Multi-parametric quantitative microvascular imaging with optical-resolution photoacoustic microscopy in vivo
Abstract
Many diseases involve either the formation of new blood vessels (e.g., tumor angiogenesis) or the damage of existing ones (e.g., diabetic retinopathy) at the microcirculation level. Optical-resolution photoacoustic microscopy (OR-PAM), capable of imaging microvessels in 3D in vivo down to individual capillaries using endogenous contrast, has the potential to reveal microvascular information critical to the diagnosis and staging of microcirculation-related diseases. In this study, we have developed a dedicated microvascular quantification (MQ) algorithm for OR-PAM to automatically quantify multiple microvascular morphological parameters in parallel, including the vessel diameter distribution, the microvessel density, the vascular tortuosity, and the fractal dimension. The algorithm has been tested on in vivo OR-PAM images of a healthy mouse, demonstrating high accuracy for microvascular segmentation and quantification. The developed MQ algorithm for OR-PAM may greatly facilitate quantitative imaging of tumor angiogenesis and many other microcirculation related diseases in vivo.
Additional Information
© 2014 Optical Society of America. Received 28 Oct 2013; revised 1 Dec 2013; accepted 5 Dec 2013; published 15 Jan 2014. This work was supported in part by the National Natural Science Foundation of China grant: 61205203; the National Key Basic Research (973) Program of China: 2014CB744503; the Shenzhen Science and Technology Innovation Committee grants: ZDSY20130401165820357, KQCX20120816155844962, CXZZ20120617113635699, and JCYJ20120615125857842.Attached Files
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Additional details
- Eprint ID
- 69130
- Resolver ID
- CaltechAUTHORS:20160720-095840945
- National Natural Science Foundation of China
- 61205203
- National Key Basic Research (973) Program of China
- 2014CB744503
- Shenzhen Science and Technology Innovation Committee
- ZDSY20130401165820357
- Shenzhen Science and Technology Innovation Committee
- KQCX20120816155844962
- Shenzhen Science and Technology Innovation Committee
- CXZZ20120617113635699
- Shenzhen Science and Technology Innovation Committee
- JCYJ20120615125857842
- Created
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2016-07-26Created from EPrint's datestamp field
- Updated
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2021-11-11Created from EPrint's last_modified field