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tag atmospheric science developmental biology culture

Microfluidics: Biology’s Liquid Revolution
Laura Tran, PhD | Feb 26, 2024 | 8 min read
Microfluidic systems redefined biology by providing platforms that handle small fluid volumes, catalyzing advancements in cellular and molecular studies.
Science Has Partly Outgrown Nobel's Vision Of The Prizes
Bib Lindahl | Nov 12, 1995 | 3 min read
The pioneering contributions to lepton physics, atmospheric chemistry, and developmental biology honored by this year's Nobel Prizes were all made at least some 15 or 20 years ago. This illustrates a dilemma the Nobel committees are faced with every year in the selection of the prize winners. On the one hand, the committees have to follow, as far as possible, Nobel's intention to award the prize to those who, "during the preceding year," by their scientific achievements, have conferred the gre
Guts and Glory
Anna Azvolinsky | Apr 1, 2016 | 9 min read
An open mind and collaborative spirit have taken Hans Clevers on a journey from medicine to developmental biology, gastroenterology, cancer, and stem cells.
Flow Cytometry for the Masses
Richard P. Grant | Dec 1, 2011 | 2 min read
Tagging antibodies with rare earth metals instead of fluorescent molecules turns a veteran technique into a high-throughput powerhouse.
Monoclonal Antibodies Find Utility In Cell Biology
Ricki Lewis | Dec 11, 1994 | 10+ min read
But, just as antibodies are finding increasing utility in cell biology, a new Food and Drug Administration classification for those products with clinical utility may affect researchers' access to the important technology (see accompanying story). Monoclonal History MAbs were born in 1975, when Georges Kohler and Cesar Milstein at the Medical Research Council Laboratories in Cambridge, England, fused two types of cells to form a hy
Monoclonal Antibodies Find Utility In Cell Biology
Ricki Lewis | Dec 11, 1994 | 10+ min read
But, just as antibodies are finding increasing utility in cell biology, a new Food and Drug Administration classification for those products with clinical utility may affect researchers' access to the important technology (see accompanying story). Monoclonal History MAbs were born in 1975, when Georges Kohler and Cesar Milstein at the Medical Research Council Laboratories in Cambridge, England, fused two types of cells to form a hy
An illustration of flowers in the shape of the female reproductive tract
Uterus Transplants Hit the Clinic
Jef Akst | Aug 1, 2021 | 10+ min read
With human research trials resulting in dozens of successful deliveries in the US and abroad, doctors move toward offering the surgery clinically, while working to learn all they can about uterine and transplant biology from the still-rare procedure.
Bonding in the Lab
Kate Yandell | Oct 1, 2013 | 7 min read
How to make your lab less like a factory and more like a family
A Summing Up, and a Look Ahead, in Biology
Patrick Wigge | Jun 11, 2000 | 5 min read
Illustration: A. Canamucio Biology today, though uncovering more and more knowledge at an amazingly rapid rate, is more specialized, fragmented, and incomprehensible to the layperson than ever. Part of this is inevitable, due to the rapid expansion of knowledge brought about by the great advances of molecular techniques. However, disciplinary boundaries are also part of the problem. Could we not try to overcome such obstacles and integrate some of the many strands of knowledge, to see what we mi
The 2011 Labby Multimedia Awards
Jessica P. Johnson | Sep 1, 2011 | 6 min read
Introducing the winners of our second annual "Labbies" awards

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