Showing posts with label seizures. Show all posts
Showing posts with label seizures. Show all posts

Saturday, 25 June 2011

New technology could inspire brain implant for detecting and treating seizures

ScienceDaily (June 2, 2011) — Tiny electrodes have been coated with a drug-loaded polymer in an attempt to design an implant capable of detecting a number of neurological symptoms, such as those associated with an epileptic seizure, and treating them simultaneously.

In a study published June 2, 2011 in IOP Publishing's Journal of Neural Engineering, researchers have developed a novel technology to precisely modulate individual neurons in rats, allowing the molecular, neuronal, and circuit functions to be analysed with unprecedented precision.

Based on the electrical conducting properties of the polymer Polypyrrole (PPy), the researchers, from the University of Pittsburgh, have demonstrated a novel way of loading specific drugs onto an array of electrodes and triggering their release into cultured neurons, allowing for a more precise insight into the cellular mechanisms of neuronal networks.

On top of this, the researchers have also demonstrated how the release of drugs could be informed, in real-time, by the recording of activity in neurons, a step essential for creating a closed-loop system that both diagnoses and treats symptoms simultaneously, creating several potential applications.

Co-author Professor X Tracy Cui said, "We envision an implanted device in the future that will monitor the brain activity, detect or predict an onset of epileptic seizure, and send the command to the electrode at the most appropriate location, releasing an anti-convulsive drug to prevent the seizure."

Multielectrode arrays (MEAs) -- small devices that can control or record the electrical circuitry in neurons -- have long been used as a way of measuring neuronal activity and transforming this into an action; technologies such as ear implants and cardiac pacemakers have benefited from them.

Recent advances, however, have allowed MEAs to be coupled with devices that release specific drugs in order to test how neural circuits function, as well as investigating the underlying mechanisms within neuronal cells.

The researchers coated PPy, containing all of the necessary neurochemicals, onto an MEA. Whilst positioned on the cultured rat brain, the polymer was electrically stimulated, causing the neurochemicals to dissociate and diffuse away to the necessary locations.

Results showed that the drugs retained their activity and function with spatial and temporal precision.

Current state-of-the-art drug delivery methods, such as picospritzer and ionotopheriesis, give researchers a greater understanding of cellular mechanisms of neural dynamics; however, both of these techniques are limited to a few sites and face the risk of drug leakage.

By having the required neurochemicals dissociate from the polymer, this technique avoids the need for an external reservoir containing the drug, which would greatly increase the size of a potential implant and could cause tissue damage.

Professor Cui continues, "By directly loading a drug of interest onto an individual electrode site and using an electrical signal to trigger its release, we can precisely control the drug delivery site with ease. Additionally, our technology can be used for a combination of exogenous chemicals such as subtype-specific receptor antagonists, thus potentially allowing for more precise dissection of neural circuit function at the molecular level."

Story Source:

The above story is reprinted (with editorial adaptations by ScienceDaily staff) from materials provided by Institute of Physics, via EurekAlert!, a service of AAAS.

Journal References:

Stauffer et al. Rapid modulation of local neural activity by controlled drug release from polymer-coated recording microelectrodes. J. Neural Eng., 2011 [link]Stauffer et al. Rapid modulation of local neural activity by controlled drug release from polymer-coated recording microelectrodes. Journal of Neural Engineering, 2011; [link]

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.


View the original article here

Thursday, 2 June 2011

Diagnosing 'seizures' in the US economy

ScienceDaily (May 13, 2011) — Since 2008, the U.S. economy has been "seizing" uncontrollably. Now a Tel Aviv University researcher says that a comparison of the multifaceted economic downturn with the uncontrolled spasms of an epileptic is not inappropriate -- and may say something about the origins of the disaster.

In a recent article published in the journal PLoS ONE, Prof. Eshel Ben-Jacob of Tel Aviv University's School of Physics and Astronomy, his doctoral student Dror Y. Kenett and economist Dr. Gitit Gur-Gershgorn examined the dynamics of the S&P 500 over the last decade, employing methods originally developed by Prof. Ben-Jacob to analyze the brain activity of epilepsy patients.

They discovered that a dramatic transition in the financial markets in 2001 would have been an accurate predictor of the meltdown that occurred in 2008 -- and their methods also suggest a solution.

Dysfunction, diagnosis and treatment

In epilepsy, one sector of the brain takes over and tampers with the normal activity of other brain sectors. His analysis of the financial markets demonstrates the same dysfunction, Prof. Ben-Jacob says, revealing epileptic seizure-like behavior that resulted in the excessive dominance of the financial services sector, distorting healthy activity in other sectors of the economic marketplace, such as real estate investment and the activities of banks, governments and investment companies. This dominance led to "market stiffness," which proved to have fatal implications during the financial crisis.

This dominance and consequent "market stiffness" were manifested in the emergence of market "seizure" behavior -- bursts of very high stock correlations that usually coincided with local minima in the S&P 500 Index.

"In epilepsy, the overdominance of the epileptic focus on the functioning of all other regions of the brain can result from excess activity of the neurons because the links between them are too strong, or from insufficient inhibition," Prof. Ben-Jacob says. Drawing an analogy to the stock market, he suggests that "surgical intervention" could sever some excess links between different sectors of the financial marketplace, along with a stronger inhibition of its excess activity -- by increasing interest rates, for example.

The dangerous dominance of the financial sector might have been a direct consequence of hasty and dramatic U.S. interest rate cuts and other remedies used in 2001 to overcome the fallout from the "dot com" bubble collapse, Prof. Ben-Jacob says. He counsels that current U.S. policymakers may be trying to "avoid the major and painful surgery needed to cure the market."

Story Source:

The above story is reprinted (with editorial adaptations by ScienceDaily staff) from materials provided by American Friends of Tel Aviv University.

Journal Reference:

Dror Y. Kenett, Yoash Shapira, Asaf Madi, Sharron Bransburg-Zabary, Gitit Gur-Gershgoren, Eshel Ben-Jacob. Index Cohesive Force Analysis Reveals That the US Market Became Prone to Systemic Collapses Since 2002. PLoS ONE, 2011; 6 (4): e19378 DOI: 10.1371/journal.pone.0019378

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.


View the original article here

Wednesday, 25 May 2011

Diagnosing 'seizures' in the US economy

ScienceDaily (May 13, 2011) — Since 2008, the U.S. economy has been "seizing" uncontrollably. Now a Tel Aviv University researcher says that a comparison of the multifaceted economic downturn with the uncontrolled spasms of an epileptic is not inappropriate -- and may say something about the origins of the disaster.

In a recent article published in the journal PLoS ONE, Prof. Eshel Ben-Jacob of Tel Aviv University's School of Physics and Astronomy, his doctoral student Dror Y. Kenett and economist Dr. Gitit Gur-Gershgorn examined the dynamics of the S&P 500 over the last decade, employing methods originally developed by Prof. Ben-Jacob to analyze the brain activity of epilepsy patients.

They discovered that a dramatic transition in the financial markets in 2001 would have been an accurate predictor of the meltdown that occurred in 2008 -- and their methods also suggest a solution.

Dysfunction, diagnosis and treatment

In epilepsy, one sector of the brain takes over and tampers with the normal activity of other brain sectors. His analysis of the financial markets demonstrates the same dysfunction, Prof. Ben-Jacob says, revealing epileptic seizure-like behavior that resulted in the excessive dominance of the financial services sector, distorting healthy activity in other sectors of the economic marketplace, such as real estate investment and the activities of banks, governments and investment companies. This dominance led to "market stiffness," which proved to have fatal implications during the financial crisis.

This dominance and consequent "market stiffness" were manifested in the emergence of market "seizure" behavior -- bursts of very high stock correlations that usually coincided with local minima in the S&P 500 Index.

"In epilepsy, the overdominance of the epileptic focus on the functioning of all other regions of the brain can result from excess activity of the neurons because the links between them are too strong, or from insufficient inhibition," Prof. Ben-Jacob says. Drawing an analogy to the stock market, he suggests that "surgical intervention" could sever some excess links between different sectors of the financial marketplace, along with a stronger inhibition of its excess activity -- by increasing interest rates, for example.

The dangerous dominance of the financial sector might have been a direct consequence of hasty and dramatic U.S. interest rate cuts and other remedies used in 2001 to overcome the fallout from the "dot com" bubble collapse, Prof. Ben-Jacob says. He counsels that current U.S. policymakers may be trying to "avoid the major and painful surgery needed to cure the market."

Story Source:

The above story is reprinted (with editorial adaptations by ScienceDaily staff) from materials provided by American Friends of Tel Aviv University.

Journal Reference:

Dror Y. Kenett, Yoash Shapira, Asaf Madi, Sharron Bransburg-Zabary, Gitit Gur-Gershgoren, Eshel Ben-Jacob. Index Cohesive Force Analysis Reveals That the US Market Became Prone to Systemic Collapses Since 2002. PLoS ONE, 2011; 6 (4): e19378 DOI: 10.1371/journal.pone.0019378

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.


View the original article here