Showing posts with label medical technology. Show all posts
Showing posts with label medical technology. Show all posts

Tuesday, March 25, 2014

LA doctors practice speeding up trauma care

WEST HOLLYWOOD, Calif. (AP) - Before the car-wreck victim reached the emergency room, doctors, residents and nurses at Cedars-Sinai Medical Center knew what to expect by glancing at their smartphones.
The details came in the staccato of text messages: A 35-year-old man had driven head-on into a bus. He suffered major chest injuries. His vital signs were crashing.
This was not just another day in the hospital. It was a laboratory billed as the "OR of the future," an ongoing experiment aimed at breaking down barriers that bog down care through open communication, better use of technology and teamwork.
In reality, trauma care is rarely this organized. But those who are prized for individual skills are increasingly learning that when it comes to treating trauma patients from accidents, natural disasters or terrorist bombings, communication and coordination can determine whether someone lives or dies.
At an office building less than a mile from the main Cedars-Sinai campus, doctors are guinea pigs in simulations designed to test such skills.
There's a "mission control" room filled with video screens where trainers keep track of the action. The walls are see-through. Open workspaces are favored over cubicles.
At the heart of the lab is a room that could be outfitted as the ER, operating room or intensive care unit - depending on the practice of the day. Medical simulation labs have evolved over the years, from simple lifelike models of body parts that doctors train on to full-blown replications of hospital rooms where trainees can practice different situations. The Cedars-Sinai space strives to speed up trauma care by eliminating workflow disruptions and honing communication skills.
"Health care today is delivered more by teams rather than by individuals. We have to educate folks in teamwork skills," said William McGaghie, who heads a professional training institute at Loyola University Chicago Health Sciences Division.
Registered nurse Anna Doyle is used to working with doctors who parachute into the latest crisis, whether it's tending to the victim of a gunshot wound or rollover accident. It's often a chaotic scene, and not everyone takes the time to get to know one another.
During a recent rehearsal, a resident piped up and asked for everyone's names. For a second, it felt like the first day of school as introductions were made.
Doyle said she found the introductions calming - even if it was just practice.
"We had a personal moment ... that never happens," said Doyle, acknowledging that there's always a line of walking wounded in an emergency.
Armed with a $4 million grant from the Defense Department, doctors and nurses at Cedars-Sinai have been testing ways to improve trauma care by running simulations at the newly opened lab that oozes tech startup.
"This is a place for experimentation," surgeon-in-chief Dr. Bruce Gewertz said.
Before the lab opened, Gewertz and his colleagues followed real trauma patients from the moment they were unloaded from the ambulance to their transfer to the ICU. Along the way, the team documented obstacles that slowed down care: Too many people spoke at the same time, prompting a nurse to ask a resident to speak up. A patient went for a CT scan only to find another patient already in the scanner. A resident's cellphone rang while scrubbing in.
Most of the time, researchers found, delays in care were caused by a lack of communication and logistical hurdles.
The goal is to get everyone on the same page during the "golden hour," a concept borrowed from military medicine when time is of the essence.
The team recently partnered with a consulting firm to develop an in-house iPhone app that displays a patient's vitals and blasts out the information to the trauma team as members are assembling. There's also a text-messaging feature that allows doctors and nurses swarming in from various parts of the hospital to communicate with one another before the patient arrives.
It's too early to determine how much it would cost if the app was part of routine care, but Gewertz said it'll be relatively inexpensive, involving the cost of the phones and a monthly license fee for protected data storage.
On a recent weekday, the team's cellphones buzzed with the condition of the first "patient" of the day, the bus-crash victim.
Typically, doctors don't know vitals until a nurse scrawls them on a whiteboard.
Apps can be helpful, allowing medical teams to "know the information en route so they're not coming in cold," said Pam Jeffries, president of the Society for Simulation in Healthcare and a professor at the Johns Hopkins University School of Nursing. Jeffries is not involved in the Cedars-Sinai effort.
The patient - a high-tech dummy - was wheeled in, moaning and complaining. Doctors and nurses sprang into action, ripping off the dummy's clothes and placing a breathing tube before transferring him.
Despite the quick response, there were hiccups, mainly because of a lack of experience. Residents had trouble inserting the tube, and it took several tries to get it right.
For the second scenario, the team was not given advance information about the patient and kept going in circles asking for any details. A doctor said he heard it was a case of a pedestrian hit by a car.
"Do we know if it's male or female?" another asked.
"I don't know much more than auto versus" pedestrian, the doctor said.
The chief resident said there's worry about internal injuries and to make sure blood supply and other essentials were ready.
As if that weren't enough, they also had to deal with a fire - simulated smoke from dry ice was pumped into the room. One called out for the fire alarm to be shut off while the rest prepared to move the patient to a gurney.
In the chaos, doctors didn't realize the wheel on the gurney was locked and wasted time fiddling.
Despite the hiccups, the patients survived in both cases.



Monday, October 7, 2013

As consumer tech speeds up innovation in health, can traditional med tech keep up?


by  

Consumer technology and telecom companies are changing the pace of innovation in health care, putting traditional med tech firms in an uncomfortable position, according to a new report from PricewaterhouseCoopers.
Consumer tech and telecom names like Verizon, AT&T and Sony may be relative newcomers to health care, but that doesn’t mean they’re not going to give industry stalwarts a run for their money.
According to a Monday report from PriceWaterHouseCoopers (PwC) the medical technology field is in the midst of big change. Medtech is transitioning from a growth industry to a more mature, stable one. But it’s also being shaped by a changing health care economy that’s more consumer-centric and emphasizes comprehensive approaches to treating diseases and providing care, the report said.
And increasingly, companies accustomed to spending heavily on years of research are facing new competition from consumer tech startups and mobile app makers that are steeped in a culture of being faster, better and cheaper.
“The new entrants from other industries have a much more aggressive view of what innovation is than traditional medtech companies,” said Chris Wasden, managing director of PwC’s health care strategy and innovation practice. “That will put these traditional medtech companies in a very uncomfortable mode . . . they’re not using to operating at the step-change mode of innovation.”

Learning how to “innovate innovation”

Some of the bigger newcomers mentioned in the report include Verizon, which offers an FDA-cleared remote monitoring system, Qualcomm Life, which provides a wireless platform for connecting a range of devices and apps, and Reebok, which has partnered with startup MC10 for a wearable sensor that monitors the severity of head injuries in contact sports like football.
But plenty of smaller startups, from Scanadu and Biosense Technologies to Glooko to Propeller Health (formerly Asthmapolis), are also finding creative ways to navigate U.S. Food and Drug Administration requirements and appeal to consumers with diagnostic and care-management tools.
PwC’s report was based on dozens of interviews with medtech and digital health leaders from big and small companies. While they overwhelmingly agreed that “the way [they] innovate has to be innovated,” Wasden said,  few have actually chosen to do it because the disruption is so great.
“There are very few companies that view themselves as innovation pioneers,” Wasden said. “Many think of themselves as fast followers.”
Traditional medtech companies have also been slower to adopt new social, mobile, analytic and cloud technologies, the report said. And that means greater opportunities for nimble startups and consumer tech companies familiar with using these kinds of tools to appeal to customers and consumers.

Finding new ways to improve care for the consumer

Not all traditional medtech players are taking a back seat when it comes to innovation, the report acknowledged. Medical device giant Medtronic acquired telehealth company Cardiocom this summer in an effort to get closer to the consumer. And medical device maker Covidien has stepped up its mobile and cloud services to improve the way it supports patient care and hospitals.
Going forward, which companies will be the ones to succeed? Those that can figure out how to appeal to the consumer.
“The people that will win in healthcare . . . are those that understand the customer the best and understand how to change consumer behavior most effectively,” Wasden said. “If you continue to focus on the doctor or hospital, you’re not going to be a winner in the future.”

Monday, August 12, 2013

Contest Seeks Innovations To Benefit Aging Population


Ecumen and Mojo Minnesota have teamed up to launch an international contest that seeks innovative products and services to benefit the growing aging population.

by Rebecca Omastiak
August 12, 2013
Local organizations Ecumen and Mojo Minnesota are seeking both high- and low-tech solutions to benefit people as they grow older.

Ecumen—a Shoreview-based nonprofit senior housing and services provider—and Mojo Minnesota—a Minneapolis-based cooperative consisting of entrepreneurs, venture capitalists, angel investors, business advisors, and engineers—recently launched their inaugural AgePower Tech Search contest, inviting individuals, startups, and established companies to submit new products and services that are ready to be tested among the senior population.

The two partners said they are looking for functional prototypes that demonstrate a real-world purpose and are positioned for investor interest and commercial success.

“We’re not seeking ‘ideas’ or ‘concepts,’” Ecumen spokesman Eric Schubert told Twin Cities Business. “The submitter must be working to commercialize the technology within the next 12 months with the focus of having a broad, positive impact in life quality, profitability, job creation, and community engagement.”

Ernest Grumbles, co-founder of Mojo, told TCB that “this is not a traditional business plan contest.” Rather, he said, it’s an opportunity for innovators to “road test” their technologies.
 
After completing a screening process, Ecumen and Mojo plan to select roughly four finalists who will gain access to field-testing and feedback. Test environments include Ecumen’s in-home and clinical care settings, assisted living communities, and physical rehabilitation centers.
 
Mojo said it will lend its expertise to help finalists actualize their market potential.

In exchange for the resources Ecumen and Mojo offer, the partners receive a small equity stake (Grumbles said the working figure is 3 percent) in the finalists’ products or services.

“This search fits the sweet spots of both organizations in terms of innovation, collaboration, and helping move Minnesota forward,” Schubert said.

Since the contest opened in July, it has received 10 submissions from locations as diverse as Israel and Ireland. Schubert described one submission as a workplace collaboration tool intended to keep track of work flow and documentation among care givers; another submission outlines a community networking platform and search tool to make senior services easier to find, he said.

Products and services for the aging population represent a Minnesota market in which there is a lot of “low hanging fruit,” Grumbles said.

“There’s a whole system devoted to medical and life care in Minnesota,” he added, referencing institutions such as Mayo Clinic. “[The state] is nationally recognized for social support and old age life improvement.”

“The world’s only growing demographic is people 60-plus,” Schubert added. “It’s our country’s fastest-growing population cohort. And Minnesota has so many attributes to lead in this space.”

Using data from a 2012 United Nations report, Ecumen and Mojo said that approximately 900 million people in the world are over the age of 60 and by 2050, that number will have grown to 2.4 billion. Ecumen President and CEO Kathryn Roberts said that growth represents an opportunity to improve the aging population’s quality of life.

Schubert said the contest taps into a need for near-term care solutions for the aging population by linking human ingenuity with technology.

“Our desire is that AgePower helps locate, optimize, and launch products that link with human skill to make lives better and are commercially viable,” Schubert said. “It’s a vehicle for helping open the door to Minnesota as a global hub for innovation for longevity and wellness.”

The AgePower Tech Search contest is open to applicants until October 31. Interested candidates can apply here.

Ecumen, which recently celebrated its 150th anniversary, owns or manages 55 independent-living and assisted-living communities, as well as 17 health care centers. It operates in 35 cities in Minnesota, Idaho, Nebraska, North Dakota, Tennessee, and Wisconsin. It reported $138 million in 2012 revenue and employs 3,952—3,800 of whom work in Minnesota.

Last May, Twin Cities Business cited Ecumen as an example of a business that is successfully using mentorship programs. Click here to read the story.

Mojo Minnesota, which was founded in 2010, is a cooperative of 13 individuals that mentors entrepreneurs and garners federal and state support for local startups. 

Wisconsin's med tech community: Driving a brain gain in health care innovation

As home to some of the nation's leading medical imaging and technology companies, Wisconsin is a leader in health care technology, research and development. Ranging from small start-up companies to long-established manufacturers, the state's health care technology sector is developing products that are improving health care delivery and patient lives around the world.

Recently, some of the state's most forward-thinkers in the medical technology sector met with Lt. Gov. Rebecca Kleefisch to discuss the progress and challenges Wisconsin's medical technology community is experiencing. Lt. Gov. Kleefisch, as a colon cancer survivor, has a unique connection to the health care technology sector in Wisconsin and understands the importance of supporting public policies and partnerships that will protect the future of medical technology innovation in the state.

The tremendous amount of knowledge and talent across Wisconsin has helped establish the state as a leader in medical technology. Known as "brain gain" by both leaders in the State House and the health care sector, the value investment that education and medical research brings to the state's economy and job base resonates with government, industry and the public.

A few examples:

* Medical innovation and health care research are valuable drivers of Wisconsin's state's economy, contributing approximately 42,000 direct and indirect jobs, and nearly $9 billion to the state's economy.

* Data just released by the Medical Imaging and Technology Alliance named Wisconsin one of the top five states for medical imaging jobs nationwide.

* GE Healthcare alone generates more than $10.4 million in economic activity in-state, on average, every day, and helps support more than 21,000 jobs at GE businesses and at 1,100 supplier sites across Wisconsin.

At the same time, the challenges confronting health care systems are numerous, and identifying ways to improve health care outcomes and contain health care costs is no easy task. Medical innovation is vital to the development of products and processes that will strengthen our health care system. Bold technologies are in development that hold the promise of helping physicians diagnose Alzheimer's Disease, assess the effectiveness of cancer treatment, and increasingly shift the market to more precise diagnostics that will change the way disease is diagnosed and treatments are prescribed. Combined with the power of data analytics and predictive tools that will help health care providers improve efficiency, technology advancements can help save lives and reduce health care costs.

Continued investment in medical innovation and related education is critical to advancing health care and competitiveness. Wisconsin is a leading example of how the medical technology industry as a whole continues to work with state and federal lawmakers to advance policies that support continued medical innovation. On the federal level, bipartisan members of the Wisconsin Congressional delegation have been leaders on the Device Tax repeal and other health care technology issues, and they continue to fight for the interests of Wisconsin's medical device community. Within the state, a strong infrastructure of post-secondary public and private universities supports the quest for medical innovation and ensures a robust future pipeline of talented scientists, engineers, technologists and researchers.

Collaboration across Wisconsin's medical technology industry, state and federal lawmakers and academic institutions ensures that states like Wisconsin can help lead the way to the health care solutions of tomorrow and that the health care industry can transform from its current orientation of focusing on "sick care" to delivering better health care to more people more efficiently.

Mike Harsh is the chief technology officer of GE Healthcare.


Monday, June 3, 2013

MyMD365.com - Crowdit Campaign

A unique opportunity currently exists for stake holders to improve the way our nation delivers healthcare to its citizens...

www.crowdit.com - I'm a Dreamer

San Antonio’s Innovative Medical Startups

By ANDREW MOORE
Reporter with Silicon Hills News


San Antonio’s medical technology industry can spur innovation and lead to new jobs in the local economy.
The Texas Technology Development Center (T3DC) hopes to encourage that by focusing on research, entrepreneurship and investment.
“Of all things, innovation is the single greatest economic driver in any economy,” said T3DC President Randall Goldsmith during the organization’s second quarterly luncheon. “What we bring here today is an example of what we are doing in San Antonio to grow our economy.”
The invitation-only luncheon attracted 200 people to get an update on the latest medical technology in San Antonio.
At the event, Cory Hallem, executive director with the University of Texas at San Antonio’s Center for Innovation and Technology Entrepreneurship, explained how his organization helps students get real entrepreneurship experience and even start their own companies.
“It’s really adding on to that education side through experiences, research, and support,” said Hallem. “How do you put a process in place that helps unlock the inner entrepreneur in someone who hasn’t done it before?”
The center helps students unlock their potential in a number of ways. They have a Technology Entrepreneur Boot Camp twice a year that teaches students how to start a tech company in a single day. CITE also holds the biannual $100,000 Student Technology Venture Competition – the largest undergraduate competition in the country. Additionally, the center has a Graduate Certificate in Technology Entrepreneurship and Management program for students involved in research. The program trains Ph.D. students how to launch a tech company in concurrence with their technology research. UTSA actively pairs students who wish to produce a viable product prototype with faculty and mentors that can help them accomplish their goals.
According to Hallem, UTSA now has over 100 active companies created by students and faculty. In the last three years, UTSA student startups have raised of $1 million in startup funding. One of the student companies has even been offered a tryout for the ABC show Shark Tank.
The second presenter, Lapara Medical, was born in the CITE program and won CITE’s $100,000 Student Technology Venture Competition last November. The startup is developing a laparoscopic cooling device to solve a problem present in kidney transplants and kidney tumor removal – called a nephrectomy.
“This problem stems from partial nephrectomies, where they go in and remove the tumor while leaving the rest of the kidney functioning,” said CEO Duncan Hughes. “They have to clamp the artery to that kidney. Doing so cuts off oxygen flow to that kidney and effectively gives the surgeon 30 minutes to perform the surgery.”
After 30 minutes, the kidney starts to die due to lack of blood flow. If the surgery cannot be completed in this time – and 75 percent of such surgeries cannot – the surgeon must cut the patient open and actually place ice packs around the kidney to keep it alive.
Lapara Medical is developing a laparoscopic cooling system that can be inserted into the body through four small incisions. The device will cool the entire kidney to exactly 15 degrees Celsius, which guarantees the surgeon up to two hours and 30 minutes to complete the surgery without needing to open up the patient. This approach reduces the risk of infection and complications, and greatly reduces a patient’s pain and required hospital stay after the operation.
“We are able to go in and actually change how a surgery is done and really bring change to this market,” said Hughes.
The startup’s cooling device will also be used for kidney transplants and can be adapted to other organs as well. The startup plans to turn their focus on liver surgeries and transplants in the near future.
Lapara Medical is seeking $270,000 in seed round funding to finish developing their prototype and entering into the first phases of testing. Hughes predicts the company will be worth around $300 million within five to seven years of operation.
The final presenter was San Antonio startup Cardiovate. Created by UTSA biomedical engineering Ph.D. graduate Jordan Kaufmann, Cardiovate has created an intravascular tissue regeneration stent graph for aneurism repair.
Aneurysms are an abnormal widening of a blood vessel due weaknesses in the vessel’s wall. If the blood vessel bursts, severe hemorrhage can occur. Aneurysms are often treated by a surgical procedure which inserts a stent graph inside the artery to reinforce the walls and prevents the blood vessel from ballooning. As the patient ages, these graphs move or leak – requiring the patient to have additional surgeries or causing the patient harm if not detected.
“No one wants to have as second surgery, so we looked at this as a problem we could address,” said CTO and President Jordan Kaufmann. “There are currently no tissue repairing stint graphs on the market. At this point, we will be the first one to enter.”
The new stint graph Cardiovate has developed is microscopically engineered to grow into the cells of the artery and create a lasting tissue that will not move or leak. Over time, the graft material is actually absorbed by the body, leaving only the sealing tissue in the reinforced artery. Because the tissue is flexible and adapts to changes in the body, patients should not need additional surgeries.
Kaufmann created Cardiovate with the support of UTSA College of Engineering Dean Mauli Agrawal, and UT Health Science Center Division Chief Steven Bailey. Cardiovate won last year’s University of Texas Horizon Fund Student Investment Competition which came with a seed funding check for $50,000. Agrawal and Bailey have joined Coffman as founders and contributed another $10,000 to the startup.
Cardiovate is currently looking to raise $700,000 for their seed stage of funding and has recently moved to the UTSA incubator for more lab work. The startup plans to ultimately merge with or be acquired by leading competitors Medtronic or Cook Medical.