Katharine Gammon is an award-winning independent science journalist based in Santa Monica, California. Her work has appeared in The New York Times, The Atlantic, WIRED, The Guardian, Undark, Popular Science, MIT Technology Review, Nature, Hakai and beyond.
Katharine Gammon
From this contributor
Spotted around the web: Mapping histones; COVID-19 births; acetaminophen lawsuits
Here is a roundup of news and research for the week of 31 October.
Spotted around the web: Mapping histones; COVID-19 births; acetaminophen lawsuits
A mix of common and rare variants shapes autism inheritance patterns
The study also reveals a link between language development and common variants.

A mix of common and rare variants shapes autism inheritance patterns
Zebrafish point to new gene involved in brain overgrowth, autism
The gene, YTHDF2, has not previously been linked to autism.

Zebrafish point to new gene involved in brain overgrowth, autism
Lags in genetic testing, variant reporting hinder autism research
Few autistic people undergo the recommended genetic testing for their condition, and test results often do not make their way into public databases, where researchers and clinicians can learn from them.

Lags in genetic testing, variant reporting hinder autism research
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Oxytocin shapes both mouse mom and pup behavior
Distressed pups emit distinct cries for help, which depend on oxytocin neurons in their hypothalamus.

Oxytocin shapes both mouse mom and pup behavior
Distressed pups emit distinct cries for help, which depend on oxytocin neurons in their hypothalamus.
Sensory gatekeeper drives seizures, autism-like behaviors in mouse model
The new work, in mice missing the autism-linked gene CNTNAP2, suggests a mechanism to help explain the overlap between epilepsy and autism.

Sensory gatekeeper drives seizures, autism-like behaviors in mouse model
The new work, in mice missing the autism-linked gene CNTNAP2, suggests a mechanism to help explain the overlap between epilepsy and autism.
Michael Breakspear and Mac Shine explain how brain processing changes across neural population scales
Breakspear and Shine find a scale-free property of brain activity that is conserved across diverse species, suggesting that a universal principle of brain activity underlies cognition.
Michael Breakspear and Mac Shine explain how brain processing changes across neural population scales
Breakspear and Shine find a scale-free property of brain activity that is conserved across diverse species, suggesting that a universal principle of brain activity underlies cognition.