Teens at a local school took initiative to create entrepreneurial solutions amid the COVID-19 crisis. Photo courtesy of The Village School

Some Houston-area high school students have stepped up to help their community during the outbreak of the novel coronavirus. The students have worked on two separate teams to create an intubation box to reduce the spread of COVID-19 from patients to healthcare workers and SpeeDelivery, an app that delivers food for at-risk individuals.

The students from The Village School in the Energy Corridor, known for its unique and enriching IB diploma, are getting support from school educators. The two projects grew naturally from the interests of the high school juniors, who wanted to do anything that could help others during this crisis.

"Our teachers have been very supportive have really enjoyed having the opportunity to see the students," says TeKedra Pierre, director of experiential learning at The Village School. "It's hard enough to teach virtually but with platforms like Zoom, Google classroom, and other platforms that they have been using to communicate and make sure that our students are still doing well."

The students created the intubation box out of clear plastic with two areas of access so that doctors can put their hands through it and intubate a patient who needs a ventilator. The box prevents exposure to the virus which can be passed in microdroplets from patients to healthcare workers.

"It's extremely easy to build and effective, most importantly affordable so anyone could use it," says Varun Agarwal, one of the students who created the intubation box. "Our catalyst was reading about the shortage of N-95 masks, so we made the box essentially open-source design in our website so that anyone can take the design and send it to a hospital."

Agarwal's website is a youth engagement initiative that he started with his older brother and some friends, called Do Your Bit. The intubation box is only one of many projects. The box has already been used by doctors in the Princeton Hospital System with significant positive results due to their reusable nature.

The SpeeDelivery students were also inspired to lend a helping hand due to the hardship senior citizens were experiencing not being able to go grocery shopping for their own safety. The app allows students to safely do grocery runs for older citizens in Houston, Katy, and Sugarland.

"We came up with the idea of SpeeDelivery because we wanted to help the community who could not afford to go out," said Omar Abouelazm, web developer for the project. "Village students have this tradition to help as much as possible."

The students have currently done 15 deliveries, using appropriate personal protective equipment. They are working to ramp up their delivery system to expand the number of deliveries.

"It's helped us have that commonality and a closer connection to our fellow students because we all want to help others during this difficult time," says Mukhil Ramesh, finance director for SpeeDelivery.

Pierre and the students say that The Village School's culture has nurtured and supported their projects to help the community.

"It's part of the culture at Village, our students come from all over the world," says Pierre. "I think their ability to identify problems or identify solutions is unparalleled. It's ingrained into our school culture to be innovative, creative, and think differently."

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MD Anderson makes AI partnership to advance precision oncology

AI Oncology

Few experts will disagree that data-driven medicine is one of the most certain ways forward for our health. However, actually adopting it comes at a steep curve. But what if using the technology were democratized?

This is the question that SOPHiA GENETICS has been seeking to answer since 2011 with its universal AI platform, SOPHiA DDM. The cloud-native system analyzes and interprets complex health care data across technologies and institutions, allowing hospitals and clinicians to gain clinically actionable insights faster and at scale.

The University of Texas MD Anderson Cancer Center has just announced its official collaboration with SOPHiA GENETICS to accelerate breakthroughs in precision oncology. Together, they are developing a novel sequencing oncology test, as well as creating several programs targeted at the research and development of additional technology.

That technology will allow the hospital to develop new ways to chart the growth and changes of tumors in real time, pick the best clinical trials and medications for patients and make genomic testing more reliable. Shashikant Kulkarni, deputy division head for Molecular Pathology, and Dr. J. Bryan, assistant professor, will lead the collaboration on MD Anderson’s end.

“Cancer research has evolved rapidly, and we have more health data available than ever before. Our collaboration with SOPHiA GENETICS reflects how our lab is evolving and integrating advanced analytics and AI to better interpret complex molecular information,” Dr. Donna Hansel, division head of Pathology and Laboratory Medicine at MD Anderson, said in a press release. “This collaboration will expand our ability to translate high-dimensional data into insights that can meaningfully advance research and precision oncology.”

SOPHiA GENETICS is based in Switzerland and France, and has its U.S. offices in Boston.

“This collaboration with MD Anderson amplifies our shared ambition to push the boundaries of what is possible in cancer research,” Dr. Philippe Menu, chief product officer and chief medical officer at SOPHiA GENETICS, added in the release. “With SOPHiA DDM as a unifying analytical layer, we are enabling new discoveries, accelerating breakthroughs in precision oncology and, most importantly, enabling patients around the globe to benefit from these innovations by bringing leading technologies to all geographies quickly and at scale.”

Houston company plans lunar mission to test clean energy resource

lunar power

Houston-based natural resource and lunar development company Black Moon Energy Corporation (BMEC) announced that it is planning a robotic mission to the surface of the moon within the next five years.

The company has engaged NASA’s Jet Propulsion Laboratory (JPL) and Caltech to carry out the mission’s robotic systems, scientific instrumentation, data acquisition and mission operations. Black Moon will lead mission management, resource-assessment strategy and large-scale operations planning.

The goal of the year-long expedition will be to gather data and perform operations to determine the feasibility of a lunar Helium-3 supply chain. Helium-3 is abundant on the surface of the moon, but extremely rare on Earth. BMEC believes it could be a solution to the world's accelerating energy challenges.

Helium-3 fusion releases 4 million times more energy than the combustion of fossil fuels and four times more energy than traditional nuclear fission in a “clean” manner with no primary radioactive products or environmental issues, according to BMEC. Additionally, the company estimates that there is enough lunar Helium-3 to power humanity for thousands of years.

"By combining Black Moon's expertise in resource development with JPL and Caltech's renowned scientific and engineering capabilities, we are building the knowledge base required to power a new era of clean, abundant, and affordable energy for the entire planet," David Warden, CEO of BMEC, said in a news release.

The company says that information gathered from the planned lunar mission will support potential applications in fusion power generation, national security systems, quantum computing, radiation detection, medical imaging and cryogenic technologies.

Black Moon Energy was founded in 2022 by David Warden, Leroy Chiao, Peter Jones and Dan Warden. Chiao served as a NASA astronaut for 15 years. The other founders have held positions at Rice University, Schlumberger, BP and other major energy space organizations.

Houston co. makes breakthrough in clean carbon fiber manufacturing

Future of Fiber

Houston-based Mars Materials has made a breakthrough in turning stored carbon dioxide into everyday products.

In partnership with the Textile Innovation Engine of North Carolina and North Carolina State University, Mars Materials turned its CO2-derived product into a high-quality raw material for producing carbon fiber, according to a news release. According to the company, the product works "exactly like" the traditional chemical used to create carbon fiber that is derived from oil and coal.

Testing showed the end product met the high standards required for high-performance carbon fiber. Carbon fiber finds its way into aircraft, missile components, drones, racecars, golf clubs, snowboards, bridges, X-ray equipment, prosthetics, wind turbine blades and more.

The successful test “keeps a promise we made to our investors and the industry,” Aaron Fitzgerald, co-founder and CEO of Mars Materials, said in the release. “We proved we can make carbon fiber from the air without losing any quality.”

“Just as we did with our water-soluble polymers, getting it right on the first try allows us to move faster,” Fitzgerald adds. “We can now focus on scaling up production to accelerate bringing manufacturing of this critical material back to the U.S.”

Mars Materials, founded in 2019, converts captured carbon into resources, such as carbon fiber and wastewater treatment chemicals. Investors include Untapped Capital, Prithvi Ventures, Climate Capital Collective, Overlap Holdings, BlackTech Capital, Jonathan Azoff, Nate Salpeter and Brian Andrés Helmick.

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