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Basic Research in Cardiology|January 1, 1985
The two components in the shortening of unloaded ventricular myocytes: their voltage dependenceG Isenberg, A Beresewicz, D Mascher, et al.The Journal of Physiology|December 1, 1993
Microheterogeneity of subsarcolemmal sodium gradients. Electron probe microanalysis in guinea-pig ventricular myocytesM F Wendt-Gallitelli, T Voigt, G IsenbergEuropean Journal of Biochemistry|July 1, 1987
On the interaction of bovine seminal RNase with actin in vitroF C Simm, W K Krietsch, G IsenbergProgress in Biophysics and Molecular Biology|March 28, 2008
Bending of z-lines by mechanical stimuli: an input signal for integrin dependent modulation of ion channels?V Dyachenko, A Christ, R Gubanov, et al.Experimental Cell Research|February 25, 1997
Vinculin promotes cell spreading by mechanically coupling integrins to the cytoskeletonR M Ezzell, W H Goldmann, N Wang, et al.Journal of Neurocytology|October 1, 1978
Correlation between actin polymerization and surface receptor segregation in neuroblastoma cells treated with concanavalin AG Isenberg, J V Small, G W KreutzbergGene|January 1, 1986
Structure of Physarum actin gene locus ardA: a nonpalindromic sequence causes inviability of phage lambda and recA-independent deletionsW F Nader, G Isenberg, H W SauerThe Journal of Physiology|January 2, 2003
Normal and pathological excitation-contraction coupling in the heart -- an overviewD A Eisner, G Isenberg, K R SipidoNature|November 5, 1984
Regulation of actin polymerization by non-polymerizable actin-like proteinsH Maruta, W Knoerzer, H Hinssen, et al.Cell Calcium|July 19, 2008
Mechanical deformation of ventricular myocytes modulates both TRPC6 and Kir2.3 channelsV Dyachenko, B Husse, U Rueckschloss, et al.Pageof 19