Showing posts with label hospital. Show all posts
Showing posts with label hospital. Show all posts

Wednesday, August 22, 2012

Health Care "Telepresence Robot" to aid high dependency care at Northern Ireland Hospital

A Northern Ireland Health Trust is the first in the UK to use a robot which allows intensive care specialists from one hospital to remotely assess patients in another.

The 'telepresence' robot enables doctors to examine and interact with patients in different locations.

It will be used at Daisy Hill Hospital in County Down.

Stormont Health Minister Edwin Poots said the new technology would create an "effective hospital network".

The robot has the ability to transmit heart and breath sounds and it is hoped it will prevent the need to transfer patients to intensive care in some cases.

It enables Dr Charles McAllister, based at Craigavon Area Hospital in County Armagh, to speak to staff and patients at a bedside in the Southern Trust in Newry more than 20 miles away.

"It means that although there are no intensivists on site in Daisy Hill Hospital, it means there will be 24/7 access to the intensivists on the Craigavon site to give advice and support on any patients in a high dependency unit or throughout the hospital," he said.

"You can get a huge amount of information via the robot.

"You can get real time information from the monitor, you can see the patient up close in high definition and look at all the charts and observations.

"There is also a facility for listening to the patient's lungs and heart through a stethoscope at the back of the robot."

More about "Telepresence" and robots, here.

Friday, August 12, 2011

Electronic 'tattoos' to monitor vital signs



Once a patient has left hospital, how can doctors track his or her physical condition? Conventional technology is too bulky or obtrusive, but rub-on electronics that stick to the skin like a temporary tattoo could revolutionise medical monitoring.

When doctors need to keep watch on someone's bodily systems, from the heart's beat to the brain's activity, they have to use bulky electronic devices and attach electrodes to the skin with sticky gel.

"These are useful in some clinical settings, but in the real world they restrain movement and cause irritation to the skin," says John Rogers at the University of Illinois at Urbana-Champaign.

To avoid restricting movement, Rogers's team have given their new "epidermal electronics" the flexibility, elasticity and density of skin.

A tattoo you won't regret (Image: John A. Rogers/Science)

They took the silicon and gallium arsenide typically used to build transistors, diodes and resistors, and fashioned it into wires just a few nanometres thick, each bent into the shape of a tiny meandering river. The meanders can stretch and contract to give electronics constructed from them a degree of flexibility which matches that of skin.

The researchers then took circuits made from the wires and put them on a thin patch of rubber. Finally, they embedded the rubber in a water-soluble protective sheet of plastic, creating a patch around 40 micrometres thick. This patch can then be applied to the skin like a temporary tattoo: it is placed on the skin, rubbed with a wet finger to dissolve the protective sheet and left to dry.
Tech style

The nifty "tattoo" is kept in place by the weak intermolecular forces that are at play whenever two surfaces come together. Because the circuit is soft and stretchy enough to conform to the skin's texture, the contact between the two surfaces is good enough to keep the device in place for several days.

For the style-conscious patient, it can even be combined with a conventional temporary tattoo (see video above) – although until a wireless transmitter can be incorporated into the design, the temporary tattoo must still be wired to a computer.

In a preliminary study, the group put patches on the throats of volunteers. The thin electronics could detect the electrical changes beneath the skin associated with muscle movements as the volunteers spoke.

The signals were then sent through a computer algorithm, which could differentiate the signals associated with different words and allow the volunteers to control a video game with spoken commands.

The first generation of medical patches can monitor electrophysiological signals associated with the heart, other muscles and brain activity. But in future people may benefit from patches that go beyond this passive role, says Rogers.

"We can also use the device to stimulate muscle contractions," he says – although this work, achieved in rats, has yet to be published.

The patches are "a beautiful example of the novel applications than can be enabled by building electronic systems on non-conventional substrates", says Ali Javey, an electronic engineer at the University of California, Berkeley. "This is truly exciting work," he adds.

Journal reference: Science, DOI: 10.1126/science.1206157

Saturday, March 12, 2011

Depression linked to acute Kidney Disease

Depression was linked to a higher rate of hospitalization for acute kidney injury (formerly known as acute kidney failure), even after adjusting for heart disease, inflammatory markers, and lifestyle factors such as body mass index (BMI), smoking, alcohol consumption and physical activity, according to the investigators.

The study, led by Dr. Willem Kop of the Department of Medical Psychology and Neuropsychology at the University of Tilburg, the Netherlands, included 5,785 people in the United States who were followed for 10 years. 

At the start of the study, the participants were 65 years and older and were not on kidney dialysis.
The researchers found that depression was also associated with a higher prevalence of chronic kidney disease (CKD) at baseline. It was 20% more common in people with chronic kidney disease than in those without the disease.

The study appears online March 10 in the Clinical Journal of the American Society of Nephrology.
"People with elevated depressive symptoms have a higher risk of subsequent adverse kidney disease outcomes.

This is partially explained by other medical factors related to depression and kidney disease. But the association with depression was stronger in patients who were otherwise healthy compared to those who had co-existing medical disorders such as diabetes or heart disease," the researchers wrote in a journal news release.

The researchers are currently examining factors that may explain the link between depression and kidney disease and failure. These could include delays in seeking medical care, the effect that depression has on the immune and nervous systems, and miscommunication between patients and doctors.

Monday, March 1, 2010

Newly engineered enzyme is a powerful staph antibiotic

Lysins that are effective against drug-resistant staph bacteria bore a hole through their cell walls.

The bacterium's contents ooze out, instantaneously killing it. (Credit: Image courtesy of Rockefeller University)

Newly engineered enzyme is a powerful staph antibiotic

With their best chemical antibiotics slowly failing, scientists are increasingly looking to nature for a way to control deadly staph bacteria -- the culprit behind most hospital infections.

Naturally toxic for bacteria, enzymes called lysins have the promising ability to obliterate staph, but the problem is producing large enough quantities of them to study how they work.

Rockefeller University scientists have now overcome this barrier by engineering a lysin that not only kills multidrug-resistant Staphylococcus aureus (MRSA) in mice, but also works synergistically with traditional antibiotics that have long been shelved due to resistance.

For the past five years, Vincent A. Fischetti, head of the Laboratory of Bacterial Pathogenesis and Immunology, and his colleagues have tried to clone a lysin that specifically targets staph, but they always ran into the same problem.

Although hundreds of thousands of lysins could be expressed in an engineered cell, they all would stick together forming an insoluble clump, rendering them inactive. "They were useless; a real thorn in our side," says Fischetti. "We've come across some problems cloning lysins for other bacteria, such as strep, but nothing to this extent."

Lysins, proteins derived from the viruses that have been infecting bacteria for billions of years, have two basic components. One acts as a recognition system to identify the specific bacteria species it has evolved to target; the other works like a molecular power drill that bores holes through the bacterium's cell wall, killing the organism. Together, these two components work so quickly and so efficiently that bacteria have no time to develop resistance.

Read the full article here

Wednesday, September 2, 2009

Computer Innovation: Go to hospital to see the future - New Scientist

Innovation: Go to hospital to see computing's future - New Scientist

Computer Innovation is our regular column that highlights emerging technological ideas and where they may lead.

If you want to know how people will interact with machines in the future, head for your nearest hospital.

That's the impression I got from a new report about the future of human-computer interaction from IT analysts Gartner, based in Stamford, Connecticut.

Gartner's now-classic chart, shown right, shows the rollercoaster of expectations ridden by new technologies: rocketing from obscurity to a peak of overblown hype, then falling into a "trough of disillusionment" before finally becoming mainstream as a tech's true worth is found.

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