3-D Imagining

This is great technology; an advance that will significantly contribute to our understanding of basic cell biology.   

From the National Science Foundation:

“3-D Imaging of Mammalian Cells with Ion-Abrasion Scanning Electron Microscopy” The delicate swirls of pink and gold in this image could have come from botticelli’s brush, but there’s nothing angelic about the subject, a melanoma cell. It is seen here by an ionabrasion scanning electron microscope that uses a method of three-dimensional imaging being developed at the U.S. National Cancer Institute. The microscope sends beams of gallium ions across an object, blasting away layers of the surface 20 nanometers at a time. By scanning each newly created surface, the microscope can compile 3D images with unprecedented detail and resolution, says image creator Donald Bliss, a medical illustrator at the National Library of Medicine in Bethesda, Md. The images show almost too much detail–”It’s like looking at a bowl of spaghetti suspended in clear Jell-O,” he says–so Bliss chose to highlight some of the data. Here, he shows the nucleus as the dark sphere, engulfed by mitochondria (in pink) and endoplasmic reticulum (in gold). This image was tied for Honorable Mention in the Illustration category of the 2008 Science and Engineering Visualization Challenge. The competition is sponsored by the National Science Foundation and the journal Science. To learn more about the Science and Engineering Visualization Challenge competition, see the SciVis Special Report Here . (Date of Image: 2008)

Credit: Donald Bliss and Sriram Subramaniam, National Library of Medicine, NIH

~ by metousiosis on February 23, 2009.

Leave a Reply

Fill in your details below or click an icon to log in:

WordPress.com Logo

You are commenting using your WordPress.com account. Log Out / Change )

Twitter picture

You are commenting using your Twitter account. Log Out / Change )

Facebook photo

You are commenting using your Facebook account. Log Out / Change )

Connecting to %s

 
Follow

Get every new post delivered to your Inbox.

Join 112 other followers