Refining hemodynamic correction in in vivo wide-field fluorescent imaging through linear regression analysis. Academic Article uri icon

Overview

abstract

  • Accurate interpretation of in vivo wide-field fluorescent imaging (WFFI) data requires precise separation of raw fluorescence signals into neural and hemodynamic components. The classical Beer-Lambert law-based approach, which uses concurrent 530-nm illumination to estimate relative changes in cerebral blood volume (CBV), fails to account for the scattering and reflection of 530-nm photons from non-neuronal components leading to biased estimates of CBV changes and subsequent misrepresentation of neural activity. This study introduces a novel linear regression approach designed to overcome this limitation. This correction provides a more reliable representation of CBV changes and neural activity in fluorescence data. Our method is validated across multiple datasets, demonstrating its superiority over the classical approach.

publication date

  • August 30, 2024

Research

keywords

  • Hemodynamics

Identity

Scopus Document Identifier

  • 85202979116

Digital Object Identifier (DOI)

  • 10.1016/j.neuroimage.2024.120816

PubMed ID

  • 39209071

Additional Document Info

volume

  • 299