Cytoskeletal Remodeling and Gap Junction Translocation Mediates Blood–Brain Barrier Disruption by Non-invasive Low-Voltage Pulsed Electric Fields

NR Rajagopalan, WR Vista, M Fujimori… - Annals of biomedical …, 2024 - Springer
High-voltage pulsed electric fields (HV-PEF) delivered with invasive needle electrodes for
electroporation applications is known to induce off-target blood–brain barrier (BBB) …

Cytoskeletal Remodeling and Gap Junction Translocation Mediates Blood-Brain Barrier Disruption by Non-invasive Low-Voltage Pulsed Electric Fields

NR Rajagopalan, WR Vista… - Annals of …, 2024 - pubmed.ncbi.nlm.nih.gov
High-voltage pulsed electric fields (HV-PEF) delivered with invasive needle electrodes for
electroporation applications is known to induce off-target blood-brain barrier (BBB) …

Cytoskeletal Remodeling and Gap Junction Translocation Mediates Blood–Brain Barrier Disruption by Non-invasive Low-Voltage Pulsed Electric Fields

NR Rajagopalan, WR Vista… - Annals of …, 2024 - researchinformation.amsterdamumc …
High-voltage pulsed electric fields (HV-PEF) delivered with invasive needle electrodes for
electroporation applications is known to induce off-target blood–brain barrier (BBB) …

[PDF][PDF] Cytoskeletal Remodeling and Gap Junction Translocation Mediates Blood–Brain Barrier Disruption by Non‑invasive Low‑Voltage Pulsed Electric Fields

NR Rajagopalan, WR Vista, M Fujimori… - 2023 - neuralengr.org
High-voltage pulsed electric fields (HV-PEF) delivered with invasive needle electrodes for
electroporation applications is known to induce off-target blood–brain barrier (BBB) …

Cytoskeletal Remodeling and Gap Junction Translocation Mediates Blood-Brain Barrier Disruption by Non-invasive Low-Voltage Pulsed Electric Fields.

NR Rajagopalan, WR Vista, M Fujimori… - Annals of Biomedical …, 2023 - europepmc.org
High-voltage pulsed electric fields (HV-PEF) delivered with invasive needle electrodes for
electroporation applications is known to induce off-target blood-brain barrier (BBB) …