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Imaging brain hemodynamic changes during rat forepaw electrical stimulation using functional photoacoustic microscopy
Journal article   Peer reviewed

Imaging brain hemodynamic changes during rat forepaw electrical stimulation using functional photoacoustic microscopy

Lun-De Liao, Meng-Lin Li, Hsin-Yi Lai, Yen-Yu I. Shih, Yu-Chun Lo, Siny Tsang, Paul Chang-Po Chao, Chin-Teng Lin, Fu-Shan Jaw and You-Yin Chen
NeuroImage, Vol.52(2), pp.562-570
08/2010

Abstract

Electrical stimulation Functional photoacoustic microscopy (fPAM) Hemoglobin oxygen saturation (SO2) Total hemoglobin concentration (HbT)
The present study reported the development of a novel functional photoacoustic microscopy (fPAM) system for investigating hemodynamic changes in rat cortical vessels associated with electrical forepaw stimulation. Imaging of blood optical absorption by fPAM at multiple appropriately-selected and distinct wavelengths can be used to probe changes in total hemoglobin concentration (HbT, i.e., cerebral blood volume [CBV]) and hemoglobin oxygen saturation (SO 2 ). Changes in CBV were measured by images acquired at a wavelength of 570nm (Λ 570 ), an isosbestic point of the molar extinction spectra of oxy- and deoxy-hemoglobin, whereas SO 2 changes were sensed by pixel-wise normalization of images acquired at Λ 560 or Λ 600 to those at Λ 570 . We demonstrated the capacity of the fPAM system to image and quantify significant contralateral changes in both SO 2 and CBV driven by electrical forepaw stimulation. The fPAM system complements existing imaging techniques, with the potential to serve as a favorable tool for explicitly studying brain hemodynamics in animal models. © 2010 Elsevier Inc.

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