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1.
Opt Lett ; 41(16): 3767-70, 2016 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-27519084

RESUMEN

We present the application of scanning focused refractive index microscopy in the complex refractive index measurement of turbid media. An extra standard scattering layer is placed in front of the detector to perform scattering transformation on the reflected light. The principle of the scattering transformation is elaborated theoretically. The influence of the sample scattering is deeply and effectively suppressed experimentally. As a proof of the feasibility and accuracy of the proposed method, we demonstrate experimental data of 20% and 30% Intralipid solutions that are commonly used as phantom media for light propagation studies.

2.
J Biomed Opt ; 21(8): 86016, 2016 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-27564318

RESUMEN

We report the quantitative refractive index (RI) imaging of cocultured cells in their living environment by scanning focused refractive index microscopy (SFRIM). Mouse microglial cells and synovial cells are cocultured on the top surface of a trapezoid prism. The RI imaging of living cells is obtained in a reflection-type method. The RI information is deduced with the simple derivative total internal reflection method, where a complex retrieval algorithm or reconstruction process is unnecessary. The outline of each cell is determined according to the RI value compared with that of the immersion liquid. The cocultured cells can be discriminated in the RI image. The measurement is nondestructive and label-free. The experimental results prove that SFRIM is a promising tool in the field of biological optics.


Asunto(s)
Microglía/citología , Microscopía , Imagen Óptica/métodos , Líquido Sinovial/citología , Animales , Técnicas de Cocultivo , Ratones , Refractometría
3.
Sci Rep ; 4: 5647, 2014 Jul 10.
Artículo en Inglés | MEDLINE | ID: mdl-25008374

RESUMEN

We present a novel scanning focused refractive-index microscopy (SFRIM) technique to obtain the refractive index (RI) profiles of objects. The method uses a focused laser as the light source, and combines the derivative total reflection method (DTRM), projection magnification, and scanning technique together. SFRIM is able to determine RIs with an accuracy of 0.002, and the central spatial resolution achieved is 1 µm, which is smaller than the size of the focal spot. The results of measurements carried out on cedar oil and a gradient-refractive-index (GRIN) lens agree well with theoretical expectations, verifying the accuracy of SFRIM. Furthermore, using SFRIM, to the best of our knowledge we have extracted for the first time the RI profile of a periodically modulated photosensitive gelatin sample. SFRIM is the first RI profile-resolved reflected light microscopy technique that can be applied to scattering and absorbing samples. SFRIM enables the possibility of performing RI profile measurements in a variety of applications, including optical waveguides, photosensitive materials and devices, photorefractive effect studies, and RI imaging in biomedical fields.

4.
J Biomed Opt ; 17(7): 075011, 2012 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-22894483

RESUMEN

We investigate the effect of tissue fluid on the measurement of complex refractive index (RI) of animal tissue. A new model is proposed and verified through experimental results of simulation samples made of glycerol and methyl-red-doped poly(methyl methacrylate). Coupled with polarized optical reflectance measurements performed on several kinds of animal muscle tissues, RIs were resolved using the new model. We find that the tissue fluid existing at the prism-sample interface is unavoidable. We also find that with a change of proportion of the tissue fluid, the RI of muscle tissue can still be measured using the new model.


Asunto(s)
Algoritmos , Artefactos , Líquidos Corporales/química , Modelos Biológicos , Músculo Esquelético/química , Refractometría/métodos , Animales , Simulación por Computador , Reproducibilidad de los Resultados , Sensibilidad y Especificidad , Porcinos
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