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Applied Optics|July 19, 2003
Influence of a glass-water interface on the on-axis trapping of micrometer-sized spherical objects by optical tweezersErik Fällman, Ove AxnerBiophysical Journal|August 7, 2007
The biomechanical properties of E. coli pili for urinary tract attachment reflect the host environmentMagnus Andersson, Bernt Eric Uhlin, Erik FällmanApplied Optics|January 18, 2007
Dual-trap technique for reduction of low-frequency noise in force measuring optical tweezersMarkus Klein, Magnus Andersson, Ove Axner, et al.Biophysical Journal|March 28, 2002
Stress response in Caenorhabditis elegans caused by optical tweezers: wavelength, power, and time dependenceGuenther Leitz, Erik Fällman, Simon Tuck, et al.Biophysical Journal|December 20, 2005
A sticky chain model of the elongation and unfolding of Escherichia coli P pili under stressMagnus Andersson, Erik Fällman, Bernt Eric Uhlin, et al.Biophysical Journal|July 18, 2006
Dynamic force spectroscopy of E. coli P piliMagnus Andersson, Erik Fällman, Bernt Eric Uhlin, et al.FEMS Microbiology Letters|July 12, 2003
Laser-based micromanipulation for separation and identification of individual Frankia vesiclesGuenther Leitz, Carina Lundberg, Erik Fällman, et al.Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|January 9, 2008
Physical properties of biopolymers assessed by optical tweezers: analysis of folding and refolding of bacterial piliMagnus Andersson, Ove Axner, Fredrik Almqvist, et al.EMBO Reports|December 14, 2004
The unfolding of the P pili quaternary structure by stretching is reversible, not plasticErik Fällman, Staffan Schedin, Jana Jass, et al.European Biophysics Journal : EBJ|November 4, 2009
Unfolding and refolding properties of S pili on extraintestinal pathogenic Escherichia coliMickaël Castelain, Annika E Sjöström, Erik Fällman, et al.Pageof 2