Literature DB >> 17063147

A direct method for measuring mouse capillary cortical blood volume using multiphoton laser scanning microscopy.

Pascale Vérant1, Raphaël Serduc, Boudewijn Van Der Sanden, Chantal Rémy, Jean-Claude Vial.   

Abstract

Knowledge of the blood volume per unit volume of brain tissue is important for understanding brain function in health and disease. We describe a direct method using two-photon laser scanning microscopy to obtain in vivo the local capillary blood volume in the cortex of anesthetized mouse. We infused fluorescent dyes in the circulating blood and imaged the blood vessels, including the capillaries, to a depth of 600 microm below the dura at the brain surface. Capillary cortical blood volume (CCBV) was calculated without any form recognition and segmentation, by normalizing the total fluorescence measured at each depth and integrating the collected intensities all over the stack. Theoretical justifications are presented and numerical simulations were performed to validate this method which was weakly sensitive to background noise. Then, CCBV had been estimated on seven healthy mice between 2%+/-0.3% and 2.4%+/-0.4%. We showed that this measure of CCBV is reproductible and that this method is highly sensitive to the explored zones in the cortex (vessel density and size). This method, which dispenses with form recognition, is rapid and would allow to study in vivo temporal and highly resolute spatial variations of CCBV under different conditions or stimulations.

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Year:  2006        PMID: 17063147     DOI: 10.1038/sj.jcbfm.9600415

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  13 in total

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6.  Correlations of neuronal and microvascular densities in murine cortex revealed by direct counting and colocalization of nuclei and vessels.

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7.  Multi-photon microscopy with a low-cost and highly efficient Cr:LiCAF laser.

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Journal:  Opt Express       Date:  2008-12-08       Impact factor: 3.894

8.  Three-dimensional imaging of the mouse neurovasculature with magnetic resonance microscopy.

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Review 9.  Pharmacokinetics and pharmacodynamics utilizing unbound target tissue exposure as part of a disposition-based rationale for lead optimization of benzoxaboroles in the treatment of Stage 2 Human African Trypanosomiasis.

Authors:  Stephen Wring; Eric Gaukel; Bakela Nare; Robert Jacobs; Beth Beaudet; Tana Bowling; Luke Mercer; Cyrus Bacchi; Nigel Yarlett; Ryan Randolph; Robin Parham; Cindy Rewerts; Jacob Platner; Robert Don
Journal:  Parasitology       Date:  2013-09-05       Impact factor: 3.234

10.  CLARITY for High-resolution Imaging and Quantification of Vasculature in the Whole Mouse Brain.

Authors:  Lin-Yuan Zhang; Pan Lin; Jiaji Pan; Yuanyuan Ma; Zhenyu Wei; Lu Jiang; Liping Wang; Yaying Song; Yongting Wang; Zhijun Zhang; Kunlin Jin; Qian Wang; Guo-Yuan Yang
Journal:  Aging Dis       Date:  2018-04-01       Impact factor: 6.745

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