Functional photoacoustic microscopy of hemodynamics: a review
Functional blood imaging can reflect tissue metabolism and organ viability, which is important for life science and biomedical studies. However, conventional imaging modalities either cannot provide sufficient contrast or cannot support simultaneous multi-functional imaging for hemodynamics. Photoac...
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Published in | Biomedical engineering letters Vol. 12; no. 2; pp. 97 - 124 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Korea
The Korean Society of Medical and Biological Engineering
01.05.2022
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Subjects | |
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Abstract | Functional blood imaging can reflect tissue metabolism and organ viability, which is important for life science and biomedical studies. However, conventional imaging modalities either cannot provide sufficient contrast or cannot support simultaneous multi-functional imaging for hemodynamics. Photoacoustic imaging, as a hybrid imaging modality, can provide sufficient optical contrast and high spatial resolution, making it a powerful tool for in vivo vascular imaging. By using the optical-acoustic confocal alignment, photoacoustic imaging can even provide subcellular insight, referred as optical-resolution photoacoustic microscopy (OR-PAM). Based on a multi-wavelength laser source and developed the calculation methods, OR-PAM can provide multi-functional hemodynamic microscopic imaging of the total hemoglobin concentration (C
Hb
), oxygen saturation (sO
2
), blood flow (BF), partial oxygen pressure (pO
2
), oxygen extraction fraction, and metabolic rate of oxygen (MRO
2
). This concise review aims to systematically introduce the principles and methods to acquire various functional parameters for hemodynamics by photoacoustic microscopy in recent studies, with characteristics and advantages comparison, typical biomedical applications introduction, and future outlook discussion. |
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AbstractList | Functional blood imaging can reflect tissue metabolism and organ viability, which is important for life science and biomedical studies. However, conventional imaging modalities either cannot provide sufficient contrast or cannot support simultaneous multi-functional imaging for hemodynamics. Photoacoustic imaging, as a hybrid imaging modality, can provide sufficient optical contrast and high spatial resolution, making it a powerful tool for in vivo vascular imaging. By using the optical-acoustic confocal alignment, photoacoustic imaging can even provide subcellular insight, referred as optical-resolution photoacoustic microscopy (OR-PAM). Based on a multi-wavelength laser source and developed the calculation methods, OR-PAM can provide multi-functional hemodynamic microscopic imaging of the total hemoglobin concentration (C
Hb
), oxygen saturation (sO
2
), blood flow (BF), partial oxygen pressure (pO
2
), oxygen extraction fraction, and metabolic rate of oxygen (MRO
2
). This concise review aims to systematically introduce the principles and methods to acquire various functional parameters for hemodynamics by photoacoustic microscopy in recent studies, with characteristics and advantages comparison, typical biomedical applications introduction, and future outlook discussion. Functional blood imaging can reflect tissue metabolism and organ viability, which is important for life science and biomedical studies. However, conventional imaging modalities either cannot provide sufficient contrast or cannot support simultaneous multi-functional imaging for hemodynamics. Photoacoustic imaging, as a hybrid imaging modality, can provide sufficient optical contrast and high spatial resolution, making it a powerful tool for in vivo vascular imaging. By using the optical-acoustic confocal alignment, photoacoustic imaging can even provide subcellular insight, referred as optical-resolution photoacoustic microscopy (OR-PAM). Based on a multi-wavelength laser source and developed the calculation methods, OR-PAM can provide multi-functional hemodynamic microscopic imaging of the total hemoglobin concentration (C ), oxygen saturation (sO ), blood flow (BF), partial oxygen pressure (pO ), oxygen extraction fraction, and metabolic rate of oxygen (MRO ). This concise review aims to systematically introduce the principles and methods to acquire various functional parameters for hemodynamics by photoacoustic microscopy in recent studies, with characteristics and advantages comparison, typical biomedical applications introduction, and future outlook discussion. |
Author | Liu, Chao Wang, Lidai |
Author_xml | – sequence: 1 givenname: Chao orcidid: 0000-0003-3411-0833 surname: Liu fullname: Liu, Chao organization: Department of Biomedical Engineering, City University of Hong Kong, City University of Hong Kong Shenzhen Research Institute – sequence: 2 givenname: Lidai surname: Wang fullname: Wang, Lidai email: lidawang@cityu.edu.hk organization: Department of Biomedical Engineering, City University of Hong Kong, City University of Hong Kong Shenzhen Research Institute |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35529339$$D View this record in MEDLINE/PubMed |
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Keywords | Hemodynamics Photoacoustic imaging Multi-functional imaging Calculation methods |
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