For the second year, the Texas Medical Center Innovation and BioInnovation Institute have teamed up to accelerate a handful of Danish companies. Photo courtesy of TMC

A new cohort of scientists from the Texas-Denmark BioBridge has been selected to join a Texas Medical Center Accelerator, joining forces with some of Houston’s best advisers and mentors.

This is the second year that four Danish companies have been chosen to join a special TMC Innovation Accelerator program with plans to bring their technologies to the American market. In a joint press release, the Texas Medical Center (TMC) and the BioInnovation Institute (BII), announced that the participants are scheduled to arrive in Houston on May 13 for their first session, in which they’ll work on US customer validation. After that, they’ll take part in the full program, which will allow the founders to make their plans for strategic development over the course of six months.

Just as the TMC Innovation Factory offers help for founders who have set their sights on success in the US market, the Danish BioInnovation Institute provides life science startups with the connections, infrastructure and financial support necessary to bring their ideas to the public.

The companies selected include:

  • Alba Health is pioneering a gut microbiome test for young children that’s informed by AI.
  • AMPA Medical has created InterPoc, a more discrete alternative to types of stoma bags currently available for ileostomy patients.
  • Droplet IV is a medical device that automatically flushes IV lines, reducing waste and making nurses’ jobs easier.
  • Metsystem is a cancer metastasis platform aimed at predicting what the most effective cancer drug is for each patient.

“We are excited to welcome these startups to TMC as Danish companies are making significant strides in drug discovery and health tech developments” says Devin Dunn, head of the accelerator for Health Tech, in the release. “As they look to expand into the US market, the collaborative environment fostered by our dedicated team, programs, and clinical community will help them advance their innovations, foster research collaborations, and further develop their technologies here in Houston.”

The program for the accelerator is based on the successes of the TMC Innovation (TMCi) Health Tech Accelerator program. The TMC Denmark BioBridge was established in 2019 as a collaboration between TMC and the Ministry of Foreign Affairs of Denmark.

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Houston researcher builds radar to make self-driving cars safer

eyes on the road

A Rice University researcher is giving autonomous vehicles an “extra set of eyes.”

Current autonomous vehicles (AVs) can have an incomplete view of their surroundings, and challenges like pedestrian movement, low-light conditions and adverse weather only compound these visibility limitations.

Kun Woo Cho, a postdoctoral researcher in the lab of Rice professor of electrical and computer engineering Ashutosh Sabharwal, has developed EyeDAR to help address such issues and enhance the vehicles’ sensing accuracy. Her research was supported in part by the National Science Foundation.

The EyeDAR is an orange-sized, low-power, millimeter-wave radar that could be placed at streetlights and intersections. Its design was inspired by that of the human eye. Researchers envision that the low-cost sensors could help ensure that AVs always pick up on emergent obstacles, even when the vehicles are not within proper range for their onboard sensors and when visibility is limited.

“Current automotive sensor systems like cameras and lidar struggle with poor visibility such as you would encounter due to rain or fog or in low-lighting conditions,” Cho said in a news release. “Radar, on the other hand, operates reliably in all weather and lighting conditions and can even see through obstacles.”

Signals from a typical radar system scatter when they encounter an obstacle. Some of the signal is reflected back to the source, but most of it is often lost. In the case of AVs, this means that "pedestrians emerging from behind large vehicles, cars creeping forward at intersections or cyclists approaching at odd angles can easily go unnoticed," according to Rice.

EyeDAR, however, works to capture lost radar reflections, determine their direction and report them back to the AV in a sequence of 0s and 1s.

“Like blinking Morse code,” Cho added. “EyeDAR is a talking sensor⎯it is a first instance of integrating radar sensing and communication functionality in a single design.”

After testing, EyeDAR was able to resolve target directions 200 times faster than conventional radar designs.

While EyeDAR currently targets risks associated with AVs, particularly in high-traffic urban areas, researchers also believe the technology behind it could complement artificial intelligence efforts and be integrated into robots, drones and wearable platforms.

“EyeDAR is an example of what I like to call ‘analog computing,’” Cho added in the release. “Over the past two decades, people have been focusing on the digital and software side of computation, and the analog, hardware side has been lagging behind. I want to explore this overlooked analog design space.”

12 winners named at CERAWeek clean tech pitch competition in Houston

top teams

Twelve teams from around the country, including several from Houston, took home top honors at this year's Energy Venture Day and Pitch Competition at CERAWeek.

The fast-paced event, held March 25, put on by Rice Alliance, Houston Energy Transition Initiative and TEX-E, invited 36 industry startups and five Texas-based student teams focused on driving efficiency and advancements in the energy transition to present 3.5-minute pitches before investors and industry partners during CERAWeek's Agora program.

The competition is a qualifying event for the Startup World Cup, where teams compete for a $1 million investment prize.

PolyJoule won in the Track C competition and was named the overall winner of the pitch event. The Boston-based company will go on to compete in the Startup World Cup held this fall in San Francisco.

PolyJoule was spun out of MIT and is developing conductive polymer battery technology for energy storage.

Rice University's Resonant Thermal Systems won the second-place prize and $15,000 in the student track, known as TEX-E. The team's STREED solution converts high-salinity water into fresh water while recovering valuable minerals.

Teams from the University of Texas won first and second place in the TEX-E competition, bringing home $25,000 and $10,000, respectively. The student winners were:

Companies that pitched in the three industry tracts competed for non-monetary awards. Here are the companies named "most-promising" by the judges:

Track A | Industrial Efficiency & Decarbonization

Track B | Advanced Manufacturing, Materials, & Other Advanced Technologies

  • First: Licube, based in Houston
  • Second: ZettaJoule, based in Houston and Maryland
  • Third: Oleo

Track C | Innovations for Traditional Energy, Electricity, & the Grid

The teams at this year's Energy Venture Day have collectively raised $707 million in funding, according to Rice. They represent six countries and 12 states. See the full list of companies and investor groups that participated here.

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This article originally appeared on our sister site, EnergyCapitalHTX.com.