Tech
Outernet turns your saved posts into real-world adventures
Danielle Egan and Athena Leong know how to have fun. Between the two of them, they’ve organized a citywide scavenger hunt in San Francisco and turned a viral prank into an exclusive NYC restaurant for a night. They even created an alternative to a running club for socializing, dubbed a “sit club,” where people just bring their chairs and relax. Now, with their new startup, Outernet, the co-founders want to help others add more fun to their lives, too.
The app’s name is inspired by the concept of using the internet as a tool to get you to go outside, hence “outernet.” It’s one of several apps that helps you save the things you see online — like local events, restaurants or bars to try, or other city landmarks — and turn them into a list of to-dos for exploring the world around you.
Outernet’s pitch is that instead of simply liking a post about something you’d like to see or do on social media, you should share it to its app, where it will track the activity or place you want to visit for you in an organized interface. (Invite codes to try the app for yourself are at the bottom of this post).
What makes Outernet different from others in the space, like Albo, Tabi, or Plotline, is who’s behind it: founders who have devoted much of their time to playfulness and having fun offline. Now, they want to bring that same spirit into their app.

“In my free time, I’m very passionate about getting people to go outside and do things,” explains Egan, whose offline persona is quite different from her former day job working in product BizOps at LinkedIn. “I just love capturing attention in unexpected ways and delivering delightful things.” She says the thesis behind the app is becoming the “motivation engine for IRL” — something that removes the friction between wanting to do something and actually going out to do it.
Outernet taps into an already common consumer behavior. As you scroll TikTok and Instagram, you’re often inspired by a creator’s post, so you’ll save it in the app as a reminder. But then you promptly forget about the idea as you continue to consume more content. Outernet solves this problem by keeping track of the things you want to do or places you want to visit, all in one place.

To save a post to the app, you’ll tap the share option from the source app, like TikTok or Instagram, then scroll through the list of places you can share to until you find Outernet. You can also paste in social media URLs or website links directly into the app, or upload a photo of something you see, like a flyer.
To organize everything, Outernet leverages AI to pull relevant information, like the date, time, location, and details about the activity you want to try or the location of a place you’d like to visit. Events are saved to a chronological feed, which you can revisit whenever you’re looking for something to do. Other activities without a date, as well as places you’d like to visit, are organized into separate tabs within the app. You can also save events to your Apple or Google Calendar.

The app can also send proactive reminders and nudges that encourage you to go do the things you’ve saved.
Then, as you explore places in the real world, you can “stamp” them as such, building what will eventually become a passport documenting your activities.

“We’re thinking of different ways of creating maybe some sort of like passport book where you can look at all the things [you’ve done] and maybe share that with friends and get some sort of sense of pride of that,” Egan says of future product plans. They’re also thinking of using traditional gamification techniques to encourage activity, like giving out stamps when you reach different milestones.
The idea for Outernet came out of the co-founders’ experience designing a citywide scavenger hunt in San Francisco, called “Pursuit,” which began three years ago and is now held annually. The monthlong game drew participation from about 1.5% of San Francisco’s population during its most recent run.
As the founders chatted with participants, they found that people didn’t get involved because they loved scavenger hunts or adventure games; they just wanted an excuse to go outside. This sparked an idea.
“We just realized that people really have an appetite for doing things, like going on adventures. This is the new trend,” notes Leong, whose background is in computer science and child development, before she landed a job in adventure game design.
“There are so many incredible community events, and being community organizers ourselves, we’re very plugged into that scene,” Egan adds. “What’s so hard is there are these boots on the ground — incredible community organizers who are hosting these amazing events, and they just don’t know how to reach people because marketing and grabbing people’s attention is such a different skill set. And that’s something that we are exceptional in. So we see ourselves as the conduit,” she says.
Outernet’s app has been on the market for roughly two months and is already profitable from its premium subscription ($6.99/mo or $39.99/year), which lets you save more items per day. It has around 18,000 users in total, and the team is experimenting rapidly with new ideas.
The founders are now having casual conversations with investors about their next steps, but finding the right fit is key.
“We want to bring on investors — if we do — [who are] people who are really aligned with us,” says Leong. “We’re whimsical, and we have to find investors that match.”
Outernet is invite-only and available on iOS, with an Android waitlist. TechCrunch readers can use the invite code “coffeewalk” to skip the waitlist.
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Tech
Apple challenges UK government’s latest demand for iCloud backdoor: report
Apple is challenging another legal demand by the U.K. government to access the encrypted data of its users in the country, according to the Financial Times.
The company reportedly filed a complaint with the U.K.’s Investigatory Powers Tribunal, a court that hears cases related to government surveillance, after the government last year issued a “technical capability notice”. The notice is a secret government legal order for demanding access to users’ data, even if the data is encrypted.
For critics, this kind of demand is the equivalent of requesting a backdoor into Apple’s cloud backups that have Advanced Data Protection (ADP) switched on, which makes the data end-to-end encrypted and inaccessible to anyone other than the customer, including to Apple.
This new challenge comes a year after a similar fight between Apple and the U.K. government. In early 2025, London issued a secret order to Apple demanding access to users’ encrypted iCloud backups, which was later dropped following the intervention of the Trump administration.
After the first order, the company reacted by removing the ability of U.K. users to use ADP. Then, in October, the U.K. issued a second order, which Apple is now challenging.
Apple did not respond to TechCrunch’s request for comment.
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Tech
Apple finally fixed Siri. So why does it feel anticlimactic?
After rounds of delays, Siri AI arrived in the consumer beta build of iOS 27, launched in July. The AI assistant now does what Apple promised: it understands your personal context, taps into broad world knowledge to answer your questions, and surfaces relevant information stored on your iPhone.
And yet, the arrival feels somewhat anticlimatic. Apple finally has a functional — actually, a fairly impressive — AI assistant, but it’s arrived past the time where such a launch feels novel and exciting.
If anything, the AI race has surged ahead in the months and years Apple has dawdled on AI. Today, AI tools are coding and building software, AI agents are completing multi-step tasks, and AI is working alongside you, using your computer, reasoning, thinking, remembering, creating media, and more. Being a functional chatbot or AI helper isn’t the breakthrough that it once would have been.
That is not to say Apple’s Siri AI isn’t valuable or useful. With Siri AI’s launch, Apple delivered on its promises and then some.
You can now have natural, back-and-forth conversations with Siri, which has settings that let you tweak the expressivity and pacing of its voice responses. You can also type to the assistant, if you choose, or use it via a dedicated app for the first time, referencing past conversations.
The assistant can understand your personal context, helping you find things like photos, emails, contacts, texts, or calendar appointments — even when you’re not quite sure what you’re looking for or where. For instance, you could ask it to pull up the last receipt you saved on your iPhone, without saying where it was stored or what the receipt was for, and Siri will find it for you.
You can also ask it about things you’ve saved only as a photo, like your Driver’s License number from a pic of your license, or a QR code you screenshotted to reference later, as a reminder to visit someone’s website. You can launch websites and use apps via Siri, doing things like getting directions, playing music, editing a photo, drafting an email, playing your audiobooks, and much more.
Thankfully, Siri now consistently and accurately plays the song, podcast, or audiobook you request on your preferred app — a low bar to be sure, but one where Siri stumbled before.
Siri can brainstorm with you, too. Among other things, it can help you refine ideas, learn about a new topic, or explore a recipe — like suggesting something you can make with your random ingredients in your fridge! You can ask when your favorite band is playing or when a particular event is, and Siri answers correctly, giving you the information you need, based on your location.
You can use Siri in the Camera’s viewfinder to learn about things in the real world or to help you split a restaurant bill with your friends.
In short, it’s exactly what you always hoped Siri would be: a useful assistant that lets you use your iPhone easily, just by talking, and one that can answer questions of any sort instead of shuffling you off to the web.
These improvements were made possible by Apple’s partnership with Google for the use of its Gemini AI models. Apple didn’t just slap its name on Gemini AI; it used Google’s technology to train and refine its own proprietary Apple Foundation Models. The result is AI models designed to run on Apple’s own Silicon and on its Private Cloud Compute infrastructure and actually work.
Yet, despite finally delivering a functional, helpful version of Siri, it feels almost like Apple fixed a longstanding bug — a forever-broken Siri — rather than doing something revolutionary here. This is how Siri was meant to work all along. The only marvel is that, after so many years of failing to perform tasks correctly, it actually works.
The general public who don’t run beta builds on their devices will gain access to the new Siri when Apple officially releases iOS 27, expected in September.
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Tech
Turning Paper Charts Into Digital Medical Records
Most hospitals and health care providers use electronic health records instead of paper charts to note patient vaccinations, diagnoses, and procedures. AthenaOne, Epic, and Oracle Health are some of the systems employed around the world. Many patients can access their electronic medical records from home.
The platforms exist thanks to pioneering efforts such as the Medical Information System (MIS-I). The first hospital-wide computer system, it was developed in the 1960s by Lockheed Martin (then known as Lockheed Missiles and Space Co.) in partnership with El Camino Hospital, in Mountain View, Calif. Doctors and nurses used MIS-I (pronounced miss-ONE) to admit patients, order lab work and imaging, schedule follow-up appointments, and issue hospital bills, according to a 1973 article published by Datamation.
Although many people now know how to type on a keyboard, in the 1960s, most did not. Therefore, MIS-I included a light pen, which worked like a stylus for today’s touchscreens.
MIS-I was recognized as an IEEE Milestone during a ceremony on 14 May at El Camino Hospital. The IEEE Santa Clara Valley Section sponsored the Milestone.
“The medical information system was more than a technological breakthrough; it was proof of what can happen when clinicians, engineers, administrators, and community leaders unite around a common goal: improving care for patients,” Dan Woods said at the event. He is chief executive of El Camino Health, the nonprofit organization that maintains the hospital.
“This pioneering work helped establish the foundation for the modern medical informatics industry,” Woods said. “The legacy of Lockheed’s innovation continues to benefit patients and health care providers around the world, making this achievement truly worthy of lasting recognition.”
Bringing technology into clinical care
Prior to Lockheed’s effort, health records remained paper-based. They often were stored in dedicated rooms within the hospital. Files were kept in heavy-duty manila folders organized on mechanized open-shelf filing systems, revolving rotary files, or locked steel filing cabinets, according to EO Johnson Business Technologies. The process of retrieving a patient’s medical history was cumbersome and could hamper decision-making in a life-or-death situation. Paper records were prone to human error, according to an EHR in Practice article. In addition, upkeep could be costly due to administrative expenses such as transcribing doctors’ notes, storing patient charts, adding medical codes, and managing insurance claims.
Companies and universities including General Electric, IBM, and Harvard began exploring how to use computers to improve clinical care. They developed several systems for hospital laboratories to track test orders and results, as explained in the Milestone webpage.
In 1964 Lockheed was looking to diversify its portfolio, Melville Hodge, who helped lead the MIS development, said at the dedication ceremony. The company decided to apply its expertise to health care, and later that year this focus-area became part of a new information systems division. Hodge, who at the time oversaw multiple R&D efforts, became the driving force behind the MIS program.
MIS-I displayed patient information on a 14-inch television purchased from a department store. Below that monitor was a keyboard and a light pen.Ian Thomson/Computer History Museum
In 1966 Lockheed secured a contract with the Mayo Clinic, in Rochester, Minn., to assess its computer system needs and those of its two associated hospitals, Hodge wrote in a paper detailing MIS history.
He and a small team of engineers worked with Mayo Clinic physicians for two years to build the prototype of what would become MIS-I.
The system displayed patient information on a 14-inch television purchased from a department store. Below that monitor was a keyboard, and to its right was a printer. Doctors and nurses would swipe their ID badge to access the system, then use the keyboard to put information into the patient’s file or send a request to a pharmacy or laboratory. They also could print documents.
But one problem kept cropping up: Most doctors didn’t know how to type. The computer mouse was still in its infancy, and Hodge suspected it would not solve the problem, according to a video shown at the dedication ceremony. Instead, he “borrowed technology from a then-secret satellite program,” he said.
That technology was the light pen, which was used with MIT’s Whirlwind Computer in the 1950s.
“The insight that physicians could not and would not learn to type, combined with the innovative solution of light pen interaction, transformed an impossible dream into practical reality,” the Milestone proposers wrote.
To display text, the system used matrix programming, a 2D data structure consisting of rows and columns. Using the light pen, a doctor or nurse would select text from a list of general categories on the monitor. The options included the patient’s personal and medical information, family medical history, current illness, and physical exam findings, according to a 1968 article in the medical journal JAMA. The computer would display the requested information or list the next steps to complete tasks such as sending a prescription to a pharmacy. The keyboard remained part of the setup because it could allow users to input new information and update patient records.
To further develop the system, they submitted a proposal to the U.S. Department of Health, Education, and Welfare (now split into the Departments of Health and Human Services and Education) to secure additional funding, but it was rejected.
Herschel Brown, Lockheed’s executive vice president, and Kenneth Larkin, its director of information systems, decided to fund its commercial development, Hodge wrote.
When the company’s contract with the Mayo Clinic ended, the Lockheed team returned to Sunnyvale, California to refine, test, and deploy the system at El Camino Hospital.
“I admire Ed Hawkins, who was its first administrator, for having the courage to take on this kind of project while running a hospital that was only four years old at the time,” Hodge said at the dedication ceremony.
Making MIS-I a commercial success
Starting in 1968, early prototypes were installed in the hospital’s M.D. lounges and nursing station at El Camino Hospital. The organizations worked to configure the system so it met the hospital’s needs.
By 1969, a number of monitors had been installed, including in admissions, pharmacy, and radiology. The information from all the connected machines was stored in a data center housed in a separate location outside the hospital.
In 1971 Lockheed encountered difficulties with its C-5A and L-1011 aircraft programs, according to Hodge. The company was forced to curtail discretionary new business programs including MIS-I. The program was sold to Technicon of Tarrytown, N.Y., a leader in clinical laboratory automation.
The medical information system business operated independently as a subsidiary unit, and the transition marked the beginning of MIS-I’s commercial expansion.
That same year, MIS-I went live for hospital-wide use. Physicians’ orders were communicated to other departments, test results and radiology reports were retrieved, and nursing care planning and documentation were available, according to the Journal of Nursing Scholarship. MIS-I supported most information handling for nurses, physicians, and other medical personnel in the hospital.
But the change was not welcomed by all, according to the video about the technology. Nurses tended to praise the system, but many doctors had a hard time transitioning from paper to computers. They complained they were “spending more time fighting a machine” than interacting with their patients, according to the video. Some even retired to avoid learning the system. But nurses fought to keep it, emphasizing to doctors how much it improved patient care.
In 1974 El Camino Hospital held a vote of medical staff to determine whether to keep the system or return to paper-based records. About 60 percent of doctors and more than 90 percent of nurses voted in favor of keeping it, according to the Milestone webpage.
“The medical information system was more than a technological breakthrough; it was proof of what can happen when clinicians, engineers, administrators, and community leaders unite around a common goal: improving care for patients.” —Dan Woods, El Camino Health CEO
In 1975 nonprofit Battelle of Columbus, Ohio, evaluated how well the system was working for El Camino Hospital. It found that MIS-I reduced the time nursing staff spent on clerical tasks, improved communications among departments, and facilitated better planning of patient care. The survey also showed that more readily available, complete, and accurate information was being used to administer care and monitor patient progress, according to the filings.
By 1993, the technology was installed in more than 200 hospitals in the United States, Canada, and Europe, according to the Milestone entry.
El Camino Hospital used MIS-I for 34 years, until its decommissioning in 2005. It was initially replaced by Eclipsys Sunrise XA and then ultimately by Epic.
The dedication ceremony brought together IEEE leaders, hospital staff, and government representatives. Hodge and his family also attended. IEEE President-Elect Jill Gostin made a presentation about IEEE, and Brian Berg of the IEEE History Committee discussed the organization’s Milestone program.
Hodge participated in a Q&A session with Deb Muro, chief information officer of El Camino Health. He told a story about the early days of MIS-I that he said he will never forget. During a hospital board meeting at which physicians were complaining about the system, an announcement was made over the hospital’s public address system that MIS-I wasn’t working.
“I had to ignore it to survive,” Hodge said, laughing. “As physicians got more used to it, and with a phenomenal poking from the nurses, doctors who wouldn’t use it were forced to.”
A bronze plaque recognizing the MIS-I as an IEEE Milestone has been installed in the lobby of the hospital in Mountain View. The plaque reads:
From 1965 to 1974, the first hospital-wide computerized medical information system was created by Lockheed Missiles and Space Co. in partnership with El Camino Hospital. Innovative light-pen terminals enabled physicians and staff across all departments to efficiently and accurately access patient data and enter work orders. By providing immediate feedback and seamless communication, it reduced costs and errors, improved safety and outcomes, and led the way to modern medical and clinical informatics.
Reviewed by the IEEE History Committee and approved by the IEEE Board of Directors, IEEE Milestones recognize outstanding technical developments around the world that are at least 25 years old. The Milestone program is administered by the IEEE History and Heritage group.
To learn more about historical figures in engineering, IEEE Milestones, and IEEE History Center programs and events, check out The Institute’s IEEE Tech History collection. IEEE Spectrum also covers aspects of tech history.
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