what's next for health care?

Photos: Houston Methodist opens new hub to showcase health tech of the future

The Center for Innovation at Houston Methodist has opened its new Technology Hub to showcase its efforts to advance digital health. Natalie Harms/InnovationMap

Houston Methodist is regularly exploring new digital health technologies, but, until recently, lacked a proper space to demonstrate their vision for the future of health care. Now, with the Center for Innovation's Technology Hub, the hospital has just that.

The tech hub opened earlier this month in Houston Methodist Hospital in the Texas Medical Center. The 3,500-square-foot tech testing ground was renovated from an 18-room patient wing and showcases new digital health technologies like virtual reality, ambient listening, wearables, voice control, and more.

"Basically this space is like a laboratory for digital health innovations," says Josh Sol, administrative director of Innovation and Ambulatory Clinical Systems at Houston Methodist. "It's an opportunity to bring doctors, administrators, and subject matter experts to talk through what digital health could be at Houston Methodist."

The tech hub has re-imagined the experiences patients have and demonstrated the effect technology can have in various experiences — from the waiting room or outpatient care to at-home health and a voice control-optimized patient room. There's a virtual reality demo room that showcases the hospital's use of VR for distraction therapy, as well as for a doctor to demonstrate a surgical procedure for his or her patient.

"Part of this space is to change culture within the organization to promote this type of technology and really grow it because we think we can have some really positive impacts with our patients with these collaboration tools.

The space also features coworking space for industry experts — like Amazon or Microsoft — to come in to co-create, Sol says. Houston Methodist was also the first hospital in Houston to sign up for Apple Health's beta program.

Tours are open to industry professionals, vendors, and staff.

"We're excited for what the future can bring with this space," Sol tells InnovationMap.

Click through the slideshow to see some of the tech hub's rooms and the technology featured.

Focusing on hospitality

Natalie Harms/InnovationMap

The futuristic patient room has a new emphasis on hospitality and is optimized by voice control. Patients can sync their phones to the screen to stream shows, but also keep up with their doctors' prognosis.

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Building Houston

 
 

Houston-based Soliton can use its audio pulse technology to erase scars, cellulite, and tattoos. Photo via soliton.com

Soliton, a Houston-based technology company, is using audio pulses to make waves in the med-aesthetic industry.

The company, which is licensed from the University of Texas on behalf of MD Anderson, announced that it had received FDA approval earlier this month for its novel and proprietary technology that can reduce the appearance of cellulite.

MIT engineer and doctor Christopher Capelli first developed the basis of the tool while he led the Office of Technology Based Ventures at M.D. Anderson.

Capelli uncovered that he could remove tattoos more effectively by treating the skin with up to 100 waves per second (about five to 10 times greater than other devices on the market), giving birth to the company's proprietary Rapid Acoustic Pulse (RAP) platform.

In 2012 he formed Soliton with co-founder and entrepreneur Walter Klemp, who also founded Houston-based Moleculin, and later brought on Brad Hauser as CEO. By 2019, the company had received FDA approval for using the technology for tattoo removal.

"The original indication was tattoo removal, which is what Chris envisioned," Hauser says. "The sound wave can increase in speed whenever it hits a stiffer or denser material. And tattoo ink is denser, stiffer than the surrounding dermis. That allows a shearing effect of the sound wave to disrupt that tattoo ink and help clear tattoos."

According to Hauser, the team then turned to a second application for the technology in the short-term improvement in the appearance of cellulite. With the use of the technology, patients can undergo a relatively pain-free, 40- to 60-minute non-invasive session with no recovery time.

Brad Hauser is the CEO of Soliton. Photo courtesy of Soliton

"It works similarly in the fibrous septa, which are the tethered bands that create the dimples and cellulite and the uneven skin. Those are stiffer than the surrounding fat cells in the subcutaneous tissue," Hauser says. "That allows the technology to disrupt those fibrous septa and loosen and release the dimples."

In 2021 the company plans to commercialize their product and get it into the hands of dermatologists, plastic surgeons, and other medical professionals for 25 key accounts—potentially including ones Houston—with a plan for a national rollout in 2022.

And they don't plan to stop there.

The company has already announced a partnership for a proof-of-concept study with the U.S. Navy in which Soliton will aim to use its technology to reduce the visibility of fibrotic scars, and more importantly work to increase mobility or playability of scars.

"Often the scar ends up causing restrictions in motion and discomfort with pressure of even clothing and certainly with sleeping," Hauser says. "We believe based on the reduction in volume and the increase in playability that we saw in our original proof-of-concept study that we will be able to bring benefits to these military patients."

Work on the study is slated to begin in the first half of this year.

In the meantime, the company is making headway with treatment of liver fibrosis, announcing just this week that it's pre-clinical study in animals demonstrated positive results and a reduction in effects by 42 percent seven days after the completion of carbon tetrachloride (CCL4) induction. The RAP technology was also named the best new technology by the Aesthetic Industry Association earlier this month.

"It's really targeting collagen fiber and fibroblasts on a cellular level" Hauser says. "Which we think has numerous potential uses in the future."

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