High frequency fusion of plant protoplasts by electric fields
暂无分享,去创建一个
[1] S. Knutton,et al. VIRUS-INDUCED CELL FUSION , 1981 .
[2] E. Cocking. FUSION OF PLANT PROTOPLASTS , 1981 .
[3] J. Vienken,et al. Development of drug carrier systems: Electrical field induced effects in cell membranes* , 1980 .
[4] R. Benz,et al. Pulse-length dependence of the electrical breakdown in lipid bilayer membranes. , 1980, Biochimica et biophysica acta.
[5] R. Benz,et al. Dependence of the Electrical Breakdown Voltage on the Charging Time in Valonia Utricularis , 1980 .
[6] Ulrich Zimmermann,et al. Development of a New Coulter Counter System: Measurement of the Volume, Internal Conductivity, and Dielectric Breakdown Voltage of a Single Guard Cell Protoplast of Vicia Faba and Tumor Cells , 1980 .
[7] Shunnosuke Abe,et al. Induction of cell fusion of plant protoplasts by electrical stimulation , 1979 .
[8] S. Knutton,et al. The mechanism of cell-cell fusion , 1979 .
[9] R. Benz,et al. Reversible electrical breakdown of lipid bilayer membranes: A charge-pulse relaxation study , 1979, The Journal of Membrane Biology.
[10] U. Zimmermann,et al. Electrical hemolysis of human and bovine red blood cells , 1976, The Journal of Membrane Biology.
[11] U. Zimmermann,et al. Dielectric breakdown of cell membranes , 1974, Biophysics of structure and mechanism.
[12] K. Glimelius,et al. The induction of aggregation and fusion of Dancus carota protoplasts by polyethylene glycol , 1974 .
[13] K. Kao,et al. A method for high-frequency intergeneric fusion of plant protoplasts , 1974, Planta.
[14] W. Keller,et al. The Effect of High pH and Calcium on Tobacco Leaf Protoplast Fusion , 1973, Zeitschrift fur Naturforschung. Teil C: Biochemie, Biophysik, Biologie, Virologie.
[15] A. Loyter,et al. The mechanism of cell fusion. II. Formation of chicken erythrocyte polykaryons. , 1973, The Journal of biological chemistry.
[16] B. Mason,et al. Dielectrophoretic separation of living cells. , 1971, Canadian journal of microbiology.
[17] Joe S. Crane,et al. A Study of Living and Dead Yeast Cells Using Dielectrophoresis , 1968 .
[18] T. Kohane,et al. Hall Mobility of Electrons and Holes in Silicon , 1954 .
[19] U. Zimmermann,et al. Development of a new coulter counter system: Measurement of the volume, internal conductivity, and dielectric breakdown voltage of a single guard cell protoplast ofVicia faba , 2005, The Journal of Membrane Biology.
[20] T. Nagata,et al. Surface charge of protoplasts and their significance in cell-cell interaction , 2004, Planta.
[21] H. Schnabl. The effect of Cl- upon the sensitivity of starch-containing and starch-deficient stomata and guard cell protoplasts towards potassium ions, fusicoccin and abscisic acid , 2004, Planta.
[22] H. Ziegler,et al. Studies on isolated starch-containing (Vicia faba) and starch-deficient (Allium cepa) guard cell protoplasts , 2004, Planta.
[23] W. J. Lucas,et al. Electrical field effects in single guard cell protoplasts of Vicia faba: the development of a new Coulter Counter technique. , 1980 .
[24] R. Benz,et al. Relaxation studies on cell membranes and lipid bilayers in the high electric field range , 1980 .
[25] U. Zimmermann,et al. Particles in a homogeneous electrical field: A model for the electrical breakdown of living cells in a coulter counter , 1979 .
[26] Ronald Pethig,et al. Dielectric and electronic properties of biological materials , 1979 .
[27] Ulrich Zimmermann,et al. Effects of external electrical fields on cell membranes , 1976 .
[28] G. Poste. Mechanisms of virus-induced cell fusion. , 1972, International review of cytology.