1. Enock Jonathan

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    1. Mentioned In 5 Articles

    2. Design and development of a galvanometer inspired dual beam optical coherence tomography system for flow velocity quantification of the microvasculature

      Design and development of a galvanometer inspired dual beam optical coherence tomography system for flow velocity quantification of the microvasculature
      This paper reports initial experimentation of a dual beam flow velocity estimation setup based on optical coherence tomography (OCT) for biomedical applications. The proposed work incorporates a low cost switching mechanism (rotating galvanometer mirror) for optical signal discrimination between adjacent fiber channels enabling quasisimultaneous multiple specimen scanning. A cascaded interferometric design is used with two sample output arms orientated in parallel to eachother. A cross-correlation computation between these two parallel ...
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    3. Correlation mapping method for generating microcirculation morphology from optical coherence tomography (OCT) intensity images

      Correlation mapping method for generating microcirculation morphology from optical coherence tomography (OCT) intensity images
      ...lation morphology from optical coherence tomography (OCT) intensity images&publicationDate=17 DEC 2010&author=Enock Jonathan,Joey Enfield,Martin J. Leahy&startPage=n/a&endPage=n/a©right=Copyright %C2%A9 2010 WILEY%E2...
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  2. About Enock Jonathan

    Enock Jonathan

    Enock Jonathan is at NUI Galway in Ireland.  Dr. Jonathan joined the group in 2009. He holds a PhD in the field of Optical Coherence Tomography (OCT) from the Nanyang Technological University (NTU), Singapore. His main interest is electro-optic instrumentation, noninvasive high resolution imaging, sensing and characterisation and novel processing algorithms. He is the pioneer of correlation mapping Optical Coherence Tomography (cmOCT), a technique for visualising the living microcirculation in greater detail from processing intensity OCT image datasets. cmOCT makes it possible to study the microcirculation under different physiological and pathophysiological conditions.