After a virtual bootcamp, the TMCx team selected seven startups to move forward in the accelerator. Photo courtesy of TMC

Last year, TMCx, the Texas Medical Center's health tech startup accelerator pivoted to digital programming.

The accelerator revamped its program to allow for an initial Bootcamp stage that would bring in a larger group of startups and then, after the boot camp, the program would move forward with a smaller group through the official acceleration process.

"We hosted 21 companies, representing six countries and 10 states, who each engaged with subject matter experts, clinical leaders, and corporate partners," writes Emily Reiser, senior manager of Innovation Community Engagement at TMC Innovation, in a blog post. "Over half of which ended Bootcamp in advanced discussions with hospitals and/or corporate partners."

Through the bootcamp, TMCx has accepted seven startups into the program. These companies are currently engaged with the TMC community and are receiving support, mentorship, and other opportunities.

Cardiosense

Image via cardiosense.com

Chicago-based Cardiosense, a medical device company with heart health tracking technology, is familiar with Houston innovation. The company won sixth place in the 2020 Rice Business Plan Competition, and the TMC's prize at the event.

Cognetivity Neurosciences

Image via Getty Images

Cognetivity Neurosciences, founded in the United Kingdom, is a digital health platform that taps into neuroscience and artificial intelligence to measure cognitive performance of patients in order to more effectively allow for early detection and management of neurodegenerative disorders.

Eleos Health

Image via eleos.health

Cambridge, Massachusetts-based Eleos Health is focused on helping behavioral health clinicians to optimize their efforts with an all-in-one behavioral health platform. It combines telehealth, measurement-based, and evidence-based care in one holistic solution, and is powered by therapy-specific voice analysis and natural language processing.

Harmonic Bionics

Image via harmonicbionics.com

Harmonic Bionics is one of two Lone Star State companies in the program. The Austin-based robotics startup is working on technology that can help improve upper extremity rehabilitation for patients.

Native Cardio

Photo via Getty Images

Florida-based Native Cardio is tapping into technology to help find a solution to postoperative atrial fibrillation (POAF), which is the most frequent complication after cardiac surgery, occurring in up to 60 percent of patients, according to the company's website. The goal is to help reduce costs, increase accessibility, and improve quality of care.

Progenerative Medical

Image via progenerative.com

Progenerative Medical, based in San Antonio, is working on a clinically-proven reduced pressure therapy to spinal and orthopedic indications to significantly improve clinical outcomes.

RCE Technologies

Image via rce.ai

Atlanta-based RCE Technologies is an artificial intelligence-enabled medical device company that has created a technology that can detect heart attacks early using non-invasive wearables.

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Houston VC funding surged nearly 50% in Q1 2026, report says

VC victories

First-quarter venture capital funding for Houston-area startups climbed nearly 50 percent compared to the same time last year, according to the PitchBook-NVCA Venture Monitor.

In Q1 2026, Houston-area startups raised $532.3 million, a 49 percent jump from $320.2 million in Q1 2025, according to the PitchBook-NVCA Venture Monitor.

However, the Q1 total fell 23 percent from the $671.05 million raised in Q4 2025.

Among the first-quarter funding highlights in Houston were:

  • Utility Global, which focuses on industrial decarbonization, announced a first close of $100 million for its Series D round.
  • Sage Geosystems raised a $97 million Series B round to support its geothermal energy storage technology.

Those funding rounds underscore Houston’s evolution as a magnet for VC in the energy sector.

“Today, the energy sector is increasingly extending into the startup economy as venture capital flows into companies developing the technologies that will shape the future of global energy,” the Greater Houston Partnership says.

The energy industry accounted for nearly 40 percent of Houston-area VC funding last year, according to market research and lead generation service Growth List.

Adding to Houston’s stature in VC for energy startups are investors like Chevron Technology Ventures, the investment arm of Houston-based oil and gas giant Chevron; Goose Capital; Mercury Fund; and Quantum Energy Partners.

How Houston innovators played a role in the historic Artemis II splashdown

safe landing

Research from Rice University played a critical role in the safe return of U.S. astronauts aboard NASA’s Artemis II mission this month.

Rice mechanical engineer Tayfun E. Tezduyar and longtime collaborator Kenji Takizawa developed a key computational parachute fluid-structure interaction (FSI) analysis system that proved vital in NASA’s Orion capsule’s descent into the Pacific Ocean. The FSI system, originally developed in 2013 alongside NASA Johnson Space Center, was critical in Orion’s three-parachute design, which slowed the capsule as it returned to Earth, according to Rice.

The model helped ensure that the parachute design was large enough to slow the capsule for a safe landing while also being stable enough to prevent the capsule from oscillating as it descended.

“You cannot separate the aerodynamics from the structural dynamics,” Tezduyar said in a news release. “They influence each other continuously and even more so for large spacecraft parachutes, so the analysis must capture that interaction in a robustly coupled way.”

The end result was a final parachute system, refined through NASA drop tests and Rice’s computational FSI analysis, that eliminated fluctuations and produced a stable descent profile.

Apart from the dynamic challenges in design, modeling Orion’s parachutes also required solving complex equations that considered airflow and fabric deformation and accounted for features like ringsail canopy construction and aerodynamic interactions among multiple parachutes in a cluster.

“Essentially, my entire group was dedicated to that work, because I considered it a national priority,” Tezduyar added in the release. “Kenji and I were personally involved in every computer simulation. Some of the best graduate students and research associates I met in my career worked on the project, creating unique, first-of-its-kind parachute computer simulations, one after the other.”

Current Intuitive Machines engineer Mario Romero also worked on Orion during his time at NASA. From 2018 to 2021, Romero was a member of the Orion Crew Capsule Recovery Team, which focused on creating likely scenarios that crewmembers could encounter in Orion.

The team trained in NASA’s 6.2-million-gallon pool, using wave machines to replicate a range of sea conditions. They also simulated worst-case scenarios by cutting the lights, blasting high-powered fans and tipping a mock capsule to mimic distress situations. In some drills, mock crew members were treated as “injured,” requiring the team to practice safe, controlled egress procedures.

“It’s hard to find the appropriate descriptors that can fully encapsulate the feeling of getting to witness all the work we, and everyone else, did being put into action,” Romero tells InnovationMap. “I loved seeing the reactions of everyone, but especially of the Houston communities—that brought me a real sense of gratitude and joy.”

Intuitive Machines was also selected to support the Artemis II mission using its Space Data Network and ground station infrastructure. The company monitored radio signals sent from the Orion spacecraft and used Doppler measurements to help determine the spacecraft's precise position and speed.

Tim Crain, Chief Technology Officer at Intuitive Machines, wrote about the experience last week.

"I specialized in orbital mechanics and deep space navigation in graduate school,” Crain shared. “But seeing the theory behind tracking spacecraft come to life as they thread through planetary gravity fields on ultra-precise trajectories still seems like magic."