Open Access
3 August 2022 Noninvasive hemoglobin sensing and imaging: optical tools for disease diagnosis
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Abstract

Significance: Measurement and imaging of hemoglobin oxygenation are used extensively in the detection and diagnosis of disease; however, the applied instruments vary widely in their depth of imaging, spatiotemporal resolution, sensitivity, accuracy, complexity, physical size, and cost. The wide variation in available instrumentation can make it challenging for end users to select the appropriate tools for their application and to understand the relative limitations of different methods.

Aim: We aim to provide a systematic overview of the field of hemoglobin imaging and sensing.

Approach: We reviewed the sensing and imaging methods used to analyze hemoglobin oxygenation, including pulse oximetry, spectral reflectance imaging, diffuse optical imaging, spectroscopic optical coherence tomography, photoacoustic imaging, and diffuse correlation spectroscopy.

Results: We compared and contrasted the ability of different methods to determine hemoglobin biomarkers such as oxygenation while considering factors that influence their practical application.

Conclusions: We highlight key limitations in the current state-of-the-art and make suggestions for routes to advance the clinical use and interpretation of hemoglobin oxygenation information.

© The Authors. Published by SPIE under a Creative Commons Attribution 4.0 International License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
Michaela Taylor-Williams, Graham Spicer, Gemma Bale, and Sarah E. Bohndiek "Noninvasive hemoglobin sensing and imaging: optical tools for disease diagnosis," Journal of Biomedical Optics 27(8), 080901 (3 August 2022). https://doi.org/10.1117/1.JBO.27.8.080901
Received: 6 April 2022; Accepted: 27 June 2022; Published: 3 August 2022
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CITATIONS
Cited by 10 scholarly publications.
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KEYWORDS
Tissue optics

Oximetry

Optical coherence tomography

Absorption

Imaging systems

Optical imaging

Blood

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