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tag taste developmental biology neuroscience

Different colored cartoon viruses entering holes in a cartoon of a human brain.
A Journey Into the Brain
Danielle Gerhard, PhD | Mar 22, 2024 | 10+ min read
With the help of directed evolution, scientists inch closer to developing viral vectors that can cross the human blood-brain barrier to deliver gene therapy.
Contributors
Diana Kwon | May 1, 2017 | 4 min read
Meet some of the people featured in the May 2017 issue of The Scientist.
Sensory Biology Around the Animal Kingdom
The Scientist | Sep 1, 2016 | 10+ min read
From detecting gravity and the Earth’s magnetic field to feeling heat and the movement of water around them, animals can do more than just see, smell, touch, taste, and hear.
Matters of Taste
Thomas E. Finger and Sue C. Kinnamon | Dec 1, 2011 | 10 min read
Compounds we perceive as sweet or bitter in the mouth trigger similar receptors and signaling pathways elsewhere in the body, helping to regulate digestion, respiration, and other systems.
How a Memory Is Made
Molly Sharlach | Nov 13, 2014 | 3 min read
Transcription factor levels dictate which neurons in a network store a memory.
What Sensory Receptors Do Outside of Sense Organs
Sandeep Ravindran | Sep 1, 2016 | 10+ min read
Odor, taste, and light receptors are present in many different parts of the body, and they have surprisingly diverse functions.
A Nile rat sitting atop fruits
Genome Spotlight: Nile Rat (Avicanthis niloticus)
Christie Wilcox, PhD | Nov 23, 2022 | 4 min read
A reference sequence for this emerging model organism will facilitate research on type 2 diabetes and the health effects of circadian rhythm disruption.
Using Temperature-Sensitive Channels to Study Neural Circuitry
Devika G. Bansal | Nov 1, 2018 | 8 min read
Meet the researchers building a thermogenetic toolbox.
Photographs of the October 2021 issue's contributors
Contributors
The Scientist | Oct 1, 2021 | 3 min read
Meet some of the people featured in the October 2021 issue of The Scientist.
Into the Limelight
Kate Yandell | Oct 1, 2015 | 8 min read
Glial cells were once considered neurons’ supporting actors, but new methods and model organisms are revealing their true importance in brain function.

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