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Model-based correction of rapid thermal confounds in fluorescence neuroimaging of targeted perturbation.

Neda DavoudiHector EstradaAli ÖzbekShy ShohamDaniel Razansky
Published in: Neurophotonics (2024)
The developed method for canceling transient thermal fluorescence quenching could also find applications with optical stimulation techniques to monitor thermal effects and disentangle them from neural responses. This approach may help deepen our understanding of the mechanisms and macroscopic effects of ultrasound neuromodulation, further paving the way for tailoring the stimulation regimes toward specific applications.
Keyphrases
  • energy transfer
  • single molecule
  • magnetic resonance imaging
  • high resolution
  • cancer therapy
  • high speed
  • ultrasound guided
  • cerebral ischemia
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