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Detection of Microcalcification in Tissue by Raman Spectroscopy
Omer Tzang
*
, Kobi Kfir
, Eli Flaxer
,
Ori Cheshnovsky
,
Shmuel Einav
*
Corresponding author for this work
School of Chemistry
School of Biomedical Engineering
Tel Aviv University
Afeka Tel Aviv Academic College of Engineering
Stony Brook University
Research output
:
Contribution to journal
›
Article
›
peer-review
7
Scopus citations
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Keyphrases
Raman Spectroscopy
100%
Microcalcification
100%
Microcalcification Detection
100%
Spectrum Map
66%
Thin Cap Fibrous Atheroma
66%
Molecular Structure
33%
Diagnostic Tool
33%
Early Detection
33%
Acute Coronary Event
33%
Atherosclerotic Plaque
33%
Catheter
33%
Cellular Level
33%
Non-destructive
33%
Hydroxyapatite
33%
Quantitative Characterization
33%
Hydroxyapatite Crystals
33%
Spectral-spatial Feature
33%
Biological Tissue
33%
Postmortem Tissue
33%
Raman Spectra
33%
Chemical Mapping
33%
3D Scanning
33%
Plaque Composition
33%
Raman Microscopy
33%
Spectroscopic Approach
33%
Medicine and Dentistry
Raman Spectrometry
100%
Microcalcification
100%
Atherosclerotic Plaque
75%
Hydroxylapatite
50%
Fibrous Cap
50%
Ex Vivo
25%
Volociximab
25%
Raman Microscopy
25%
Engineering
Early Detection
100%
Biological Tissue
100%