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- W3170767285 abstract "Ultrasound has been used to manipulate cells in both humans and animal models. While intramembrane cavitation and lipid clustering have been suggested as likely mechanisms, they lack experimental evidence. Here we use high-speed digital holographic microscopy (to 100-kHz order) to visualize the cellular membrane dynamics. We show that neuronal and fibroblast membranes deflect about 150 nm upon ultrasound stimulation. Next, we develop a biomechanical model that predicts changes in membrane voltage after ultrasound exposure. Finally, we validate our model predictions using whole-cell patch clamp electrophysiology on primary neurons. Collectively, we show that ultrasound stimulation directly defects the neuronal membrane leading to a change in membrane voltage and subsequent depolarization. Our model is consistent with existing data and provides a mechanism for both ultrasound-evoked neurostimulation and sonogenetic control." @default.
- W3170767285 created "2021-06-22" @default.
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- W3170767285 date "2021-06-13" @default.
- W3170767285 modified "2023-10-16" @default.
- W3170767285 title "Ultrasound mediated cellular deflection results in cellular depolarization" @default.
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- W3170767285 doi "https://doi.org/10.1101/2021.06.11.447976" @default.
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