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Spatial light interference microscopy (SLIM)

Optics Express · 2011 · Vol. 19(2) · pp. 1016–1016
Zhuo WangLarry J. MilletMustafa MirHuafeng DingSakulsuk UnarunotaiJohn A. RogersMartha U. GilletteGabriel Popescu

Abstract

We present spatial light interference microscopy (SLIM) as a new optical microscopy technique, capable of measuring nanoscale structures and dynamics in live cells via interferometry. SLIM combines two classic ideas in light imaging: Zernike's phase contrast microscopy, which renders high contrast intensity images of transparent specimens, and Gabor's holography, where the phase information from the object is recorded. Thus, SLIM reveals the intrinsic contrast of cell structures and, in addition, renders quantitative optical path-length maps across the sample. The resulting topographic accuracy is comparable to that of atomic force microscopy, while the acquisition speed is 1,000 times higher. We illustrate the novel insight into cell dynamics via SLIM by experiments on primary cell cultures from the rat brain. SLIM is implemented as an add-on module to an existing phase contrast microscope, which may prove instrumental in impacting the light microscopy field at a large scale.

Digital Holography and MicroscopyOptical Coherence Tomography ApplicationsAdvanced Fluorescence Microscopy TechniquesOpticsInterference microscopyInterference (communication)MicroscopySpatial frequencySpatial filterMaterials sciencePhysicsComputer scienceTelecommunications

MeSH terms

AnimalsCells, CulturedEquipment DesignHolographyImage EnhancementLightingMicroscopy, InterferenceNeuronsEquipment Failure AnalysisRats

Funding

  • National Science Foundation
  • Grainger Foundation
  • National Institute of Mental Health
  • National Institute of Child Health and Human Development
Citations
692
FWCI
29.24
field-weighted impact
References
32
Percentile
100%
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Citations per year
Cited by
Quantitative phase imaging in biomedicine
Nature Photonics · 2018 · 1,741 citations
References
Optical imaging of cell mass and growth dynamics
American Journal of Physiology-Cell Physiology · 2008 · 538 citations
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