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tag nanoscale imaging culture

Building Nanoscale Structures with DNA
Arun Richard Chandrasekaran | Jul 16, 2017 | 10+ min read
The versatility of geometric shapes made from the nucleic acid are proving useful in a wide variety of fields from molecular computation to biology to medicine.
“Alive” and In Focus
Sarah Webb, Knowable Magazine | Oct 1, 2012 | 7 min read
Imaging viruses in action
A scanning electron micrograph of a coculture of E. coli and Acinetobacter baylyi. Nanotubes can be seen extending from the E. coli.
What’s the Deal with Bacterial Nanotubes?
Sruthi S. Balakrishnan | Jun 1, 2021 | 10+ min read
Several labs have reported the formation of bacterial nanotubes under different, often contrasting conditions. What are these structures and why are they so hard to reproduce?
Film Stars
Anna Azvolinsky | Jun 1, 2014 | 3 min read
Engineered bacteria can shape electricity-conducting nanowires.
A Small Revolution
Erica Westly | Oct 1, 2011 | 5 min read
In fewer than 15 years, nanomedicine has gone from fantasy to reality.
An Ocean of Viruses
Joshua S. Weitz and Steven W. Wilhelm | Jul 1, 2013 | 10+ min read
Viruses abound in the world’s oceans, yet researchers are only beginning to understand how they affect life and chemistry from the water’s surface to the sea floor.
Top 10 Innovations 2014
The Scientist | Dec 1, 2014 | 10+ min read
The list of the year’s best new products contains both perennial winners and innovative newcomers.
Top Ten Innovations 2010
Megan Scudellari | Dec 1, 2010 | 10+ min read
By The Scientist Staff Top Ten Innovations 2010 Innovative products that have the life science community buzzing. As the global economy continues to pull out of its recent precipitous nosedive, one mantra rings true from Beijing to Boston—innovation can save us. If developing interesting new technologies and products really is the lifeblood of economic health, then the life sciences industry is innovation’s beating heart. The Scientist rec
Ten Technologies in Five Years
Sam Jaffe(sjaffe@the-scientist.com) | Dec 5, 2004 | 8 min read
When scientists make long-term research plans, they must try to anticipate how emerging technologies will influence their work in the coming years.
From Buckyballs to Nanotubes
Ricki Lewis | Feb 18, 2001 | 6 min read
Photos © Michael Davidson and The Florida State University These photos show the 60-carbon alkene buckminsterfullerene ("buckyballs"). This substance joins graphite and diamond as a third form of carbon molecule. Technology sometimes derives from clever combinations of tools. Merging immune system cells with cancer cells led to the hybridoma technology that produces monoclonal antibodies. A recipe of restriction enzymes, plasmids, and DNA underlies recombinant DNA and transgenic technologi

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