Optical Reconstruction

Optical reconstruction is the process of recovering an image, surface, or three-dimensional structure from measurements of light, making it valuable for visualizing biological tissues that cannot be assessed directly. The method treats image formation as an inverse problem: optical signals recorded by cameras or detectors are analyzed with models of light propagation, scattering, and absorption, then computational algorithms estimate the structures that produced those signals. In medicine, optical reconstruction supports microscopy, tissue imaging, anatomical visualization, and image-guided procedures. By converting indirect measurements into interpretable spatial information, it can improve noninvasive assessment, quantitative analysis, and the development of diagnostic technologies.

Optical Reconstruction - Related Videos

Research

JoVE Journal - Biology

Direct Stochastic Optical Reconstruction Microscopy of Extracellular Vesicles in Three Dimensions

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Cited by 8 •

2021

Direct stochastic optical reconstruction microscopy (dSTORM) is used to bypass the typical diffraction limit of light microscopy and to view exosomes at the nanometer scale. It can be employed in both two and three dimensions to characterize exosomes.

Three-dimensional Optical-resolution Photoacoustic Microscopy

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Cited by 27 •

2011

Optical-resolution photoacoustic microscopy (OR-PAM) is an emerging technology capable of imaging optical absorption contrasts in vivo with cellular resolution and sensitivity. Here, we provide a visualized instruction on the experimental protocols of OR-PAM, including system configuration, system alignment, typical in vivo experimental procedures, and functional imaging schemes.

Quantitative Optical Microscopy: Measurement of Cellular Biophysical Features with a Standard Optical Microscope

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Cited by 11 •

2014

We describe the use of a standard optical microscope to perform quantitative measurements of cellular mass, volume, and density through a combination of bright field and differential interference contrast imagery.

Imaging Intermediate Filaments and Microtubules with 2-dimensional Direct Stochastic Optical Reconstruction Microscopy

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Cited by 6 •

2018

The overall goal of this methodology is to give the optimal experimental conditions from sample preparation to image acquisition and reconstruction in order to perform 2D dual color dSTORM images of microtubules and intermediate filaments in fixed cells...

Research

JoVE Journal - Biochemistry
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High-Throughput Total Internal Reflection Fluorescence and Direct Stochastic Optical Reconstruction Microscopy Using a Photonic Chip

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Cited by 7 •

2019

Chip-based super-resolution optical microscopy is a novel approach to fluorescence microscopy and offers advantages in cost effectiveness and throughput. Here, the protocols for chip preparation and imaging are shown for TIRF microscopy and localization-based super-resolution microscopy.

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