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- W3004356129 abstract "Abstract Sonogenetics, which uses ultrasound to noninvasively control cells genetically modified with ultrasound-sensitive ion channels, can be a powerful tool for investigating intact brain circuits. Here we show that TRPV1 is an ultrasound-sensitive ion channel that can modify the activity of TRPV1-expressing cells in vitro when exposing to focused ultrasound. We also show that focused ultrasound exposure at the mouse brain in vivo can selectively activate neurons that are genetically modified to express TRPV1. We demonstrate that precise manipulation of neural activity via TRPV1-based sonogenetics can be achieved by spatiotemporal control of ultrasound-induced heating. The focused ultrasound exposure is safe based on our inspection of neuronal integrity, apoptosis, and inflammation markers. This sonogenetic tool enables noninvasive, cell-type specific, spatiotemporally controlled modulation of mammalian brain activity." @default.
- W3004356129 created "2020-02-07" @default.
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- W3004356129 date "2020-01-28" @default.
- W3004356129 modified "2023-09-27" @default.
- W3004356129 title "Sonogenetics for noninvasive and cellular-level neuromodulation in rodent brain" @default.
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- W3004356129 doi "https://doi.org/10.1101/2020.01.28.919910" @default.
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