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High pulse energy supercontinuum laser for spectroscopic photoacoustic imaging of lipids in the 1650-1850 nm window

2017/12/21 by Manoj K. Dasa, Christos Markos, Dasa, Manoj Kumar +5
Biochemistry, Genetics and Molecular Biology · Engineering · #Biological Physics (physics.bio-ph) #FOS: Physical sciences #Optics (physics.optics) #Photoacoustic and Ultrasonic Imaging #Spectroscopy Techniques in Biomedical and Chemical Research #Thermography and Photoacoustic Techniques

paper · pdf · doi:10.48550/arxiv.1712.07883

openalex publication_date 2017/12/21 · openalex created_date 2018/01/05 · openalex updated_date 2026/07/28

Abstract

Detection and identification of lipids are highly coveted for the interrogation of chronic diseases such as atherosclerosis and myocardial infarction. Intravascular photoacoustic imaging (IVPA) and deep tissue imaging are modern techniques, which rely on complex near infrared (NIR) optical parametric oscillators (OPOs) and other high-power solid-state laser systems for the diagnosis, which in turn make the systems bulky and expensive. In this work, we propose a cost-effective directly modulated high pulse energy supercontinuum source (operating in kHz regime) based on a standard optical fiber with pulse energy density as high as ~ 26 nJ/nm. We demonstrate how such supercontinuum source combined with a tunable filter can be highly suitable for vibration-based photoacoustic imaging and spectroscopy of lipids in the molecular overtone band of lipids (1650-1850 nm). We show the successful discrimination of two different lipids (cholesterol and lipid in adipose tissue) and the photoacoustic cross-sectional scan of lipid-rich adipose tissue at three different locations. The proposed high pulse energy supercontinuum laser paves a new direction towards compact, broadband and cost-effective source for multi-spectral spectroscopic photoacoustic imaging.

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