolio, P Satir, et al.
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