Tuesday, October 22, 2019

This virus is to be blamed for mysterious illness and paralysis in children

Scientists have found the strongest evidence yet that a virus is to blame for a mysterious illness that can start like the sniffles but quickly paralyse children. The poliolike syndrome, called acute flaccid myelitis or AFM, is very rare. Since the first reports from California in 2012, the US has experienced an increasingly bigger outbreak every other year, from late summer into fall.

Doctors have a chief suspect but proof that it’s the culprit germ has been frustratingly elusive. So researchers tried a new trick: They checked patients’ spinal fluid for signs the immune system had fought an invading virus. Sure enough, kids who got sick harboured antibodies that target enteroviruses, just the viral family specialists believe is to blame.

This is circumstantial evidence that this is what’s going on, but it’s a powerful piece of circumstantial evidence,” said a Dr., who helped lead the research. His team reported the findings Monday in Nature Medicine.

Nailing down a suspect is key to better diagnosis and eventually finding a way to prevent or treat the illness, said study co-author and a neurologist,  whose own son developed AFM at age 4. “If you don’t have a cause, you can’t have a vaccine,” he noted. Wilson developed “a good enough microscope, in a sense, to find things they suspected were there.”

Some 590 cases of the ailment have been confirmed in the US since the Centers for Disease Control and Prevention began counting in 2014. Cases spiked that year and in 2016 and last year, with just a few in the intervening years. So far, there have been 22 this year.

Bove’s son, Luca Waugh, illustrates the pattern: His whole family caught a cold in the summer of 2014 — and a few days later; Luca woke up with weakness in his neck that travelled down his shoulder. Despite fast hospitalisation, within days he had body-wide paralysis and trouble breathing. He recovered gradually, and today still has some paralysis in his neck, shoulder and arm.

Either a germ or the body’s reaction to a germ was damaging nerves in the spinal cords of patients like Luca. The CDC noted that AFM spikes coincided with seasons when certain strains of enteroviruses — named EV-D68 and EV-A71 — were causing widespread respiratory illnesses. The problem: Doctors seldom found those viruses in the patients’ spinal fluid, leaving doubt about the link.

Antibodies programmed to track specific germs only wind up in spinal fluid if they fought infection there — what Wilson’s team set out to find. The researchers customized a Harvard-developed tool to search for evidence of hundreds of viruses simultaneously — including herpes, measles, chickenpox, Zika and a whole list of enteroviruses.  Add some spinal fluid, and any antibodies present would stick to their target, able to be identified.  

In tests of spinal fluid from 42 AFM patients and 58 children with unrelated neurologic illnesses, only enterovirus-targeting antibodies emerged as the potential culprit. Nearly three-fourths of patients harbored them, compared to less than 10 per cent of other children. Further work is underway to narrow down the specific strains.

“Before we develop antivirals or potential vaccines, you really want to prove the viruses are causing disease,” said a infectious disease chief at Children’s Hospital of Pittsburgh, who wasn’t involved with the new study. “It’s pretty compelling” evidence.

Mysteries remain. Enteroviruses are hugely common, and doctors don’t know why only a tiny fraction of those infected develop the ailment, Williams said. And as 2020 approaches, specialists are girding for another possible spike next summer. “There’s a lot of dread,” the researcher said.

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Thursday, October 03, 2019

Paralysed man moves in mind-reading exoskeleton

A man has been able to move all four of his paralysed limbs with a mind-controlled exoskeleton suit, French researchers report.
Thibault, 30, said taking his first steps in the suit felt like being the "first man on the Moon".
His movements, particularly walking, are far from perfect and the robo-suit is being used only in the lab.
But researchers say the approach could one day improve patients' quality of life.

How does it work?

 Thibault had surgery to place two implants on the surface of the brain, covering the parts of the brain that control movement
 Sixty-four electrodes on each implant read the brain activity and beam the instructions to a nearby computer
 Sophisticated computer software reads the brainwaves and turns them into instructions for controlling the exoskeleton .
 
Thibault has to be strapped into the exoskeleton  
 
But when he thinks "walk", it sets off a chain of instructions to move his legs  
Walking 
And he can control each of the arms, manoeuvring them in three-dimensional space 

How easy was it to use?

Thibault, who does not want his surname revealed, was an optician before he fell 15m in an incident at a night club four years ago.
The injury to his spinal cord left him paralysed and he spent the next two years in hospital.
But in 2017, he took part in the exoskeleton trial with Clinatec and the University of Grenoble.
Initially he practised using the brain implants to control a virtual character, or avatar, in a computer game, then he moved on to walking in the suit.
"It was like [being the] first man on the Moon. I didn't walk for two years. I forgot what it is to stand, I forgot I was taller than a lot of people in the room," he said.
It took a lot longer to learn how to control the arms.
Thibault said: "It was very difficult because it is a combination of multiple muscles and movements.
"This is the most impressive thing I do with the exoskeleton."

How good is the exoskeleton?

The 65kg of sophisticated robotics is not completely restoring function.
However, it is a marked advance on similar approaches that allow people to control a single limb with their thoughts.

Thibault does need to be attached to a ceiling-harness in order to minimise the risk of him falling over in the exoskeleton - it means the device is not yet ready to move outside the laboratory.
"This is far from autonomous walking," Prof Alim-Louis Benabid, the president of the Clinatec Executive Board, told BBC News.
"He does not have the quick and precise movements not to fall, nobody on earth does this," he added.
In tasks where Thibault had to touch specific targets by using the exoskeleton to move his upper and lower arms and rotate his wrists, Thibault was successful 71% of the time.
Prof Benabid, who developed deep brain stimulation for Parkinson's disease, told the BBC: "We have solved the problem and shown the principle is correct. This is proof we can extend the mobility of patients in an exoskeleton.
"This is in [the] direction of giving better quality of life."

What is the next step?

The French scientists say they can continue to refine the technology.
At the moment they are limited by the amount of data they can read from the brain, send to a computer, interpret and send to the exoskeleton in real-time.
They have 350 milliseconds to go from thought to movement otherwise the system becomes difficult to control.
It means out of the 64 electrodes on each implant, the researchers are using only 32.
So there is still the potential to read the brain in more detail using more powerful computers and AI to interpret the information from the brain.
There are also plans to develop finger control to allow Thibault to pick up and move objects.
He has already used the implant to control a wheelchair.

Are there more sinister roles for this technology?

There are scientists investigating ways of using exoskeletons to enhance human abilities, a field known as transhumanism, rather than overcome paralysis.
This includes military applications.
"We are absolutely not going in the direction of these extreme and stupid applications," Prof Benabid told the BBC.
He added: "We are not in the enhanced human-being approach. Our job is to repair the injured patients who have lost function," Prof Benabid told the BBC.

What do experts think?

Prof Tom Shakespeare, from the London School of Hygiene and Tropical Medicine, said: "Although this study presents a welcome and exciting advance, we must remember that proof of concept is a long way from usable clinical possibility.
"A danger of hype always exists in this field.
"Even if ever workable, cost constraints mean that hi-tech options are never going to be available to most people in the world with spinal cord injury."
He said only 15% of people with disabilities had a wheelchair or other assistive devices.
Details of the exoskeleton have been published in The Lancet Neurology journal.
  
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Friday, July 26, 2019

Indian scientists develop world’s 1st robotic hand for paralytics

Scientists at the IIT-Kanpur have ventured into the world’s first robotic hand for the rehabilitation of stroke patients and have finished their tests on it.

The device is a two-finger robotic hand (exoskeleton) that uses a four-bar mechanism and has four degrees of freedom (DOF).

Professors who have achieved this feat, explain that “The exoskeleton can be used by a patient on the hand. It uses brain signals, with the help of the brain computer interface (BCI) that is worn on the head, and helps paralysed patients to open and close the movement of their thumb, forefinger and middle fingers for physical practice.”

The exoskeleton is operated by an MEGA microcontroller of 300 Mhz and powered by a battery. The teachers say that the device will cost around Rs 15,000.

For the exoskeleton, the duo has partnered with the University of Ulster, based in the United Kingdom, and their teacher who belongs to Gorakhpur.

The device has sensors that control the pressure of the fingertip applied by the patient. If the patient can close or move the finger, the device follows the movement passively. If it does not, then the device actively forces the finger to close, while taking BCI instructions using signals.

Regarding the design of the device, the movement of degrees of freedom of the exoskeleton is based on the movement of the human finger while manipulating a coin in the hands. The joints in the device consist of four bars to give a human movement.

The design and development of an exoskeleton robot for the support and rehabilitation of human hands is a Rs 55 lakh MHRD (Ministry of Human Resource Department) and the British Council (the UK) project which was approved in 2018.



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Sunday, July 07, 2019

Nerve transfer surgery helps 13 paralysed youth hold a drink

A novel surgical technique helped 13 young adults with paralysis of both the upper and lower limbs regain the ability to feed themselves, hold a drink, brush their teeth, and write, says a study. 

The novel nerve transfer surgery connects functioning nerves with injured nerves to restore power in paralysed muscles.
During the surgery, Australian surgeons attached functioning nerves above the spinal injury to paralysed nerves below the injury, said the study.

Two years after surgery, and following intensive physical therapy, participants were able to reach their arm out in front of them and open their hand to pick up and manipulate objects.

Restoring elbow extension improved their ability to propel their wheelchair and to transfer into bed or a car.

They can now perform everyday tasks independently such as feeding themselves, brushing teeth and hair, putting on make-up, writing, handling money and credit cards, and using tools and electronic devices.

"For people with tetraplegia (paralysis of both the upper and lower limbs), improvement in hand function is the single most important goal," said a researcher.

"We believe that nerve transfer surgery offers an exciting new option, offering individuals with paralysis the possibility of regaining arm and hand functions to perform everyday tasks, and giving them greater independence and the ability to he added.

The findings suggest that nerve transfers can achieve similar functional improvements to traditional tendon transfers, with the benefit of smaller incisions and shorter immobilisation time after surgery.

While only a small study, the researchers said that nerve transfers are a major advance in the restoration of hand and arm function, and offer another safe, reliable surgical option for people living with tetraplegia.

"What's more, we have shown that nerve transfers can be successfully combined with traditional tendon transfer techniques to maximise benefits," he said. 


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Saturday, February 16, 2019

Falling in Your Dream Doesn’t Mean What You Think It Does

When you feel as though you are falling in a dream, it actually comes from the brain falling asleep too quickly, and it basically assumes that it is dying. There is a part of your brain that is essentially responsible for waking you up. Sometimes it wakes up a bit faster, or it falls asleep a little faster than the rest of your dream. In addition, the common dream of being paralyzed is also related to this body-brain disconnect. 

 

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Tuesday, December 04, 2018

Brain implants help the paralysed turn thoughts into text

Researchers have devised a way that could have a major impact on the lives of people who are paralysed neck down. A new electrode array system called BrainGate2 allows those with neurologic disease or injuries communicate through unmodified computer tablets.

The system uses an array of micro-electrodes which are implanted into the brain which decode the neural signals associated with the intention to move a limb, it was reported.

Three people paralysed from the neck down have been able to use the unmodified tablets to text friends, browse the internet and stream music with BrainGate2. The system identifies the intentions of the person to move a virtual mouse that is wirelessly paired to the tablet.

While brain-computer interface technology has existed for a few years now, BrainGate2 allows users to navigate a completely original device, which is unmodified and has no special features, making regular off-the-shelf devices of use to the paralysed people. 

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Tuesday, October 23, 2018

10 Ground-Breaking Scientific Discoveries


Science fiction movies often tell tales of future discoveries that make us wish we were already there … - but in fact, the future is here, and we are surrounded by technological developments that prove time and again that there is no limit to what humanity can achieve and do. Scientists from all over the world work day and night to improve our lives, and they are slowly achieving positive results that can certainly change the whole world. Want to know exactly what these results are and how your life will change in the near future? Learn about the 10 most recent scientific discoveries in various fields.

1. An electronic device that helps the disabled walk again

A group of neurophysiologists  did what seemed impossible until today - they gave a person who is paralyzed from the waist down the possibility of walking again! They did this with the help of electronic equipment intended for a completely different purpose - to reduce pain - but it turned out that the technology allowed people, paralyzed from the waist down, to move their lower extremities, even if the nerve damage in the area was very serious. According to neurophysiologists, the process of rehabilitation took 44 weeks, and as of writing, the person on whom the experiment was conducted can already stand on his own and walk on the treadmill.

2. The first full-color x-ray 


scientific discoveries

Scientists have created the world's first 3-D full-color X-ray using a device based on the original X-ray machine. The new device uses particle detection technology called Medipix, which was also used in the large particle accelerator on the Swiss-French border used to find the Higgs boson, whose existence was only theoretical until 2012. MediPix technology works like a subatomic camera that provides high contrast images. Color x-rays clearly show differences between muscles, bones, and cartilages, as well as size and location of cancerous tumors.

3. A vest that warns of a heart attack a few days in advance


scientific discoveries

This smart vest looks like a simple vest, but inside there are sensors and electrodes that do ECG, blood pressure and pulse tests 24 hours a day without the need for a doctor. The information derived from the tests is sent directly to one’s smartphone using an app. According to the inventor of the vest, there is even the possibility of predicting heart attacks two days in advance by identifying abnormal cardiac activity. The vest has already been tested on volunteers and has shown good results, and we can expect it to be available for purchase in the next few years.

4. Eye drops that remove the need for glasses


This development comes from Israel, and these days researchers are working on eye drops that can fix the cornea of the eye. This means that using these eye drops on a daily basis can permanently remove the need for glasses, and the product has already been tested and shown great results. The drops are effective for both nearsightedness and farsightedness, and according to one researcher, they can even prevent cataracts and make our vision better than it naturally is.

5. First flying cab


scientific discoveries

At first glance, Aerocar EHang 184 looks like a drone, but it is much more than that. This is a flying vehicle that can drive 2 people up to 15 kilometers away at a speed of 130 kilometers per hour, but this isn’t the most surprising thing. This flying vehicle doesn’t require a pilot because it is completely autonomous and has already been successfully tested in China. According to the developers of the flying vehicle, all passengers have to do is set their destination and off they’ll go.

6. An external hand skeleton controlled through the power of thought


scientific discoveries

Scientists from the EPFL Research Center in Switzerland have succeeded in creating a prototype of a hand that can be controlled with the power of thought. In previous versions, electrodes had to be attached to the hand under the skin of the body, but now these electrodes are kept in a helmet that just needs to be worn on the head. It is very easy to control the hand and the learning process takes only a few minutes. The device was tested on people with spinal injuries and those who have had a stroke. Now engineers are working on improvements to make this hand good enough for mass production.

7. Editing genes to treat diseases


In August 2017 experts succeeded in successfully modifying fetal genes that are responsible for the development of heart disease. With that being said, the significant innovation in biological engineering is that gene editing can also possibly be used in adults. A 44-year-old with Hunter’s syndrome – a rare genetic disorder - has undergone genetic modification to erase the disease, and researchers are still waiting to see the results of the process, and if they are positive, it will be possible to treat a host of serious genetics-related diseases through gene-editing.

8. The cure for cancer is just around the corner


Modern medicine is making huge strides in making the word "cancer" much less threatening. Although cancer can’t be cured completely, for the time being, it is possible that in the near future overcoming the disease will be much easier and simpler. As early as 2017, a number of people who had been battling cervical cancer received advanced treatment, in which a special drug was sent to the uterus using sperm. As a result, 90% of cancer cells were completely removed, and this method appears to be more effective than chemotherapy and may even replace it.

9. Water was found on Mars


Science has long known that the red star was once full of liquid, and indeed has ice reservoirs, but researchers were still on the lookout for evidence that Mars has liquid water and they found it in July 2018. The Italian space agency found an underground water reservoir using advanced radar, according to them, they found a lake 20 km wide and 90 cm deep. This gives great hope to the future settlement on the planet, which is scheduled to start in the year 2022.

10. Birth control pills - soon for men too


For years scientists have been trying to develop birth control pills for men, but the problem is that they have always been found to have severe side effects, such as causing extensive damage to the liver. However, in March 2018 researchers announced that they may soon release the first anti-pregnancy pills for men which actually work and aren’t harmful. In pills, there is a combination of hormones that suppress sperm production, and like the pills that exist for women, they need to be taken regularly once a day. In addition to being effective, the subjects reported only minor side effects that did not impair their daily routine. One of the most prominent side effects was changes in cholesterol levels, but it is not yet a phenomenon that will rule out the possibility that these pills will be available for purchase in the near future.

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