Computational modeling for precision targeting of conductivity-clamped gene electrotransfer within the striatum of the human brain
- DOI
- 10.1088/1741-2552/ae482a
- Published
- 2026-02-01
- Container
- Journal of Neural Engineering
- Publisher
- IOP Publishing
- Open access
- unknown
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Cite this work
BibTeX
@article{allodium:10.1088/1741-2552/ae482a,
title = {Computational modeling for precision targeting of conductivity-clamped gene electrotransfer within the striatum of the human brain},
author = {Keng-Yin Lai and Stephen L Mow and Mathumathi Manoharan and Lily J Pearson and Georg von Jonquieres and Jeremy L Pinyon and Edward N Crawford and Frederic von Wegner and Gary D Housley and Nigel H Lovell and Amr Al Abed},
year = {2026},
journal = {Journal of Neural Engineering},
doi = {10.1088/1741-2552/ae482a},
url = {https://doi.org/10.1088/1741-2552/ae482a}
}RIS
TY - JOUR TI - Computational modeling for precision targeting of conductivity-clamped gene electrotransfer within the striatum of the human brain AU - Keng-Yin Lai AU - Stephen L Mow AU - Mathumathi Manoharan AU - Lily J Pearson AU - Georg von Jonquieres AU - Jeremy L Pinyon AU - Edward N Crawford AU - Frederic von Wegner AU - Gary D Housley AU - Nigel H Lovell AU - Amr Al Abed PY - 2026 JO - Journal of Neural Engineering DO - 10.1088/1741-2552/ae482a UR - https://doi.org/10.1088/1741-2552/ae482a ER -
APA
Lai, K., Mow, S. L., Manoharan, M., Pearson, L. J., Jonquieres, G. V., Pinyon, J. L., Crawford, E. N., Wegner, F. V., Housley, G. D., Lovell, N. H., & Abed, A. A. (2026). Computational modeling for precision targeting of conductivity-clamped gene electrotransfer within the striatum of the human brain. Journal of Neural Engineering. https://doi.org/10.1088/1741-2552/ae482a
Source records
- crossref · retrieved 2026-09-25T19:52:34.051Z