Soft Tissue Destruction

Soft tissue destruction is the injury, breakdown, or loss of nonbony structures such as skin, muscle, fat, connective tissue, blood vessels, and nerves. It can result from trauma, burns, infection, ischemia, pressure, chemical exposure, or surgical intervention, with tissue damage progressing through cell death, inflammation, impaired blood flow, and sometimes necrosis. In medicine, evaluating its depth, extent, and cause guides wound classification, infection control, debridement, reconstruction, and rehabilitation. Understanding these mechanisms helps clinicians limit further damage, preserve function, promote tissue repair, and anticipate complications such as hemorrhage, sepsis, scarring, and loss of mobility.

Soft Tissue Destruction - Related Videos

Research

JoVE Journal - Bioengineering

Introduction to the Ultrasound Targeted Microbubble Destruction Technique

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Cited by 19 •

2011

Ultrasound Targeted Microbubble Destruction (UTMD) can be used to direct site-specific delivery of bioactive molecules, including therapeutic genes, to target organs accessible to ultrasound, such as the heart and liver1-6.

Education

JoVE Core - Civil Engineering

Non-destructive Tests for Concrete Strength

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2024

The rebound hammer test, also known as the Schmidt hammer test, is a non-destructive technique for evaluating the hardness of concrete and, indirectly, the strength of concrete. It operates on the principle that the rebound of a spring-driven mass from a concrete surface correlates to the surface's hardness. The device comprises a mass within a tubular housing, a spring mechanism, and a plunger that strikes the concrete. Upon release, the energy imparted to the mass by the spring causes it to...

Application and Methodology of the Non-destructive 19F Time-domain NMR Technique to Measure the Content in Fluorine-containing Drug Products

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Cited by 2 •

2017

A simple and non-destructive technique that measures the average content of drug substances in formulated drug products containing fluorine using low-field fluorine-19 (19F) time-domain (TD) nuclear magnetic resonance (NMR) is presented here. The technique can be applied to the development and manufacturing of drugs in the pharmaceutical industry.

VisualEyes: A Modular Software System for Oculomotor Experimentation

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Cited by 28 •

2011

Neural control and cognitive processes can be studied through eye movements. The VisualEyes software allows an operator to program stimuli on two computer screens independently using a simple, custom scripting language. The system can stimulate tandem eye movements (saccades and smooth pursuit) or opposing eye movements (vergence) or any combination.

Research

JoVE Journal - Biology
Free Sample

Imaging C. elegans Embryos using an Epifluorescent Microscope and Open Source Software

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Cited by 8 •

2011

The C. elegans embryo is a powerful system for studying cell biology and development. We present a protocol for live imaging of C. elegans embryos utilizing DIC optics or fluorescence using readily available epifluorescent microscopes and open-source software.

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