Literature DB >> 34045786

Hyperspectral imaging fluorescence excitation scanning spectral characteristics of remodeled mouse arteries.

Joshua Deal1,2,3, Stuart J McFarland4, Anna Robinson4, Anna Alford5, David S Weber6, Thomas C Rich2,3, Silas J Leavesley1,2,3.   

Abstract

Coronary artery disease (CAD), or atherosclerosis, is responsible for nearly a third of all American deaths annually. Detection of plaques and differentiation of plaque stage remains a complicating factor for treatment. Classification of plaque before significant blockage or rupture could inform clinical decisions and prevent mortality. Current detection methods are either nonspecific, slow, or require the use of potentially harmful contrast agents. Recent advances in hyperspectral imaging could be used to detect changes in the autofluorescence of arteries associated with vessel remodeling and subsequent plaque formation and could detect and classify existing lesions. Here, we present data comparing spectral image characteristics of a mouse model designed to undergo vessel remodeling. C57Bl/6 mice underwent ligation of three of four caudal branches of the left common carotid artery (left external carotid, internal carotid, and occipital artery) with the superior thyroid artery left intact under IACUC approved protocol. Vessels were harvested at a variety of timepoints to compare degrees of remodeling, including 4 weeks and 5 months post-surgery. Immediately following harvest, vessels were prepared by longitudinal opening to expose the luminal surface to a 20X objective. A custom inverted microscope (TE-2000, Nikon Instruments) with a Xe arc lamp and thin film tunable filter arrary (Versachrome, Semrock, Inc.) were used to achieve spectral imaging. Excitation scans utilized wavelengths between 340 nm and 550 nm in 5 nm increments. Hyperspectral data were generated and analyzed with custom Matlab scripts and visualized in ENVI. Preliminary data suggest consistent spectral features associated with control and remodeled vessels.

Entities:  

Keywords:  Atherosclerosis; Fluorescence; Hyperspectral; Linear Spectral Unmixing; Microscopy; Remodel; Signature; Spectroscopy

Year:  2019        PMID: 34045786      PMCID: PMC8151224          DOI: 10.1117/12.2510770

Source DB:  PubMed          Journal:  Proc SPIE Int Soc Opt Eng        ISSN: 0277-786X


  21 in total

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Journal:  J Biophotonics       Date:  2011-10-11       Impact factor: 3.207

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Authors:  Vyacheslav A Korshunov; Bradford C Berk
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Authors:  Douglas Nam; Chih-Wen Ni; Amir Rezvan; Jin Suo; Klaudia Budzyn; Alexander Llanos; David Harrison; Don Giddens; Hanjoong Jo
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Review 7.  Autofluorescence spectroscopy and imaging: a tool for biomedical research and diagnosis.

Authors:  A C Croce; G Bottiroli
Journal:  Eur J Histochem       Date:  2014-12-12       Impact factor: 3.188

Review 8.  Imaging of the unstable plaque: how far have we got?

Authors:  Christian M Matter; Matthias Stuber; Matthias Nahrendorf
Journal:  Eur Heart J       Date:  2009-10-15       Impact factor: 29.983

9.  Multimodality imaging of carotid atherosclerotic plaque: Going beyond stenosis.

Authors:  Divyata Hingwala; Chandrasekharan Kesavadas; Padmavathy N Sylaja; Bejoy Thomas; Tirur Raman Kapilamoorthy
Journal:  Indian J Radiol Imaging       Date:  2013-01

10.  Insight On Colorectal Carcinoma Infiltration by Studying Perilesional Extracellular Matrix.

Authors:  Manuela Nebuloni; Luca Albarello; Annapaola Andolfo; Cinzia Magagnotti; Luca Genovese; Irene Locatelli; Giovanni Tonon; Erika Longhi; Pietro Zerbi; Raffaele Allevi; Alessandro Podestà; Luca Puricelli; Paolo Milani; Armando Soldarini; Andrea Salonia; Massimo Alfano
Journal:  Sci Rep       Date:  2016-03-04       Impact factor: 4.379

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