Tuesday, May 05, 2020

Coronavirus sensor you stick at the top of your chest can track symptoms

It looks like a Band-Aid, but it's a flexible wireless sensor that sits where your throat and chest meet, picking up coughing and breathing problems associated with COVID-19. The device, announced Monday, can monitor early signs of coronavirus infection and the progression of the illness.

Developed in hard-hit Chicago by Northwestern University and the Shirley Ryan AbilityLab, the device adheres to the skin below your suprasternal notch -- the little well at the base of your throat where airflow is closest to the skin and where tracheostomies are performed. This patch, however, is noninvasive and is related to a sensor for monitoring speech and swallowing in recovering stroke patients. That design was tuned to track coughing and breathing problems that are central to COVID-19.


"We don't use a microphone," says Professor John Rogers, director of Northwestern University's Center on Bio-Integrated Electronics. "There are problems with microphones with ambient noise and tremendous invasions of privacy. We use a high-bandwidth, tri-axis accelerometer to measure movement of the surface of the skin" to capture details of breathing and coughing, not unlike a digital stethoscope.

The patch also detects heart rate and temperature.

Once a day you peel it off and place it on a wireless charger, which triggers the patch to sync its stored data with a nearby iPad. From there the data is uploaded to a HIPAA-compliant cloud where a proprietary AI algorithm examines it for anomalies related to COVID-19. The device has no external ports for power or connectivity, making it easier to disinfect.

AI has taken something of beating lately for promising more than it could deliver in health diagnosis.

"We like AI, but we're not wedded to it. We're wedded to things that work," says Rogers. "We use digital filtering algorithms that look for particular signatures in the data. We're looking for trends, not an absolute gold standard measurement. And we have a good understanding of the underlying physics."

At this early stage, the data is double-checked by a trained human before any indications are forwarded to medical providers. Twenty-five test subjects have been wearing the device for two weeks so far, generating about 1,500 hours of history and one terabyte of data.
Arun Jayaraman, research scientist at Shirley Ryan AbilityLab

Missing from the sensor patch is a blood oxygen perfusion sensor, but Rogers suggests that is coming in the near future. Fingertip pulse oximeters, which measure oxygen perfusion, are the latest personal health product to be snapped up after some reports indicated that low blood oxygen was a hallmark of onset of COVID-19.

A lab at Northwestern's Chicago campus is currently producing dozens of new patches a week. It has the ability to scale to hundreds of devices a week before making the patch available for volume manufacturing via license.

Beyond this pandemic, the Northwestern COVID-19 sensor joins an array of activity trackers, glucose monitors and blood-pressure sensors that suggest we'll soon wear a clinic's worth of medical sensors to get in front of health issues before they turn serious.

"I think that demands a hardware platform that is virtually imperceptible," says Rogers. "Health care in general will be improved when you move from episodic monitoring of status to continuous. I've always thought that makes sense."

The information contained in this article is for educational and informational purposes only and is not intended as health or medical advice. Always consult a physician or other qualified health provider regarding any questions you may have about a medical condition or health objectives.

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Monday, February 17, 2020

Smart jumpsuit to track development of infants

 In a first, researchers have come up with a smart jumpsuit that is capable of measuring the spontaneous and voluntary movement of infants starting from the age of five months.

The information which is subsequently gathered could possibly help in assessing abnormal neurological development, among other things.

The study on the smart jumpsuit and the related analysis method applied to seven-month-old infants was published in the Scientific Reports journal. In the future, the jumpsuit can also be used to study older children.

Previously, the quantitative tracking of children's spontaneous motility in the natural environment has not been possible. Instead, children have been primarily qualitatively assessed at the physician's or physiotherapist's practice, which requires taking into account the fact that the infant's behavior in the practice setting does not necessarily entirely match that seen at home.

"The smart jumpsuit provides us with the first opportunity to quantify infants' spontaneous and voluntary movements outside the laboratory. The child can be sent back home with the suit for the rest of the day. The next day, it will be returned to the hospital where the results will then be processed," explains Sampsa Vanhatalo, professor of clinical neurophysiology at the University of Helsinki.

Vanhatalo says that the new analysis method quantifies infant motility as reliably as a human being would be able to do by viewing a video recording.

After the measurement, the infant's actual movements and physical positions will be known to the second, after which computational measures can be applied to the data.

"This is a revolutionary step forward. The measurements provide a tool to detect the precise variation in motility from the age of five months, something which medical smart clothes have not been able to do until now," added Vanhatalo.

The data gleaned by the smart jumpsuit is valuable since the detection of abnormalities in the neurological development of infants at an early stage enables early support.

Brain plasticity is at its strongest in early childhood and is benefited by measures supporting development, which are targeted at recurring everyday activities.

At least 5% of Finnish children suffer from problems associated with language development, attention regulation, and motor development.

Often, such problems overlap. The pathogenic mechanisms underlying developmental disorders are complex, but preterm birth, perinatal brain damage and the lack of early care, as well as insufficient stimulation in the growth environment, aggravate the risk of developmental problems.

According to Leena Haataja, professor of pediatric neurology, developmental disorders in today's pressure-dominated world pose a considerable risk that can lead to learning difficulties and obstacles in the competition for education and jobs. Furthermore, they are a risk factor associated with exclusion from contemporary society.

In the future, smart jumpsuit can be used for the objective measurement of how various therapies and treatments affect children's development.


This is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.     
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https://gseasyrecipes.blogspot.com. feel free to view for easy, simple and healthy recipes    
https://kneereplacement-stickclub.blogspot.com. for info on knee replacement
 


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