Optical coherence microscopy with a split-spectrum image reconstruction method for temporal-dynamics contrast-based imaging of intracellular motility

  • Kang, Yong Guk; 
  • Canoy, Raymart Jay E.; 
  • Jang, Yongjun; 
  • Santos, Ana Rita M. P.; 
  • Son, Inwoo; 
  • ... Park, Yongdoo; 
  • 외 1명
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3

초록

Biomedical researchers use optical coherence microscopy (OCM) for its high resolution in real-time label-free tomographic imaging. However, OCM lacks bioactivity-related functional contrast. We developed an OCM system that can measure changes in intracellular motility (indicating cellular process states) via pixel-wise calculations of intensity fluctuations from metabolic activity of intracellular components. To reduce image noise, the source spectrum is split into five using Gaussian windows with 50% of the full bandwidth. The technique verified that F-actin fiber inhibition by Y-27632 reduces intracellular motility. This finding could be used to search for other intracellular-motility-associated therapeutic strategies for cardiovascular diseases.

키워드

ULTRAHIGH-RESOLUTION; BLOOD-FLOW; TOMOGRAPHY; POLARIZATION; KINASE; SPEED
제목
Optical coherence microscopy with a split-spectrum image reconstruction method for temporal-dynamics contrast-based imaging of intracellular motility
저자
Kang, Yong Guk; Canoy, Raymart Jay E.; Jang, Yongjun; Santos, Ana Rita M. P.; Son, Inwoo; Kim, Beop-Min; Park, Yongdoo
DOI
10.1364/BOE.478264
발행일
2023-02
유형
Article
저널명
Biomedical Optics Express
권
14
호
2
페이지
577 ~ 592