We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us
Sekisui Diagnostics

Download Mobile App




Astrocytes Play Critical Role in Neuroimaging

By MedImaging staff writers
Posted on 28 Jul 2008
In a recent study that resolves a long-standing mystery in neuroscience, researchers have demonstrated for the first time that star-shaped brain cells called astrocytes--previously considered small, unimportant cells by most neuroscientists--make noninvasive brain scans possible. More...


Imaging techniques such as functional magnetic resonance imaging (fMRI) and positron emission tomography (PET) have transformed the neuorsciences, providing colorful maps of brain activity in living subjects. The scans' reds, oranges, blues, and yellows represent changes in blood flow and volume triggered by neural activity. But until this study conducted by investigators from the Picower Institute for Learning and Memory at the Massachusetts Institute of Technology (MIT; Cambridge, MA, USA), who reported their findings in the June 20, 2008, issue of Science, no one knew precisely why this worked.

"Why blood flow is linked to neuronal activity has been a mystery,” said study coauthor Dr. Mriganka Sur, professor of neuroscience and head of the department of brain and Cognitive Sciences at MIT. "Previously, people have argued that the fMRI signal reports local field potentials or waves of incoming electrical activity, but neurons do not connect directly to blood vessels. A causal link between neuronal activity and blood flow has never been shown.”

Of the two major cell types in the brain, the glia, outnumber neurons nine to one. Astrocytes, the most common type of glia, extend their branching tendrils both around synapses (through which neurons communicate) and along blood vessels.

Using a cutting edge technique, Dr. Sur and colleagues discovered that astrocytes receive signals directly from neurons and provide their own neuron-like responses to directly regulate blood flow. They are the missing link between neurons and blood vessels, according to Dr. Sur. When astrocytes are shut down, fMRI does not work. "Astrocytes are implicated in many brain disorders and express a very large number of genes that are in the brain,” Dr. Sur said. "Their role is crucial for understanding brain dysfunction as well as for developing potential therapeutics.”

The MIT study revealed that, contrary to current belief, astrocytes influence complex neuronal computations such as the duration and selectivity of brain cell responses to stimuli. However, their chemical signals had rendered them invisible to conventional brain research methods that monitor electrical activity. "Electrically, astrocytes are pretty silent,” said study coauthor Dr. James Schummers, Picower Institute postdoctoral associate. "A lot of what we know about neurons is from sticking electrodes in them. We couldn't record from astrocytes, so we ignored them.”

When astrocytes were imaged with two-photon microscopy, "the first thing we noticed was that the astrocytes were responding to visual stimuli. That took us completely by surprise,” Dr. Schummers said. "We didn't expect them to do anything at all. Yet there they were, blinking just like neurons were blinking. We didn't know if the rest of the world would think we were crazy.

"This work shows that astrocytes, which make up 50% of the cells in the cortex but whose function was unknown, respond exquisitely to sensory drive, regulate local blood flow in the cortex and even influence neuronal responses,” Dr. Sur said. "What's more, astrocytes are arranged in orderly feature maps, exquisitely mapped across the cortical surface in sync with neuronal maps.”

Two-photon microscopy uses two infrared photons to emit fluorescence that enables imaging of living tissue up to 1 mm deep. Previously, researchers could only see astrocytes in dyed, thin slices of dead brain tissue. The next step, according to Dr. Schummers, is to try to determine exactly how astrocytes work on neurons.


Related Links:
Massachusetts Institute of Technology

Gold Member
NEW PRODUCT : SILICONE WASHING MACHINE TRAY COVER WITH VICOLAB SILICONE NET VICOLAB®
REGISTRED 682.9
Radiology Monitor
MDNC-6121 Barco Nio Color 5.8MP
Blood Pressure Monitor
Cuff Blood Pressure Monitor
POC Respiratory/Sore Throat Test
BIOFIRE SPOTFIRE (R/ST) Panel
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to HospiMedica.com and get access to news and events that shape the world of Hospital Medicine.
  • Free digital version edition of HospiMedica International sent by email on regular basis
  • Free print version of HospiMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of HospiMedica International in digital format
  • Free HospiMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Artificial Intelligence

view channel
Image: Clinical LLM Performance Improves by >300% When Provided with High-Quality Real-World Evidence in New Precision Medicine Benchmark (Photo courtesy of Atropos Health)

New Benchmark Highlights Evidence Gaps in AI Responses to Clinical Questions

Many clinical decisions still rely on limited evidence, while most artificial intelligence benchmarks overlook the patient context that shapes real-world care. General large language models can also struggle... Read more

Point of Care

view channel
Image Credit: 123RF

Continuous Glucose Monitoring Identifies Cardiometabolic Risk in Adults Without Diabetes

Dysglycemia—abnormal blood glucose regulation—can fluctuate throughout the day and often escape conventional screening. Clinicians typically rely on fasting plasma glucose and hemoglobin A1c, which offer... Read more

Business

view channel
Image: LigaSure RAS Maryland, designed for the Valleylab FT10 platform on Hugo RAS, seals and cuts vessels, tissue, and lymphatics up to 7 mm in diameter (Photo courtesy of Medtronic)

Medtronic Receives FDA Clearance for Vessel-Sealing Instrument for Robotic Surgery

As robotic-assisted surgery expands across U.S. hospitals, teams increasingly seek energy instruments with the familiarity and performance of tools used in open and laparoscopic procedures.... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.