Elizabeth Holmes, pictured on November 18, is now incarcerated. Photo by Justin Sullivan/Getty Images

A longtime Houstonian is coming home — by way of prison.

Elizabeth Holmes, the disgraced founder of blood-testing startup Theranos, reported to F.P.C. Bryan, on Tuesday, May 30, per multiple news outlets. She is set to serve 11 years and three months in the women's minimum-security prison located some 90 minutes from Houston hometown.

According to the the New York Times, the onetime Tanglewood resident arrived at the prison in a Ford Expedition that appeared to be driven by her mother, Noel Holmes. Her father, Christian Holmes, appeared to be inside.

The Times adds that after some shuffling around, out of the view of the cameras gathered nearby, Holmes entered the facility wearing jeans, glasses and a sweater, and carrying some papers.

Prior to her arrival in Bryan, Holmes, 39, spent Memorial Day weekend with her family on the beach near her oceanfront San Diego home with her partner Billy Evans and their two children, according to the Daily Mail.

As CultureMap previously reported, Holmes was sentenced to more than 11 years in prison on November 18, 2002 in San Jose, California following her conviction in January that year for defrauding Theranos investors.

Actress Amanda Seyfried, who played Holmes in the Hulu series The Dropout, shared her thoughts on the woman she portrayed to great acclaim. “Life’s not fair,” Seyfried noted on Good Morning America on Tuesday, “but in a lot of ways, it’s fair. For her, in particular.”

Thrust into the spotlight as the new face of white-collar, Silicon Valley fraud, Holmes now serves as a warning to those who might consider a similar path, her sentencing judge made clear.

“I suppose we step back and ask what is the pathology of fraud? Is it the refusal to accept responsibility or express contrition in any way?" Judge Edward Davila said during the ruling, according to Yahoo! Finance. "Perhaps that is the cautionary tale that will go forward from this case."

Davila ordered Holmes to turn herself into custody on April 27, 2023.

Specifically, Holmes' sentence is 11 years and three months in prison, with another three years of supervision after release. Additionally, Holmes and her ex-boyfriend and former Theranos COO Ramesh “Sunny” Balwani have been ordered to pay $452 million to their fraud victims.

Once compared to disruptors and innovators Steve Jobs and Bill Gates, Holmes rose to fame by enticing investors with the promise that her Theranos could run hundreds of blood tests via a simple pin prick. Buzz for Theranos grew to the point that Theranos was valued at $9 billion, which made Holmes the world’s first self-made female billionaire.

Yet, after securing more than $900 million in funding, Theranos was proven to be essentially bogus by the Wall Street Journal in 2015.

Facing up to 20 years in prison, a tearful Holmes, who is pregnant, addressed the court. "I stand before you taking responsibility for Theranos," she said, per Yahoo. "I loved Theranos. It was my life’s work. My team meant the world to me. They wanted to make a difference in the world. I am devastated by my failings," she said. "Every day for the past years, I have felt deep pain for the people…those people who believe in us and those patients. I worked so hard to serve. I gave everything I had to try to to build...Theranos. Looking back, there are so many things I would do differently. I tried to realize my dream too quickly."

Holmes is the subject of the aforementioned series, The Dropout, which centers on her early life in Houston, where she grew up in Tanglewood and attended St. John's School. Her father's layoff from Enron is presented as clearly an inciting incident in her life. As The Dropout depicts, Holmes would meet boyfriend/partner Ramesh "Sunny" Balwani, drop out of Stanford, and launch Theranos.

One of the most memorable lines in the miniseries comes when a young Holmes plainly states her goals at a family gathering. "I wanna be a billionaire," she said plainly — a memorable and clearly prophetic statement.

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This article originally ran on CultureMap.

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Houston-based HPE wins $931M contract to upgrade military data centers

defense data centers

Hewlett Packard Enterprise (HPE), based in Spring, Texas, which provides AI, cloud, and networking products and services, has received a $931 million contract to modernize data centers run by the federal Defense Information Systems Agency.

HPE says it will supply distributed hybrid multicloud technology to the federal agency, which provides combat support for U.S. troops. The project will feature HPE’s Private Cloud Enterprise and GreenLake offerings. It will allow DISA to scale and accelerate communications, improve AI and data analytics, boost IT efficiencies, reduce costs and more, according to a news release from HPE.

The contract comes after the completion of HPE’s test of distributed hybrid multicloud technology at Defense Information Systems Agency (DISA) data centers in Mechanicsburg, Pennsylvania, and Ogden, Utah. This technology is aimed at managing DISA’s IT infrastructure and resources across public and private clouds through one hybrid multicloud platform, according to Data Center Dynamics.

Fidelma Russo, executive vice president and general manager of hybrid cloud at HPE, said in a news release that the project will enable DISA to “deliver innovative, future-ready managed services to the agencies it supports that are operating across the globe.”

The platform being developed for DISA “is designed to mirror the look and feel of a public cloud, replicating many of the key features” offered by cloud computing businesses such as Amazon Web Services (AWS), Microsoft Azure and Google Cloud Platform, according to The Register.

In the 1990s, DISA consolidated 194 data centers into 16. According to The Register, these are the U.S. military’s most sensitive data centers.

More recently, in 2024, the Fort Meade, Maryland-based agency laid out a five-year strategy to “simplify the network globally with large-scale adoption of command IT environments,” according to Data Center Dynamics.

Astros and Rockets launch new streaming service for Houston sports fans

Sports Talk

Houston sports fans now have a way to watch their favorite teams without a cable or satellite subscription. Launched December 3, the Space City Home Network’s SCHN+ service allows consumers to watch the Houston Astros and Houston Rockets via iOS, Apple TV, Android, Amazon Fire TV, or web browser.

A subscription to SCHN+ allows sports fans to watch all Astros and Rockets games, as well as behind-the-scenes features and other on-demand content. It’s priced at $19.99 per month or $199.99 annually (plus tax). People who watch Space City Network Network via their existing cable or satellite service will be able to access SCHN+ at no additional charge.

As the Houston Chronicle notes, the Astros and Rockets were the only MLB and NBA teams not to offer a direct-to-consumer streaming option.

“We’re thrilled to offer another great option to ensure fans have access to watch games, and the SCHN+ streaming app makes it easier than ever to cheer on the Rockets,” Rockets alternate governor Patrick Fertitta said in a statement.

“Providing fans with a convenient way to watch their favorite teams, along with our network’s award-winning programming, was an essential addition. This season feels special, and we’re committed to exploring new ways to elevate our broadcasts for Rockets fans to enjoy.”

Astros owner Jim Crane echoed Feritta’s comments, adding, “Providing fans options on how they view our games is important as we continue to grow the game – we want to make it accessible to as large an audience as possible. We are looking forward to the 2026 season and more Astros fans watching our players compete for another championship.”

SCHN+ is available to customers in Texas; Louisiana; Arkansas; Oklahoma; and the following counties in New Mexico: Dona Ana, Eddy, Lea, Chaves, Roosevelt, Curry, Quay, Union, and Debaca. Fans outside these areas will need to subscribe to the NBA and MLB out-of-market services.

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This article originally appeared on CultureMap.com.

Rice University researchers unveil new model that could sharpen MRI scans

MRI innovation

Researchers at Rice University, in collaboration with Oak Ridge National Laboratory, have developed a new model that could lead to sharper imaging and safer diagnostics using magnetic resonance imaging, or MRI.

In a study recently published in The Journal of Chemical Physics, the team of researchers showed how they used the Fokker-Planck equation to better understand how water molecules respond to contrast agents in a process known as “relaxation.” Previous models only approximated how water molecules relaxed around contrasting agents. However, through this new model, known as the NMR eigenmodes framework, the research team has uncovered the “full physical equations” to explain the process.

“The concept is similar to how a musical chord consists of many notes,” Thiago Pinheiro, the study’s first author, a Rice doctoral graduate in chemical and biomolecular engineering and postdoctoral researcher in the chemical sciences division at Oak Ridge National Laboratory, said in a news release. “Previous models only captured one or two notes, while ours picks up the full harmony.”

According to Rice, the findings could lead to the development and application of new contrast agents for clearer MRIs in medicine and materials science. Beyond MRIs, the NMR relaxation method could also be applied to other areas like battery design and subsurface fluid flow.

“In the present paper, we developed a comprehensive theory to interpret those previous molecular dynamics simulations and experimental findings,” Dilipkumar Asthagiri, a senior computational biomedical scientist in the National Center for Computational Sciences at Oak Ridge National Laboratory, said in the release. ”The theory, however, is general and can be used to understand NMR relaxation in liquids broadly.”

The team has also made its code available as open source to encourage its adoption and further development by the broader scientific community.

“By better modeling the physics of nuclear magnetic resonance relaxation in liquids, we gain a tool that doesn’t just predict but also explains the phenomenon,” Walter Chapman, a professor of chemical and biomolecular engineering at Rice, added in the release. “That is crucial when lives and technologies depend on accurate scientific understanding.”

The study was backed by The Ken Kennedy Institute, Rice Creative Ventures Fund, Robert A. Welch Foundation and Oak Ridge Leadership Computing Facility at Oak Ridge National Laboratory.