This Simple Cap For Babies Could Help Save Lives In Hospitals
A hat for newborns that instantly sounds an alarm about key vital signs
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This Simple Cap For Babies Could Help Save Lives In Hospitals
A hat for newborns that instantly sounds an alarm about key vital signs
Read More On PSFK.com
In a world first, a quadriplegic man can once again move his own fingers after a chip was implanted in his brain.
In a world first, a quadriplegic man can once again move his fingers after a chip was implanted in his brain.
Ian Burkhart from Ohio in the US can even move individual fingers to play a guitar-based computer game.
The chip reads brain signals, which are interpreted by a computer. It then precisely stimulates his muscles with electricity to restore movement.
The researchers hope the technology will eventually help millions of people with paralysis, stroke or brain damage.
Incredible, simply incredible. Technology and medical science are both mindblowing, we should revisit this for another Body episode.
(via Israeli First: 3-D Printed Jaw implanted in Patient)
Israeli First: 3-D Printed Jaw implanted in Patient
By: JNi.Media
Poriya doctors with David Goldstein who received a 3-D printed jaw. / Photo credit: Baruch Padeh Medical Center, Poriya
The department of oral and maxillofacial surgery at the Baruch Padeh Medical Center, Poriya, near Tiberias, treated a patient suffering from a large tumor in the back of his jaw by replacing the damaged part with a replacement they created on a 3-D printer.
The patient, David Goldstein, 64, a resident of Tiberias, was suffering non-specific pain in his jaw. At the oral and maxillofacial surgery dept. he underwent a series of tests that discovered in his mouth a lung metastasis close to half an inch in size that absorbed the back of the jaw.
According to Dept. Head Dr. Imad Abu al-Naag, “Surgery of metastasis in the jaw are not commonly done. On the other hand, we know that an oncological treatment — radiation and chemotherapy — don’t solve the [missing jaw tissue] problem. So, after consulting with the oncologists at Rambam and Sheba hospitals, we decided to make the rare move in such a case and perform surgery.”
The 3-Dprinted jaw / Photo credit: Baruch Padeh Medical Center, Poriya
According to Dr. Imad, after the decision to do the surgery, the team conducted several conferences with the team at A.B. Dental, a company providing dentists with solutions that include computerized and custom-made implants, and decided to reconstruct the jaw joint using 3-D printing technology.
“It’s the best treatment available around the world today,” said Dr. Avi Toueg, a senior member of the department. He reported that A.B. Dental created a “perfect copy of David’s jaw. That enabled us to locate the jaw precisely in its place, and, most important, it will facilitate an immeasurably better functionality, compared wit the plates that were in use in the past.”
Only a few hours after his surgery, according to his doctors, Davis started to eat normally.
The 3-Dprinted jaw / Photo credit: Baruch Padeh Medical Center, Poriya
Dr. Imad noted that the surgery, which normally takes about six hours, was done in two. He also praised the cosmetic advantage of using the 3-D printed part, since there are no changes in the patient’s face as a result of the surgery. Using the printed part also means the patient won’t have to adjust his chewing to accommodate slight deviations which were common in the old plates — and resulted in a high rate of broken plates.
“The new plate is produced from titanium and printed in 3-D to match the original jaw 100 percent,” he said, “which is why the chance of breakage is much lower.”
About the Author: JNi.Media provides editors and publishers with high quality Jewish-focused content for their publications.
Using Google Glass as a tool to help children with autism
What is it? The winning entry into the $15,000 “Cure it!” 2016 Lemelson–MIT Student Prize, a prize that rewards technology-based health care inventions, which uses Google Glass as a tool to help children with autism make eye contact with people. Stanford University graduate student Catalin Voss is behind the project which uses emotion-recognition software to tell an autistic child wearing the device whether a person the child looks at is happy, sad or angry.
It’s good because it is a great use of technology, and one which could really make a difference to autistic children and their interaction with other people. Autism Glass could give the wearer real-time social cues in a daily life setting, while simultaneously providing parents and psychologists data to better understand autism.
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Newest Healthcare Technologies Most of Us Are Not Aware Of
Newest Healthcare Technologies Most of Us Are Not Aware Of
As diseases evolve, healthcare technologies also improve. Our generation believes that one way to cope with the fast-paced, changing world is to develop our way of life by advancing healthcare. Nowadays, you can check your patient’s hourly vital signs using the cardiac monitor. With the aid of telemetry, you can monitor all your patients’ cardiac rhythm in the comfort of your seat at the nurses’…
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Wearable technology will add six months to your life
Bold predictions about the future of humanity are often made - we’ll live on the moon, we’ll control items telepathically, we’ll live forever. Well, living forever may not be possible, but the rise of wearable technology could add another six months to your life.
This is according to crystal-ball gazers at Gartner who believe that the rise in wearable devices able to track body signals such as heartbeats, temperature and other environmental factors could add half a year to people’s life spans, in a few years’ time.
“By 2020, developed world life expectancy will increase by 0.5 years due to widespread adoption of wireless health monitoring technology,” the company states.
It says that a rise in new types of wearables technology - such as wireless heart monitoring patches, smart shirts and sensors in accessories - will give people more control and comfort over how health information is gathered, with data transferred over wireless networks.
Complementing this is the rise in cloud storage and big data platforms that will enable this information to be gathered and analysed, helping provide faster, more accurate insights into the wearer’s physical well being.
“Data can be correlated against large cloud-based information repositories for sanctioned actions and through social networks for anecdotal advice. Gartner expects data from remote monitoring devices to provide continued access from patients to medical practitioners,” the report says.
Of course such benefits come hand-in-hand with questions and concerns around privacy and data protection. How can you be sure only trusted health professionals will see your data? What happens if the company gathering it is hacked, or the cloud system storing it breached?
Humanity faces many such questions as the future rapidly approaches.
10 Promising Technologies Assisting the Future of Medicine - The Medical Futurist
See on Scoop.it - The future of medicine and health
Ray Kurzweil says technology is improving at an exponential rate. Peter Thiel says technological innovations couldn’t live up to the expectations. There are plenty of philosophies and schools of thought, but regarding the future of medicine, only two things are certain. Technology will not solve the problems that healthcare faces globally today. And the human …
See on medicalfuturist.com
The Future of Electronic Advertising
The Future of Electronic Advertising
As wearable technology becomes more commonplace, marketers need to find new ways to get their messages across. Online, marketers can track people’s interests through the pages they visit, how long they stay and what products they search for. But what happens when the shopper is in the store? How do you track what they’re looking at, which displays are eliciting a response? Wearable technology,…
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Solar powered handheld device can detect various diseases and cancer in less than 20 minutes
The (Internet Of Things) Doctor Will See You Now – And Anytime Adrian Bridgwater, Contributor, forbes.com
The healthcare business is in an upheaval of sorts. The disorder is driven by the arrival of the Internet itself, the ‘wearable’ Internet of Things (IoT) and the wider freedom and accessibility of information. In some instances we can see individu…
How can we keep healthcare up to date with all this new technology? Patients want to know what’s going on quicker and more accurate.
Bye bye Apple watch, hello tech-tattoos
(http://www.wired.co.uk/news/archive/2015-12/04/biotech-tattoos-biowearable)
Wearable technology takes a step closer.
I’ve seen talk about this on multiple social media sites now, but never really read into it. This is pretty sweet! It’s crazy to think about how far technology has come even in just in our relatively short lifetimes.
What, When, and How to Post on Social Media
Very insightful article. Too many companies/corporations who aren’t successful in regards to digital marketing attempts is because they do not know what or how to post. These are easy ways you can ask yourself if the post is worth while!
Love this article on how to properly use social media! It has a lot of great insight on how to leave a good impression on social media.
Love this! Goes over how to really use social media in a promotional and helpful way.
Want to make it big on social media? Follow these steps and you’ll be well on your way.
A Bionic Fingertip Let an Amputee Feel Texture Again
The world currently has some awesome prosthetics. We have low-cost 3D-printed ones, prosthetics based on Metal Gear Solid aesthetics that send emails, and slick-looking hands that (finally) come in more than one size.
Yet despite this proliferation of designs, but researchers are still working towards one holy grail in the prosthetic-making sphere: How can we endow them with a sense of touch so that users will be able to feel the world around them?
Researchers from the Ecole Polytechnique Federale de Lausanne (EPFL) and the Scuola Superiore Sant’Anna (SSSA), say they’ve created an artificial fingertip that lets amputees differentiate between smooth and rough surfaces in real-time.
“The touch sensation is quite close to what you would feel with your normal finger,” says amputee Dennis Aavo Sorenson in a video released by EPFL. For the video, Sorenson is tasked with sensing if he can feel the ridges on a small rectangular piece of material that the artificial finger is passed along. “You can feel the coarseness of the plates, and the different gaps and ribs,” he notes.
In a study published Tuesday in the journal eLife, the researchers describe surgically connecting the artificial fingertip, replete with sensors, to electrodes implanted in the peripheral nervous system in Sorensen’s left arm stump. They believe that their invention could accelerate the development of prostheses equipped with advanced sensory feedback features in the future. The main aim is for wearers to be able to regain an understanding of the weight, surface texture, and temperatures of the objects that surround them.
To test the bionic finger, the researchers chose four healthy non-amputee volunteers alongside Sorensen to act as control subjects. They connected the artificial fingertip to them via an electrode inserted into a nerve in their arm. The fingertip was then moved over a piece of plastic engraved with smooth and rough surfaces, making the sensors produce “patterns of electrical pulses that stimulated the nerve,” according to their paper.
They found that the control volunteers were able to distinguish between different textures 77 percent of the time; Sorensen answered correctly 96 percent of the time. The researchers also compared brain wave activity captured through an EEG device between non-amputee and amputee reactions, and found that the same brain regions were activated. These findings confirmed that different texture surfaces could indeed be distinguished by amputees, paving the way for a study involving more participants and advanced prototypes of the bionic finger. While it might still be early days, there are high hopes that touch-sensitive systems will have applications not just for prosthetics, but also for robotics used in surgery, rescue and manufacturing. For example, humanoid rescue robots with tactile sensors in their feet could be able to sense what kind of terrain they were on, and adjust their balance accordingly.
Image Credit: Hillary Sanchez/EPFL
Source: Motherboard
SynDaver™ Labs manufactures the world’s most sophisticated synthetic human tissues and body parts.
The SynDaver™ Synthetic Human bleeds, breathes, and employs hundreds of replaceable muscles, bones, organs, and vessels which are made from materials that mimic the mechanical, thermal, and physico-chemical properties of live tissue. This validated technology is used to replace live animals, cadavers, and human patients in medical device studies, clinical training, and surgical simulation. Great resource for medical students! http://bit.ly/1MjTaNH
Text: Daily Anatomy
Neat!
How cool is this? A very clear way to explain how vital (literally) effective compressions are in perfusing the brain, and why deep, continuous compressions save lives.
Technology Is Changing The Health Care Field
Over the centuries, new medical developments and techniques have changed the face of healthcare. The medical field has always brought together the best and brightest of society to help those in need. From treating cancer and delivering babies to dealing with heart attacks, doctors have developed technology and improved techniques.
The problem modern doctors face is a broken medical system and rigid insurance companies. They have managed to work through these difficulties to provide excellent patient care and successful new techniques. As biomedical research improves, doctors will be better at tackling health problems in a cost-effective way. The three main changes that are revolutionizing the medical field are electronic medical records, population science and clinical practice guidelines.