Weekly Neuroscience Update

Two new research studies have identified the neural signals underlying music imagery. These neural signals are related to melodic expectations and predictions.

Short naps of up to 60 minutes in duration do not mitigate the effects of a night of sleep deprivation, a new study reports. However, the amount of slow-wave sleep achieved during a nap was related to reduced impairments associated with sleep deprivation.

30% of people reported changes in cognition, memory, and problems with information processing as a result of social isolation caused by pandemic lockdowns.

Some proteins in cells can separate into small droplets like oil droplets in water, but faults in this process may underlie neurodegenerative diseases in the brains of older people. Now, Rutgers researchers have developed a new method to quantify protein droplets involved in these diseases.

A new study reveals how dopamine may have a central role in maintaining our consciousness.

It’s long been known that opioid overdose deaths are caused by disrupted breathing, but the actual mechanism by which these drugs suppress respiration was not understood. Now, a new study by Salk scientists has identified a group of neurons in the brainstem that plays a key role in this process.

A new advanced imaging technique shows how cholesterol regulates the production of Alzheimer’s associated amyloid beta proteins in astrocytes.

A recent experimental study shows how regular physical exercise modulates iron metabolism in both the brain and the muscles. The findings also help to better understand the benefits of exercise in Alzheimer’s disease.

A new AI model can accurately classify a brain tumor of one of six common cancer types from a single MRI brain scan image.

A tiny region in the middle of the brain plays a far more important role than previously known in helping it respond to changes in the environment, a new study shows.

The brain’s white matter pathway organization during the first year of life may predict language acquisition and development at age five, researchers say.

Finally this week, mindfulness may provide modest benefits to cognition, particularly among older adults, finds a new review of evidence.

Weekly Neuroscience Update

An area (red-yellow) in the brain’s temporal pole specializes in familiar face recognition. Credit: Sofia Landi

New research reveals a class of neurons in the brain’s temporal pole region that links face perception to long-term memory. It’s not quite the apocryphal grandmother neuron — rather than a single cell, it’s a population of cells that collectively remembers grandma’s face. The findings, published in Science, are the first to explain how our brains inculcate the faces of those we hold dear.

Researchers have discovered a previously unknown repair process in the brain that they hope could be harnessed and enhanced to treat seizure-related brain injuries.

A new study demonstrates that puppets can attract and hold the attention of children with autism spectrum disorder (ASD), raising the potential for developing more engaging therapies that strengthen social engagement and facilitate learning.

Artificial neural networks is helping researchers uncover new clues as to why people on the autism spectrum have trouble interpreting facial expressions.

Researchers have revealed how proteins accumulate in the incorrect parts of brain cells in amyotrophic lateral sclerosis (ALS) and demonstrate how it may be possible to reverse the accumulation. ALS, more commonly known as motor neuron disease, is a progressive fatal disease that affects nerve cells in the brain and spinal cord, causing loss of muscle control, with patients become increasingly paralyzed and losing the ability to speak, eat and breathe. 

Combining artificial intelligence, mathematical modeling, and brain imaging data, researchers have shed light on the neural processes that occur when people use mental abstraction.

A team of scientists has uncovered a system in the brain used in the processing of information and in the storing of memories—akin to how railroad switches control a train’s destination. The findings offer new insights into how the brain functions.

Finally this week, researchers have developed a powerful miniature brain platform to study the mechanistic causes of Alzheimer’s disease and to test dementia drugs in development.