Real-time optical detection of single human and bacterial viruses based on dark-field interferometry
<!-- START_ABSTRACT -->
<p>
The rapid and sensitive detection and characterization of human viruses and bacteriophage is extremely important in a variety of fields, such as medical diagnostics, immunology and vaccine research, and environmental contamination and quality control. We introduce an optical detection scheme for real-time and label-free detection of human viruses and bacteriophage as small as ~24 nm in radius. Combining the advantages of heterodyne interferometry and dark-field microscopy, this label-free method enables us to detect and characterize various biological nanoparticles with unsurpassed sensitivity and selectivity. We demonstrate the high sensitivity and precision of the method by analyzing a mixture containing HIV virus and bacteriophage. The method also resolves the distribution of small nano-impurities (~20-30 nm) in clinically relevant virus samples.
</p>
<!-- END_ABSTRACT -->
<!-- START_TEMPLATE -->
<ul>
<li>
Source:
</li>
<li>
Tags:
</li>
</ul>
<!-- END_TEMPLATE -->
Backlinks
These are the other notes that link to this one.
Nothing links here, how did you reach this page then?
Comment
Share your thoughts on this note. Comments are not public, they are
messages sent directly to my inbox.