Imaging Applications

Imaging applications are the use of scientific imaging methods to visualize biological structures, cells, tissues, and dynamic processes, making otherwise inaccessible features measurable and interpretable. These methods form images by detecting signals such as emitted fluorescence, transmitted or reflected light, absorption, or electron scattering, with contrast determined by the specimen and imaging conditions. In biology, imaging supports cell identification, tissue organization, developmental studies, disease analysis, and measurement of cellular behavior over time. Quantitative image analysis can further convert visual data into measurements, linking structure with function and improving research in fields ranging from molecular biology to physiology and biomedical science.

Imaging Applications - Related Videos

Research

JoVE Journal - Medicine
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A Novel Application of Musculoskeletal Ultrasound Imaging

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Cited by 14 •

2013

We describe a new ultrasound-based vector tissue Doppler imaging technique to measure muscle contraction velocity, strain and strain rate with sub-millisecond temporal resolution during dynamic activities. This approach provides complementary measurements of dynamic muscle function and could lead to a better understanding of mechanisms underlying musculoskeletal disorders.

Research

JoVE Journal - Bioengineering

Wideband Optical Detector of Ultrasound for Medical Imaging Applications

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Cited by 4 •

2014

Optical detection of ultrasound is impractical in many imaging scenarios because it often requires stable environmental conditions. We demonstrate an optical technique for ultrasound sensing in volatile environments with miniaturization and sensitivity levels appropriate for optoacoustic imaging in restrictive scenarios, e.g. intravascular applications.

An ex-ovo Chicken Embryo Culture System Suitable for Imaging and Microsurgery Applications

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Cited by 61 •

2010

In this article, we present a simple methodology to enable long-term ex-ovo avian embryo culture. This technique is ideal for longitudinal experimentation requiring complete optical accessibility and/or sterile transportation in avian embryos.

Biofunctionalized Prussian Blue Nanoparticles for Multimodal Molecular Imaging Applications

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Cited by 17 •

2015

This protocol describes the synthesis of biofunctionalized Prussian blue nanoparticles and their use as multimodal, molecular imaging agents. The nanoparticles have a core-shell design where gadolinium or manganese ions within the nanoparticle core generate MRI contrast. The biofunctional shell contains fluorophores for fluorescence imaging and targeting ligands for molecular targeting.

Application of Automated Image-guided Patch Clamp for the Study of Neurons in Brain Slices

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Cited by 11 •

2017

This protocol describes how to conduct automatic image-guided patch-clamp experiments using a system recently developed for standard in vitro electrophysiology equipment.

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