ISO-690 (author-date, English)

VERMAAS M, PIASTRA MC, OOSTENDORP TF, RAMSEY NF und TIESINGA PHE, 2020. FEMfuns: A Volume Conduction Modeling Pipeline that Includes Resistive, Capacitive or Dispersive Tissue and Electrodes. Neuroinformatics. 1 Oktober 2020. Vol. 18, no. 4, p. 569-569. DOI 10.1007/s12021-020-09458-8.

Elsevier - Harvard (with titles)

Vermaas M, Piastra MC, Oostendorp TF, Ramsey NF, Tiesinga PHE, 2020. FEMfuns: A Volume Conduction Modeling Pipeline that Includes Resistive, Capacitive or Dispersive Tissue and Electrodes. Neuroinformatics 18, 569-569. https://doi.org/10.1007/s12021-020-09458-8

American Psychological Association 7th edition

Vermaas M, Piastra MC, Oostendorp TF, Ramsey NF, & Tiesinga PHE. (2020). FEMfuns: A Volume Conduction Modeling Pipeline that Includes Resistive, Capacitive or Dispersive Tissue and Electrodes. Neuroinformatics, 18(4), 569-569. https://doi.org/10.1007/s12021-020-09458-8

Springer - Basic (author-date)

Vermaas M, Piastra MC, Oostendorp TF, Ramsey NF, Tiesinga PHE (2020) FEMfuns: A Volume Conduction Modeling Pipeline that Includes Resistive, Capacitive or Dispersive Tissue and Electrodes.. Neuroinformatics 18:569-569. https://doi.org/10.1007/s12021-020-09458-8

Juristische Zitierweise (Stüber) (Deutsch)

Vermaas M/ Piastra MC/ Oostendorp TF/ Ramsey NF/ Tiesinga PHE, FEMfuns: A Volume Conduction Modeling Pipeline that Includes Resistive, Capacitive or Dispersive Tissue and Electrodes., Neuroinformatics 2020, 569-569.

Achtung: Diese Zitate sind unter Umständen nicht zu 100% korrekt.