Shadow Imaging

Shadow imaging is a label-free optical technique that forms images from the light blocked or scattered by an object, allowing biological specimens to be observed without fluorescent tags. In a typical setup, transmitted illumination casts a specimen’s shadow onto a detector, and computational reconstruction or image analysis converts changes in light intensity into information about the object’s size, shape, position, or motion. This approach can support high-throughput analysis of cells, microorganisms, and particles in flow, while reducing sample preparation and photobleaching. In biology, shadow imaging is useful for tracking dynamic processes, screening populations, and studying specimens that are difficult to label.

Shadow Imaging - Related Videos

Research

JoVE Journal - Engineering
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Single Wavelength Shadow Imaging of Caenorhabditis elegans Locomotion Including Force Estimates

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Cited by 2 •

2014

The technique presented here measures the path of freely swimming microscopic species using single wavelength exposure. C. elegans are used to demonstrate shadow imaging as an inexpensive alternative to costly microscopes. This technique can be adapted to accommodate various orientations, environments and species to measure direction, speed, acceleration and forces.

Hybrid µCT-FMT imaging and image analysis

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Cited by 34 •

2015

We describe a protocol for hybrid imaging, combining fluorescence-mediated tomography (FMT) with micro computed tomography (µCT). After fusion and reconstruction, we perform interactive organ segmentation to extract quantitative measurements of the fluorescence distribution.

Research

JoVE Journal - Behavior

Ultrasound Images of the Tongue: A Tutorial for Assessment and Remediation of Speech Sound Errors

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Cited by 41 •

2017

Ultrasound imaging can be used to display the shape and movements of the tongue in real time during speech. The images can be used to determine the nature of speech sound errors. Visual feedback of the tongue can be used to facilitate improvements in speech sound production in clinical populations.

Lensless On-chip Imaging of Cells Provides a New Tool for High-throughput Cell-Biology and Medical Diagnostics

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Cited by 24 •

2009

Lensfree on-chip imaging and characterization of cells is illustrated. This on-chip cell imaging approach provides a compact and cost-effective tool for medical diagnostics and high-throughput cell biology applications, making it especially suitable for resource poor settings.

Research

JoVE Journal - Neuroscience
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Multiple-mouse Neuroanatomical Magnetic Resonance Imaging

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Cited by 59 •

2011

Magnetic resonance imaging (MRI) has become an increasingly popular tool for examining the phenotype of genetically altered mice. This article illustrates the methods necessary to achieve high-throughput phenotyping of genetically altered mice using multiple-mouse MRI.

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