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tag neuroscience culture history infectious disease

Book Excerpt from Behave
Robert Sapolsky | May 31, 2017 | 5 min read
In the book’s introduction, author and neuroendocrinologist Robert Sapolsky explains his fascination with the biology of violence and other dark parts of human behavior.
Capsule Reviews
Bob Grant | May 1, 2015 | 3 min read
The Genealogy of a Gene, On the Move, The Chimp and the River, and Domesticated
Capsule Reviews
Bob Grant | May 1, 2014 | 3 min read
Madness and Memory, Promoting the Planck Club, The Carnivore Way, and The Tale of the Dueling Neurosurgeons
2020 in Scientists’ Own Words
Abby Olena, PhD | Dec 23, 2020 | 5 min read
The world was rocked by the COVID-19 pandemic this year, but researchers rose to all manner of challenges.
2020 Top 10 Innovations
The Scientist | Dec 1, 2020 | 10+ min read
From a rapid molecular test for COVID-19 to tools that can characterize the antibodies produced in the plasma of patients recovering from the disease, this year’s winners reflect the research community’s shared focus in a challenging year.
Models for HCV
Sarah Rothman | Sep 11, 2005 | 1 min read
Without a sufficient cell culture system, researchers have had little success designing and testing drugs for the treatment of the hepatitis C virus (HCV).
How Does Your Virus Grow?
Erika Jonietz(ejonietz@the-scientist.com) | Sep 11, 2005 | 6 min read
Researchers at Chiron made virology history in 1987 when they discovered the hepatitis C virus (HCV), not by isolating viral particles, but by cloning and sequencing its genome.
Top 10 Innovations 2021
2021 Top 10 Innovations
The Scientist | Dec 1, 2021 | 10+ min read
The COVID-19 pandemic is still with us. Biomedical innovation has rallied to address that pressing concern while continuing to tackle broader research challenges.
Top 10 Innovations 2013
The Scientist | Dec 1, 2013 | 10+ min read
The Scientist’s annual competition uncovered a bonanza of interesting technologies that made their way onto the market and into labs this year.
Antibody Alternatives
Paul Ko Ferrigno and Jane McLeod | Feb 1, 2016 | 10+ min read
Nucleic acid aptamers and protein scaffolds could change the way researchers study biological processes and treat disease.

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