Holographic Image Acquisition

Holographic image acquisition is a computational imaging approach that records and reconstructs the three-dimensional structure of objects by capturing the light field rather than intensity alone. Typically, coherent light scattered by a sample interferes with a reference beam on a camera, encoding phase and amplitude information in a hologram; numerical algorithms then reconstruct images at different depths. In bioengineering, this method enables label-free visualization of cells, microorganisms, and tissue structures while preserving samples for continued observation. Its quantitative, three-dimensional measurements support studies of cell morphology, growth, motility, and interactions, offering valuable insight for diagnostics, tissue engineering, and biomedical research.

Holographic Image Acquisition - Related Videos

Research

JoVE Journal - Engineering

Construction of a High Resolution Microscope with Conventional and Holographic Optical Trapping Capabilities

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Cited by 4 •

2013

The system described herein employs a traditional optical trap as well as an independent holographic optical trapping line, capable of creating and manipulating multiple traps. This allows for the creation of complex geometric arrangements of refractive particles while also permitting simultaneous high-speed, high-resolution measurements of the activity of biological enzymes.

Two-Photon Holographic Microscopy to Study Neural Activity and Connectivity in a Mouse Model

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2025

Source: Kato, D. et. al., Evaluation and Manipulation of Neural Activity Using Two-Photon Holographic Microscopy. J. Vis. Exp. (2022)This video demonstrates the two-photon imaging technique combined with optogenetics using holographic microscopy. Using a spatial light modulator, this technique enables precise neuronal stimulation expressing the red-light-sensitive protein and calcium imaging with minimal photodamage. This approach provides insights into the functional connectivity and...

Multimodal Quantitative Phase Imaging with Digital Holographic Microscopy Accurately Assesses Intestinal Inflammation and Epithelial Wound Healing

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Cited by 18 •

2016

Accurate assessment of anti-inflammatory effects is of utmost importance for the evaluation of potential new drugs for the treatment of inflammatory bowel disease. Digital holographic microscopy provides assessment of inflammation in murine and human colonic tissue samples as well as automated multimodal evaluation of epithelial wound healing in vitro.

Digital Inline Holographic Microscopy (DIHM) of Weakly-scattering Subjects

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Cited by 9 •

2014

The three-dimensional locations of weakly-scattering objects can be uniquely identified using digital inline holographic microscopy (DIHM), which involves a minor modification to a standard microscope. Our software uses a simple imaging heuristic coupled with Rayleigh-Sommerfeld back-propagation to yield the three-dimensional position and geometry of a microscopic phase object.

Uncovering Hidden Dynamics of Natural Photonic Structures Using Holographic Imaging

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Cited by 6 •

2022

The paper is primarily focused on the combined power of optical (linear and nonlinear) and holographic methods used to reveal phenomena at the nanoscale. The results obtained from the biophotonic and oscillatory chemical reactions' studies are given as representative examples, highlighting holography's ability to reveal dynamics at a nanoscale.

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