Correlation mapping: Rapid method for retrieving microcirculation morphology from optical coherence tomography intensity images

Research output: Chapter in Book or Conference Publication/ProceedingConference Publicationpeer-review

5 Citations (Scopus)

Abstract

The microcirculation plays a critical role is maintaining organ health and function by serving as a vascular are where trophic metabolism exchanges between blood and tissue takes place. To facilitate regular assessment in vivo, non-invasive microcirculation imagers are required in clinics. Among this group of clinical devices, are those that render microcirculation morphology such as nailfold capillaroscopy, a common device for early diagnosis and monitoring of microangiopathies. However, depth ambiguity disqualify this and other similar techniques in medical tomography where due to the 3-D nature of biological organs, imagers that support depth-resolved 2-D imaging and 3-D image reconstruction are required. Here, we introduce correlation map OCT (cmOCT), a promising technique for microcirculation morphology imaging that combines standard optical coherence tomography and an agile imaging analysis software based on correlation statistic. Promising results are presented of the microcirculation morphology images of the brain region of a small animal model as well as measurements of vessel geometry at bifurcations, such as vessel diameters, branch angles. These data will be useful for obtaining cardiovascular related characteristics such as volumetric flow, velocity profile and vessel-wall shear stress for circulatory and respiratory system.

Original languageEnglish
Title of host publicationDynamics and Fluctuations in Biomedical Photonics VIII
DOIs
Publication statusPublished - 2011
Externally publishedYes
EventDynamics and Fluctuations in Biomedical Photonics VIII - San Francisco, CA, United States
Duration: 22 Jan 201124 Jan 2011

Publication series

NameProgress in Biomedical Optics and Imaging - Proceedings of SPIE
Volume7898
ISSN (Print)1605-7422

Conference

ConferenceDynamics and Fluctuations in Biomedical Photonics VIII
Country/TerritoryUnited States
CitySan Francisco, CA
Period22/01/1124/01/11

Keywords

  • Animal model
  • Correlation mapping
  • Microcirculation
  • Mouse brain
  • Optical coherence tomography
  • Vessel goemetry

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