Biological Tissue Imaging

Biological tissue imaging is the visualization and measurement of tissue structure, composition, and function across scales, from cellular features to whole organs. It works by applying optical, acoustic, magnetic, or X-ray-based signals and detecting how tissue absorbs, scatters, emits, or alters those signals to generate images, often with molecular or structural contrast. In bioengineering, these methods support characterization of engineered tissues, monitoring of scaffold integration, assessment of vascularization, and evaluation of cell organization and viability. Quantitative imaging can connect tissue architecture with mechanical or biological performance, helping researchers refine biomaterials, validate tissue models, and guide regenerative medicine and disease studies.

Biological Tissue Imaging - Related Videos

Research

JoVE Journal - Bioengineering

Imaging of Biological Tissues by Desorption Electrospray Ionization Mass Spectrometry

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Cited by 21 •

2013

Desorption electrospray ionization mass spectrometry (DESI-MS) is an ambient method by which samples, including biological tissues, can be imaged with minimal sample preparation. By rastering the sample below the ionization probe, this spray-based technique provides sufficient spatial resolution to discern molecular features of interest within tissue sections.

Education

JoVE Science Education - Engineering

SEM Imaging of Biological Samples

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2023

Source: Peiman Shahbeigi-Roodposhti and Sina Shahbazmohamadi, Biomedical Engineering Department, University of Connecticut, Storrs, Connecticut A scanning electron microscope (SEM) is an instrument that uses an electron beam to nondestructively image and characterize conductive materials in a vacuum. As an analogy, an electron beam is to the SEM as light is to the optical microscope. The difference is that the electron microscope yields images of much higher resolution and magnification. The...

Research

JoVE Journal - Biology
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Atmospheric-pressure Molecular Imaging of Biological Tissues and Biofilms by LAESI Mass Spectrometry

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Cited by 29 •

2010

Laser ablation electrospray ionization (LAESI) is an atmospheric-pressure ion source for mass spectrometry. In the imaging mode, a mid-infrared laser probes the distributions of molecules across a tissue section or a biofilm. This technique presents a new approach for diverse bioanalytical studies carried out under native experimental conditions.

Research

JoVE Journal - Biology
Free Sample

ACT-PRESTO: Biological Tissue Clearing and Immunolabeling Methods for Volume Imaging

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Cited by 7 •

2016

ACT-PRESTO (active clarity technique–pressure related efficient and stable transfer of macromolecules into organs) enables rapid, efficient, but inexpensive tissue clearing and rapid antibody penetration into cleared tissues by passive diffusion or pressure-assisted delivery. Using this method, a wide range of tissues can be cleared, immunolabeled by multiple antibodies, and volume-imaged.

Imaging Biological Samples with Optical and Confocal Microscopy

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2023

Source: Peiman Shahbeigi-Roodposhti and Sina Shahbazmohamadi, Biomedical Engineering Department, University of Connecticut, Storrs, Connecticut Optical microscopes have been around for centuries, and while they reached their theoretical limitation of resolution decades ago, new equipment and techniques, such as confocal and digital image processing, have created new niches within the field of optical imaging. The best optical microscopes will typically have a resolution down to 200 nm in ideal...

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