143
Electromagnetic Parameters
Ozier-Lafontaine, H. and Bajazet, T. (2005) Analysis of root growth by impedance spectroscopy (EIS). Plant
and Soil, 277: 299–313.
Patil, M.B. (2018) Effect of electroculture on seed germination and growth of Raphanus sativus (L). African
Journal of Plant Science, 12(12): 350–353.
Postic, F. and Doussan, C. (2016) Benchmarking electrical methods for rapid estimation of root biomass. Plant
Methods, 12: 33.
Rajda, V. (2004) Metabolische Energie und Elektrodiagnostic der Pfanzenvitalität. Short message in 10th
International Meeting Electrochemical Quality Test, Boden Technik Qualität (BTQ). Friesenheim,
Germany, May 6–7 2004.
Rajkai, K., Végh, K. and Nacsa, T. (2002) Electrical capacitance as the indicator of root size and activity.
Agrokémia és Talajtan, 51: 89–98.
Ramthun, A. (2015) Plant electrotropism. https://www.thunderbolts.info/wp/2016/03/09/arthur-ramthunplant-electrotropism-eu2015/.
Sun, T., Levin, B.D.A., Guzman, J.J.L., Enders, A., Muller, D.A., Angenent, L.T. and Lehmann, J. (2017)
Rapid electron transfer by the carbon matrix in natural pyrogenic carbon. Nature Communications 8:
14873.
Szent-Gyorgyi, A. (1960) Introduction to a Submolecular Biology, Chapter 3. New York: Academic Press Inc.
van West, P., Morris, B.M., Reid, B., Appiah, A.A., Osborne, M.C., Campbell, T.A., Shepherd, S.J. and Gow,
N.A.R. (2002) Oomycete plant pathogens use electric felds to target roots. Molecular Plant-Microbe
Interactions, 15(8): 790–798.
van Zyl, P.J.J. (2012) Radio frequency energy for bioelectric stimulation of plants. M-Tech Dissertation,
Johannesburg: Technology University of Johannesburg. https://ujcontent.uj.ac.za/vital/access/services/
Download/uj:7535/CONTENT1?view=true.
Volkov, A.G. (ed) (2012) Plant Electrophysiology, Signaling and Responses. Berlin: Springer Verlag, 377 p.
http://diyhpl.us/~nmz787/pdf/Plant_Electrophysiology___Signaling_and_Responses.pdf.
Wawrecki, W. and Zagorska-Marek, B. (2007) Infuence of a weak dc electric feld on root meristem architecture. Annals of Botany, 100: 791–796.
Electromagnetic Parameters
Ozier-Lafontaine, H. and Bajazet, T. (2005) Analysis of root growth by impedance spectroscopy (EIS). Plant
and Soil, 277: 299–313.
Patil, M.B. (2018) Effect of electroculture on seed germination and growth of Raphanus sativus (L). African
Journal of Plant Science, 12(12): 350–353.
Postic, F. and Doussan, C. (2016) Benchmarking electrical methods for rapid estimation of root biomass. Plant
Methods, 12: 33.
Rajda, V. (2004) Metabolische Energie und Elektrodiagnostic der Pfanzenvitalität. Short message in 10th
International Meeting Electrochemical Quality Test, Boden Technik Qualität (BTQ). Friesenheim,
Germany, May 6–7 2004.
Rajkai, K., Végh, K. and Nacsa, T. (2002) Electrical capacitance as the indicator of root size and activity.
Agrokémia és Talajtan, 51: 89–98.
Ramthun, A. (2015) Plant electrotropism. https://www.thunderbolts.info/wp/2016/03/09/arthur-ramthunplant-electrotropism-eu2015/.
Sun, T., Levin, B.D.A., Guzman, J.J.L., Enders, A., Muller, D.A., Angenent, L.T. and Lehmann, J. (2017)
Rapid electron transfer by the carbon matrix in natural pyrogenic carbon. Nature Communications 8:
14873.
Szent-Gyorgyi, A. (1960) Introduction to a Submolecular Biology, Chapter 3. New York: Academic Press Inc.
van West, P., Morris, B.M., Reid, B., Appiah, A.A., Osborne, M.C., Campbell, T.A., Shepherd, S.J. and Gow,
N.A.R. (2002) Oomycete plant pathogens use electric felds to target roots. Molecular Plant-Microbe
Interactions, 15(8): 790–798.
van Zyl, P.J.J. (2012) Radio frequency energy for bioelectric stimulation of plants. M-Tech Dissertation,
Johannesburg: Technology University of Johannesburg. https://ujcontent.uj.ac.za/vital/access/services/
Download/uj:7535/CONTENT1?view=true.
Volkov, A.G. (ed) (2012) Plant Electrophysiology, Signaling and Responses. Berlin: Springer Verlag, 377 p.
http://diyhpl.us/~nmz787/pdf/Plant_Electrophysiology___Signaling_and_Responses.pdf.
Wawrecki, W. and Zagorska-Marek, B. (2007) Infuence of a weak dc electric feld on root meristem architecture. Annals of Botany, 100: 791–796.
