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tag biological robot disease medicine developmental biology

Developmental Biology
The Scientist Staff | Nov 13, 1994 | 2 min read
K.G. Peters, D. Ornitz, S. Werner, L. Williams, "Unique expression pattern of the FGF receptor 3 gene during mouse organogenesis," Developmental Biology, 155:423-30, 1993. Kevin G. Peters (Department of Medicine, Division of Cardiology, Duke University Medical Center, Durham, N.C.): "Members of the fibroblast growth factor (FGF) family are powerful regulators of cell growth and differentiation that stimulate cells by activating spe
Developmental Biology
The Scientist Staff | Nov 13, 1994 | 2 min read
K.G. Peters, D. Ornitz, S. Werner, L. Williams, "Unique expression pattern of the FGF receptor 3 gene during mouse organogenesis," Developmental Biology, 155:423-30, 1993. Kevin G. Peters (Department of Medicine, Division of Cardiology, Duke University Medical Center, Durham, N.C.): "Members of the fibroblast growth factor (FGF) family are powerful regulators of cell growth and differentiation that stimulate cells by activating spe
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.
DNA molecule.
Finding DNA Tags in AAV Stacks
Mariella Bodemeier Loayza Careaga, PhD | Mar 7, 2024 | 8 min read
Ten years ago, scientists put DNA barcodes in AAV vectors, creating an approach that simplified, expedited, and streamlined AAV screening. 
Top 7 in developmental biology
Bob Grant | Dec 17, 2010 | 3 min read
A snapshot of the most highly ranked articles in developmental biology, from Faculty of 1000
bob murphy
Robert Murphy Bets Self-Driving Instruments Will Crack Biology’s Mysteries
Shawna Williams | May 1, 2019 | 9 min read
The Carnegie Mellon computational biologist thinks machine learning algorithms can direct high-throughput experiments to solve the field’s unanswered questions.
An Overview of High Throughput Screening
An Overview of High Throughput Screening
Tanvir Khan, PhD | Jan 2, 2024 | 5 min read
High throughput screening (HTS) relies on liquid handling devices, robotics, plate readers, and data processing software to automatically test a large number of biological, genetic, chemical, or pharmacological samples. 
High magnification image highlighting small hairlike projections called cilia, which help the biobots move.
A Leap Towards Building Synthetic Organisms 
Laura Tran, PhD | Mar 12, 2024 | 6 min read
Douglas Blackiston’s frog-fueled research seeks to push the boundaries of understanding developing organisms.
New Strategies to Discover Human Disease Genes
New Strategies to Discover Human Disease Genes
The Scientist | Oct 16, 2023 | 2 min read
Learn how researchers across health-related fields identify and characterize disease-causing genomic variants.
Developmental Genetics
Neeraja Sankaran | Sep 3, 1995 | 2 min read
E. Li, C. Beard, R. Jaenisch, "Role for DNA methylation in genomic imprinting," Nature, 366:362-5, 1993. (Cited in more than 70 publications through August 1995) Comments by Rudolf Jaenisch, Whitehead Institute for Biomedical Research, Cambridge, Mass. "The fact that DNA methylation--a modification in which methyl groups are added to cytosine residues--was involved in gene expression had been suggested for a long time," says Rudolf Jaenisch, a professor of biology at the Whitehead Institute f

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