Vidybida, A.K. (1999). "Ch.3 in"(PDF). Dynamical mechanisms of influence of alternating electromagnetic fields on macromolecular and cooperative systems (Doktor thesis). Bogolyubov Institute for Theoretical Physics.
Vidybida, A.K. (1989). "Periodic electric field as a biopolymer conformation switch: a possible mechanism". Eur Biophys J. 16 (6): 357–61. doi:10.1007/BF00257884. PMID2924736. S2CID8672314.
Vidybida, A.K. (1999). "Ch.2 in"(PDF). Dynamical mechanisms of influence of alternating electromagnetic fields on macromolecular and cooperative systems (Doktor thesis). Bogolyubov Institute for Theoretical Physics.
Simoff, D.A.; Porter, R.S. (2011). "Rheology and Properties of Thermotropic Liquid Crystalline Poly (Bisphenol E Isophthalate-Co-Naphthalate)". Molecular Crystals and Liquid Crystals. 110 (1–4): 1–26. doi:10.1080/00268948408074493.
Noolandi, J.; Turmel, C. (1995). "Preparation, manipulation, and pulse strategy for one-dimensional pulsed-field gel electrophoresis (ODPFGE)". Mol Biotechnol. 4 (1): 25–43. doi:10.1007/BF02907469. PMID8521038. S2CID9625993.
Vidybida, A.K. (1987). "Modification of the Potential Function of a Mechanical System Caused by Periodic Action". Soviet Physics Doklady. 32: 113–115.
Vidybida, A.K. (1987). "Modification of the Potential Function of a Mechanical System Caused by Periodic Action". Acta Mechanica. 67 (1–4): 183–190. doi:10.1007/BF01182131. S2CID120582314.
Vidybida, A.K. (1989). "Periodic electric field as a biopolymer conformation switch: a possible mechanism". Eur Biophys J. 16 (6): 357–61. doi:10.1007/BF00257884. PMID2924736. S2CID8672314.
Vidybida, A.K. (1999). "Ch.2 in"(PDF). Dynamical mechanisms of influence of alternating electromagnetic fields on macromolecular and cooperative systems (Doktor thesis). Bogolyubov Institute for Theoretical Physics.
Dukhin, S.S.; Vidybida, A.K.; Dukhin, A.S.; Serikov, A.A. (1988). "Aperiodic Electrophoresis. Directed drift of dispersed particles in a uniform anharmonic alternating electric field". Kolloidnyi Zh. 49 (5): 752–755.
Mishchuk, N.A.; Barinova, N.O. (2011). "Theoretical and experimental study of nonlinear electrophoresis". Colloid J. 73: 88–96. doi:10.1134/S1061933X11010133. S2CID95565907.
US application 20050129526, "Method of using unbalanced alternating electric field in microfluidic devices", published 2005-06-16, assigned to DUKHIN ANDREI S. and DUKHIN STANISLAV
Noolandi, J.; Turmel, C. (1995). "Preparation, manipulation, and pulse strategy for one-dimensional pulsed-field gel electrophoresis (ODPFGE)". Mol Biotechnol. 4 (1): 25–43. doi:10.1007/BF02907469. PMID8521038. S2CID9625993.
Vidybida, A.K. (1989). "Periodic electric field as a biopolymer conformation switch: a possible mechanism". Eur Biophys J. 16 (6): 357–61. doi:10.1007/BF00257884. PMID2924736. S2CID8672314.
Vidybida, A.K. (1999). "Ch.2 in"(PDF). Dynamical mechanisms of influence of alternating electromagnetic fields on macromolecular and cooperative systems (Doktor thesis). Bogolyubov Institute for Theoretical Physics.
Noolandi, J.; Turmel, C. (1995). "Preparation, manipulation, and pulse strategy for one-dimensional pulsed-field gel electrophoresis (ODPFGE)". Mol Biotechnol. 4 (1): 25–43. doi:10.1007/BF02907469. PMID8521038. S2CID9625993.
Vidybida, A.K. (1987). "Modification of the Potential Function of a Mechanical System Caused by Periodic Action". Soviet Physics Doklady. 32: 113–115.
Vidybida, A.K. (1987). "Modification of the Potential Function of a Mechanical System Caused by Periodic Action". Acta Mechanica. 67 (1–4): 183–190. doi:10.1007/BF01182131. S2CID120582314.
Vidybida, A.K. (1989). "Periodic electric field as a biopolymer conformation switch: a possible mechanism". Eur Biophys J. 16 (6): 357–61. doi:10.1007/BF00257884. PMID2924736. S2CID8672314.
Vidybida, A.K. (1999). "Ch.2 in"(PDF). Dynamical mechanisms of influence of alternating electromagnetic fields on macromolecular and cooperative systems (Doktor thesis). Bogolyubov Institute for Theoretical Physics.
Dukhin, S.S.; Vidybida, A.K.; Dukhin, A.S.; Serikov, A.A. (1988). "Aperiodic Electrophoresis. Directed drift of dispersed particles in a uniform anharmonic alternating electric field". Kolloidnyi Zh. 49 (5): 752–755.
Mishchuk, N.A.; Barinova, N.O. (2011). "Theoretical and experimental study of nonlinear electrophoresis". Colloid J. 73: 88–96. doi:10.1134/S1061933X11010133. S2CID95565907.