Insight Surgery is opening its first international location, and the UK company chose Houston for it. Photo via 3dlifeprints.com

An innovative health tech company headquartered in the United Kingdom has made its entrance into the United States — and Houston's Texas Medical Center is where it's setting up shop.

The company, newly renamed to Insight Surgery — neé 3D LifePrints — was originally established in 2011 by Paul Fotheringham as a social enterprise to create 3D printed prosthetics for amputees in Kenya. While the company still provides this care to developing countries, Fotheringham, who serves as CTO, evolved his mission into a business in 2015. The company is gearing up for its next evolution — starting with its first international expansion.

“We’re pivoting away from being a 3D printing company toward a company that personalizes surgery,” Fotheringham tells InnovationMap.

Insight Surgery's focus now is to provide digital planning for surgeons and create personalized medical devices. All the technology the company is working with is FDA approved, but will be customized for patients and surgeons. Previously, this type of customized care could take weeks or months, Fotheringham says, but with Insight Surgery's technology, they can accomplish this in a matter of days.

“We’ve coupled this all together at the point of care by putting people and technology in the hospitals,” Fotheringham explains. “We are changing the norm about (traditional surgery)."

Fotheringham and his team connected with Texas Medical Center Innovation Hub by way of a biobridge — an initiative by TMC to work with international entities to provide an exchange of tech and innovative care. TMC originally launched this UK partnership in 2018 and has expanded it to other countries, including Ireland, Australia, and Denmark.

Insight Surgery is currently building out its 5,000-square-foot space in TMCi that will have a print room for manufacturing. Local operations will be led by David Collins, US engineering lead, who will collaborate with Houston medical professionals at the point of care.

"The US is about 45 percent of the global market for personalized devices, so for us it's part of our expansion — both revenue and investment. We're moving into our fourth round of investment, and the funds will be used for geographic expansion," Fotheringham says. "It's the right time. There's not a lot of competitors."

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$5B Austin medical center, anchored by MD Anderson, to break ground this fall

moving forward

Construction on the $1 billion first phase of the AI-native University of Texas Dell Medical Center in Austin—which will feature a hospital operated by Houston’s UT MD Anderson Cancer Center—is set to start this fall.

The UT System Board of Regents approved funding for first-phase construction on Aug. 12.

The medical center—now expected to cost $5 billion, up from the initial $2.9 billion estimate—will span about 2.5 million square feet. It will include 300 to 500 patient beds, outpatient facilities, an emergency department and specialized care for cancer patients.

MD Anderson will bring its world-renowned oncology programs to the center’s integrated health care model, Dr. Claudia Lucchinetti, senior vice president of medical affairs at UT Austin and dean of the university’s Dell Medical School, tells Health Leaders.

Earlier this year, Austin tech billionaire Michael Dell and his wife, Susan, pledged $750 million for development of the medical center. The medical center, scheduled for completion in December 2030, will be a cornerstone of the new 300-acre UT Dell Campus for Advanced Research, a medical education and research hub.

“Through this new campus and medical center, Texas will lead America in health care innovation,” Gov. Greg Abbott said when the research campus was announced in April. “The next generation of medical breakthroughs will take place in Central Texas.”

The medical center will fold AI tools and other technology into the infrastructure, rather than having them added after it’s built. Among other capabilities, the technology will monitor real-time medical data, automate data entry, and help health care professionals quickly predict and identify risks to patients, according to Health Leaders.

“We are not just building a new medical center,” Lucchinetti says. “We are building a fundamentally new model of health. It’s not just a new facility. It’s not just a new collaboration. It is a convergence of capabilities that rarely come together at the same time.”

Rice lands $15M U.S. Army award to launch next-gen wireless research center

defense funding

The U.S. Army Research Office has awarded Rice University $15 million to establish a new center for next-generation sensing and communications.

The five-year research center—dubbed the Center for Large Aperture Secure Sensing, Imaging and Communications (CLASSIC)—will unite researchers from universities and national laboratories to develop advanced antenna technologies for future wireless systems. Edward Knightly, the Sheafor-Lindsay Professor of Electrical and Computer Engineering at Rice, will lead the center that “combines expertise in wireless networking, antennas, radar, artificial intelligence, circuits and physics to address growing demands on wireless systems,” according to Rice.

“The challenges we’re tackling require advances that span physics, hardware, communications and computing," Knightly said in a news release. “By combining those strengths in a single center, we can accelerate the development and demonstration of technologies that would not be possible through individual efforts alone.”

Joining Knightly will be Ashutosh Sabharwal of Rice, Sensen Li of the University of Texas at Austin, Hou-Tong Chen of Los Alamos National Laboratory, Danijela Cabric of UCLA, Josep M. Jornet and Tommaso Melodia of Northeastern University, Daniel M. Mittleman of Brown University, and Willie Padilla of Duke University.

Industry partners include Booz Allen Hamilton, Intel, Keysight, Lockheed Martin, MITRE, Northrop Grumman, Qualcomm and Raytheon.

CLASSIC researchers will investigate how large-scale antenna arrays (ELSAAs) can expand the capabilities of wireless systems where technology is limited.

ELSAAs use thousands of coordinated antenna elements to direct radio waves. Researchers aim to develop ways to use the technology to help maintain steady communication when signals are blocked or disrupted and to detect and generate detailed images of concealed objects.

Along with ELSAAs, the center will work to develop sensing techniques for threat detection, study wireless jamming and build resilient high-speed wireless networks. Researchers will ultimately validate the technology in labs and via drone-based field trials.

CLASSIC will also work on developing an AI-driven modeling framework that will simulate complex electromagnetic environments in real time.

“This award demonstrates Rice’s leadership in tackling complex national research challenges through collaboration across disciplines and institutions,” David Sholl, executive vice president for research at Rice, added in the release.