

Helping a startup design video games to build kids’ emotional strength
A one-month sprint to develop new products—and a new way of working.
For 6-year-old Dave Jr., a long line at Disneyland triggered a massive meltdown. His parents were concerned and a little embarrassed, but not surprised; Dave Jr. struggled to keep his emotions in check.
Hoping to help, Dave Jr.'s uncle, entrepreneur Craig Lund, joined forces with researchers at Harvard Medical School and Boston Children’s Hospital, along with a video game designer who had worked on Quick Hit and NBA 2K. Together, they set out to design something that could teach coping skills to kids like Dave Jr. who need to manage “big emotions,” as well as children suffering from anxiety, ADHD, and other behavior issues, which are on the rise.
Their collaboration resulted in a video game called Mightier and a startup called Neuromotion Labs—a 10-person team of psychologists, game designers, and engineers who embedded at IDEO Cambridge for a one-month sprint to improve the game and get ready for launch.
To play Neuromotion's game, kids are first taught simple, calming breathing exercises. During gameplay, kids wear heart-rate monitors on a wrist or arm that detect spikes caused by stress or anger; as their heart rates go up, the game's difficulty increases. Kids have opportunities to pause and try deep breathing to counter the ramped up challenge. As it turns out, "gamifying" restraint builds strong incentives for kids to take charge of their emotions—they have to if they want to win.

Already activated around boosting mental and emotional health, IDEO's design team worked side-by-side with Neuromotion to study how parents and children experience Mightier. From home visits to group interviews to a summer camp-style design session with kid players, live feedback fueled the next iteration of the gaming platform and better product-market fit.
IDEO helped Neuromotion hone the visual design and mechanics of Mightier and expand it's suite of games. The team observed that the Mightier program was more successful the more involved parents of players became, which revealed a need for additional resources for adults. So they created new supports, including a more detailed orientation and a personalized coaching service for parents staffed by trained therapists.

But can a video game actually help kids cope? Early peer-reviewed studies showed that playing Mightier reduced outbursts by 62 percent, oppositional behaviors by 40 percent, and parental stress by 19 percent. After 12 weeks of using Mightier, a survey of kids and parents showed that 96 percent of parents saw positive behavior changes in their children, while 92 percent of kids learned new coping skills.
Shortly after the design sprint, Neuromotion secured its next round of funding and officially launched Mightier’s array of “bioresponsive games.” The games have already been played more than a million times, and Neuromotion has measured more than a 100 million heartbeats. Mightier games are helping kids and families across the country.
What about Dave Jr.? Recently, his sister told Lund she "accidentally" bumped Dave Jr.’s bike off a pier and into the ocean. She was expecting an outburst of anger, but after eight months of playing Mightier, Dave Jr. stayed cool. His uncle couldn’t be prouder.


Designing waste out of the food system
IDEO partnered with hotels, food banks, foundations, and entrepreneurs to combat food waste.
Many of us have let vegetables wither in the crisper drawer, or thrown out a child’s half-eaten restaurant meal, but the sheer scale of food waste around the globe is hard to grasp. According to the United Nations, about a third of the food the world produces every year—1.3 billion tons—is lost during production or tossed by consumers, with North Americans throwing out the most food per capita. The average American wastes enough food each month to feed another person for 19 days.
IDEO received a series of grants from The Rockefeller Foundation to find solutions, given the power of IDEO’s human-centered design approach to address systemic challenges. Through a number of projects with The Rockefeller Foundation and other organizations, IDEO designers from across the U.S. devised novel ways to tackle food waste.
For IDEO’s first initiative, designers tapped into the enthusiasm of the broader creative community, in partnership with The Rockefeller Foundation, the City of San Francisco’s Department of Environment, the Closed Loop Foundation, ReFED, and other groups. In the summer of 2016, OpenIDEO—IDEO’s open innovation practice—launched the Food Waste Challenge, asking how people might curtail waste by rethinking our relationship with food. Between June and October, more than 20,000 people from 113 countries took part in the challenge, tracking their personal waste and brainstorming solutions.

Challenge participants submitted more than 450 ideas. A team of food industry experts helped select the 12 top proposals, which included software to help people buy food collectively from wholesalers and a service that delivers extra meals from corporate events to those in need. Ultimately, the Closed Loop Foundation chose to award Full Cycle Bioplastics a $50,000 grant to scale up its idea to convert inedible food and paper waste into a fully compostable alternative to oil-based plastic.
At the conclusion of the Food Waste Challenge, OpenIDEO launched the Food Waste Alliance, a platform for participants and experts to stay engaged with the most promising ideas and innovators. The alliance helped entrepreneurs share resources, prototype new concepts, secure funding, hire staff, and form partnerships. OpenIDEO invited hundreds to join the alliance, and 92 percent of members told IDEO they made progress in their work as a result. One member company, RISE, received funding from another participant who discovered RISE through the alliance. This investment let RISE prototype its concept for milling spent grain from beer brewing into flour for baked goods and ultimately join the prestigious Food-X accelerator.

The Rockefeller Foundation also supported IDEO’s work with City Harvest, a New York organization that collects 160,000 pounds of unused food each day and delivers it to soup kitchens and food pantries. City Harvest wanted to understand the habits of local families who visit food banks in an effort to ensure all the food the group distributes gets eaten. To get a peek into these families’ kitchens, in January 2017, IDEO researchers conducted observations and interviews across New York City’s five boroughs. Pantry customers cooked for the researchers, giving them an inside look at how the families engaged with the food they had available and what food meant to each of them: tradition, stability, even adventure. Based on insights from pantry visitors, IDEO made recommendations for City Harvest, including community-run cooking classes and a way for families to request specific foods or reserve pick-up times by text message. IDEO also created three video vignettes to help build even greater empathy between City Harvest and the people it serves.

In spring 2017, capping IDEO’s work with The Rockefeller Foundation, the organizations teamed up with World Wildlife Fund and Hyatt hotels in Florida, New York, and New Jersey to rethink all-you-can-eat buffets. IDEO studied diners and staff at Hyatt buffets and found that employees—from event planners to kitchen staff—each add a cushion of extra food to cover their bases, while guests overfill their plates to avoid missing out. In the end, diners eat just half the food organizers serve, while the rest goes to waste. This and other data-driven insights gleaned about diners’ habits led to subtle substitutions, including smaller plates of meats and cheeses that can be ordered from servers and individual pastries rather than whole cakes. These alternatives have not only built on Hyatt’s existing food waste management strategies, but have also helped reduce buffet costs at Hyatt Regency Orlando and continued to receive support from guests.
The problem of food waste is too enormous to ignore. Wasted food means squandered resources, lost money, and ultimately, hungry people—more than 15 million in the United States alone. Designers and innovators from coast to coast have helped find solutions to the crisis that fulfill a variety of needs, from preserving produce sent to food pantries to keeping plastic packaging out of the oceans. The Rockefeller Foundation and other IDEO partners are leveraging powerful design techniques to pave the way for a waste-free future.


Launching a bootcamp for data scientists
Designing a rigorous program that prepares students for a career in the data-driven economy.
In 2017, IDEO acquired longtime partner Datascope and integrated the company’s data scientists and engineers. Datascope team members aren’t just passionate data scientists; they’re human-centered designers who happen to work with data, as illustrated by successful collaborations like this one:
In today’s job market, there’s no such thing as being "done" with your education. This is particularly true in the fields of data science, machine learning, and AI, where significant advances are made on a monthly basis. To meet this need for more in-depth training, Metis—part of Kaplan—wanted to create a comprehensive data science program for students from all backgrounds. Metis asked Datascope to design the curriculum from scratch, drawing on the company’s deep expertise in the field.
Datascope spoke with practitioners across industries to identify the key skill sets that make them successful: a grasp of design; fluency with data management, coding, and algorithms; and effective communication with coworkers and the wider world. The team crafted a 12-week bootcamp that develops these specific abilities.
In order to prepare students for the work world, the bootcamp is structured less like a class and more like a company, where students are “hired” as data scientists—with projects to complete—starting on day one.
Students collaborate on group projects and presentations in a way that mirrors real workflows, and practice pair programming to learn from one another. Using techniques drawn from design, students are invited to refine their project briefs and continually reevaluate their approach.
Instead of a final exam, at the end of the course, students tackle five real-world, open-ended data science projects inspired by Datascope’s client work. One project involves using data from subway turnstiles to detect patterns in the volume of street traffic; another asks students to use data they scrape from the web to predict a movie’s box office profits using regression analysis.
After students complete the bootcamp, they receive an additional three months of career support, from mock interviews to site visits with potential employers. In addition to designing the curriculum, Datascope taught the first three student cohorts and helped Metis build its teaching team as it expanded the program from New York to San Francisco, Chicago, and Seattle. Metis now offers online courses, evening classes, and corporate trainings in data science.
If you’re going to take a data science bootcamp, it’s best to take one designed by data scientists.


Designing the Levi’s Commuter Trucker Jacket with Jacquard by Google
When Google teamed up with Levi’s to craft a jacket with technology woven in, the company turned to IDEO to help make the experience of wearing the garment feel seamless, intuitive, and familiar.
You’re whizzing along on your bike, en route to a new restaurant for a client meeting. You reach an unfamiliar intersection; which way to go now?
Instead of dismounting and digging for a phone, you brush your hand along your jacket sleeve for directions, then double-tap the denim to re-start your music. Without taking your eyes off the road, you’ve taken care of the problem.
This intuitive interface for connected apparel began with Levi's, makers of durable workwear for 140 years, and Google, creators of forward-looking technology, which joined forces to fashion the first item of clothing with touch-sensitive, copper-core threads woven directly into the fabric. Once it was established that the first connected garment from the partnership would be a jacket within Levi’s Commuter line, with interaction on the sleeve, Google worked with IDEO, leaders in designing for human needs, to develop the gesture language of the jacket and industrial design of the technology within.
This is the first connected garment that helps us break free from devices. It seamlessly incorporates Jacquard by Google technology to perform digital tasks, such as navigation, communication, and music playing with a few swipes or taps on the sleeve.
Jacquard by Google—a platform that makes it possible to integrate touch and gesture interactivity into fabrics using conductive yarn and standard, industrial looms—was inspired by a curious twist of history. The Jacquard loom, invented in France in 1804, used punch cards to automate the process of weaving complex patterns into fabric. In the 1940s and ’50s, engineers employed a similar punch-card technique to program the first computers.

IDEO spent time on the project early on, collaborating with Google engineers and Levi’s clothiers on the jacket’s development, helping craft an experience that would make the intelligent threads intuitive to wearers.
Working alongside Google and Levi’s, IDEO’s work included:
- The industrial design of the electronics integrated into the snap tag and connector (the tag snaps onto the jacket’s cuff and connects to your phone via Bluetooth)
- A vocabulary of gestures on the cuff of the jacket that lets you interact with the jacket’s technology
- Early exploration of the basic design philosophy and conceptual design for the interaction model of a corresponding smartphone app that ties it all together (works with both iOS and Android phones)

The IDEO team’s first task was to validate what commuters of all stripes wanted from the garment, in addition to the work Levi’s did in researching with its consumers. In interviews, group exercises, and wear tests with urban cyclists and other workers on the go, the team learned that cyclists needed a way to stay connected, while still living in the moment. That meant being able to answer calls, hear text messages, get the next direction, and control their music without using a screen.
Levi’s, Google, and IDEO developed a language of movement for Jacquard-enabled fabric that feels familiar and human and builds on the ways people would naturally interact with a garment (a whole-hand brush along the sleeve, as opposed to a one-finger tap on a touch screen, for instance).

Then came the design and engineering of the snap tag on the jacket’s cuff, which gently notifies you of calls, texts, and other jacket interactions with light and vibration feedback. The flexible, lightweight strap incorporates the look and feel of a Levi’s jean button, while housing advanced electronics that capture touch data. The tag is removable, charges via USB connection, and works in conjunction with a mobile app that lets you configure settings for the garment, set notifications, and customize gestures and interactions.
The Levi’s Commuter Jacket with Jacquard by Google changes the game because it’s simply that—a jacket—with technology that adds new utility and value, allowing us to wear our everyday interactions on our sleeves.
The Levi’s Commuter Trucker Jacket with Jacquard by Google hit stores in October 2017.
IDEO and Google have a long history of collaboration. Learn more about our work on Google Bloks here.



Designer’s Playlist #2
A few things IDEO Munich's Shruti Ramiah can't stop thinking about

Name: Shruti Ramiah
Location: Munich
Role at IDEO: Design Research Lead
Joined IDEO: 2011
Website: www.shrutiramiah.com
Titillating Fact: I travel a lot for work, and one thing that helps me make every new place feel like home is the BBC World Service Radio (plus a healthy dose of BBC Radio 4). My grandfather used to tune into the World Service News every evening on Shortwave Radio. Now I have the digital radio on almost all the time, and I find the familiar voices very grounding. It’s also why so many of my conversations start with “So, I was listening to this show…”

1. Flash Forward
Flash Forward is a podcast about the future. Each episode starts with a little audio story playing out one potential future scenario—from the believable to the bizarre. I love the way Rose Eveleth brings intangible futures to life in these stories and then breaks them down to investigate the elements of the scenario.

2. New Philosopher
I discovered this magazine in Sydney. It’s one of many great independent magazines coming out of Australia. Each issue focuses on one theme that is relevant to contemporary life, and explores it from a variety of perspectives. I am amazed at how they make philosophical questions accessible and understandable. Don’t be put off by the name.

3. Jean Jullien
Jean Jullien is a wonderful graphic artist with a great light-hearted sense of humour in his work. Following him on Instagram ensures that there’s always a smile (or a smirk) waiting for me in my feed everyday. @jean_jullien

In this series, we ask IDEO designers to share the stuff they're digging right now—tools, books, music, sites, people, places—so you, too, can drink from the fount of inspiration bubbling up here. This week's guest star: Shruti Ramiah.
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Quick + Dirty Design Tips: InDesign
Bite-sized tool tutorials from the pros
OUR FIRST TIP COMES FORM NJOKI GITAHI, SENIOR COMMUNICATIONS DESIGNER AT IDEO, WHO RECENTLY LED INDESIGN NOVICES IN NEW YORK THROUGH AN EMAIL-BASED INTRO TO ADOBE'S POWERHOUSE PUBLISHING TOOL.

Sometimes you need to cut to the chase. If you're learning a tool outside your discipline, it's usually because a deadline is looming and your go-to experts can't help. There's no time to luxuriate in lessons. You need Quick + Dirty tips: bite-sized tool tutorials to beef up your skills, one morsel at a time.


When Physical Met Digital in the Fields of Myanmar
Prototyping agents for change
Working with hardware enables designers to create more meaningful, situation-specific interactions that might feel cumbersome or be impossible with software alone. Last year, I had the opportunity to work on a project with IDEO.org (a nonprofit design organization that launched out of IDEO with the mission to improve the lives of people in low-income communities through design) that tested my software and physical design skills. The brief: Apply low-cost sensor technology to precision agriculture for smallholder farmers in developing countries.
Informed intuition
Before heading to the field, our small team started by researching precision agriculture practices and technologies for farms and households. We found inspiration in devices like Parrot Flower Power. Even so, we really had no idea what a good precision agriculture device could be, or what challenges farmers faced. But at IDEO, we believe that you learn best by doing. So we quickly ginned up three devices to facilitate conversation with farmers: the Magic Stick, the Ambient Sensor, and the Rice Shoot.
The Magic Stick

Physically, the Magic Stick was inspired by traditional farming tools like rakes and shovels. The tip of the stick was a temperature/humidity sensor that could be stuck into soil or crops that have been harvested and put in storage. Digitally, the Magic Stick created a data table that combined temperature and humidity with GPS location.
The Ambient Sensor

The goal of the Ambient Sensor was to help prevent the growth of a common toxin that spoils crops in storage in many parts of the world. The sensor tested the environment for the conditions that the toxin thrives in: high humidity and temperature. We designed the device to hang on a storage shed wall, and if high humidity and temperature conditions were detected, LED feedback would alert farmers and prompt them to ventilate the space.
The Rice Shoot

We designed the Rice Shoot to measure the water content of rice fields, making the process of rice paddy irrigation more resource efficient, and potentially increasing yields and reducing disease.

We brought our early prototypes to many farms in Kenya, Tanzania, and Myanmar—countries where IDEO.org had existing relationships. During our travels, we spent our days designing, wiring, and programming in the back of bouncing trucks, tidal river boats, and turbulence-prone airplanes. All the people we spoke with were smallholder farmers who need to farm in order to live. Together, we discussed the challenges of growing specific crops in specific regions, as well as any personal challenges they faced. In northern Myanmar's dry zone, we learned that there were no consistent optimal irrigation practices for betel nut, a cash crop that is a big part of the region's economy. Each farmer was watering at different times of day and for different lengths of time, with different yields.

Introducing the Betel Meter
Our time researching with these farmers showed that what they really needed was an upgraded Magic Stick—something with a brain. So we created the Betel Meter, a device that helps farmers create optimal irrigation for betel nut.
The Betel Meter is planted in key positions in a field and takes moisture readings once an hour. Once a day, a farmer presses the meter’s button. A green LED signifies that soil has a healthy moisture level and the farmer can irrigate normally. Red LEDs signify that the soil has been too dry, and farmers should keep irrigation taps open for an additional five or ten minutes. Blue LEDs signify when soil conditions are too wet.

To build the Betel Meter's brain, we used a TinyDuino from TinyCircuits, an Arduino compatible micro-controller with the power of an UNO. The TinyDuino, which is about the size of a quarter, has a brilliant architecture that allows any additional functionalities beyond basic processing to stack on top of each other. This allowed us to keep the core device small, even though it has a real-time clock, a data SD logger, and GPS boards.

Creating the baseline data for the meter turned out to be one of the biggest challenges of the project. Because optimal irrigation for betel nut in an agricultural zone as specific as northern Myanmar is unknown, we had to rely on white-paper research and some intuition. We first researched ideal moisture conditions for all plant life. Then we normalized evaporation rates for water in sandy soil, and cross referenced it against average temperatures for each month in the region.
The physical

The physical design was equally tricky, since the meter needed to withstand extreme weather for long periods of time to protect the sensitive electronics inside. Luckily, we had IDEO.org's Design Director and Co-Lead of the San Francisco studio, Adam Reineck, on the team. He quickly designed a 3D model in Solidworks and printed the form in nylon, which stood up against heavy rain—and even a sandstorm.
Our early prototypes used USB power banks; however, we knew that the Betel Meter had to be an “always-on” device with a reliable and constant power source. We opted for solar power, something the team had experience with. We began by hacking panels out of old solar camping lights and adding a few resistors and extra batteries to the circuit. That way, we could ensure that the device would store enough energy to power the micro-controller and components through the night.

Once we had our prototype, we returned to Myanmar to field test the Betel Meter, planting four of the devices in two fields. Not only did the Betel Meter provide irrigation feedback, it also recorded and created what we believe to be the first-ever dataset around optimal soil moisture for betel nut. People from all over the region came to see and take photos of the meter, and we were continuously asked to come back with the final working product.
From here, our ideal next step is to add machine learning that allows the device's software to evolve from its own data.

Working on the Betel Meter changed my personal approach to design and how I attack problems. Now, on every project, I try to find opportunities to create products that reach deeper into people’s physical lives than pixels on a screen.
Working with such an amazing team, in such a great place and on a product that challenged me the way the Betel Meter did, changed my life. I will be joining the team full time at IDEO.org in New York City this fall, where, hopefully, I will be part of the next chapter of the Betel Meter.
Read more on Fast Company
In my last article, I wrote about a hobby of mine: translating physical objects into digital experiences as a way to test my skills. Like most interaction designers these days, I am fascinated by understanding how digital can connect to our physical reality.


How to Say Goodbye with 20,000 Dowels
As we prepare to move from our current Cambridge studio into a new space around the corner, we can’t help but think of it as a place where many of us began our IDEO journey—sneaking up to the roof for sunset cocktails and riding in the freight elevator to the pop-up gallery in the basement.
In a studio like ours, with a very distinctive creative culture, where people feel like they have ownership over their workspace, a massive, group art project would help us say goodbye together. Not only would it be one last hurrah for this studio, but it would also help reinforce the idea that our culture would be moving with us to the next space.
For years, our tradition at the Cambridge studio has been to reinvent our kitchen wall every six months or so. We’ve created everything from a hand-cut monster wall to a science fiction fine art series (think Yoda portraits in renaissance style). Knowing this mural would be the studio’s last, we wanted to create something that made people think and talk about design—reinforcing our values—and, of course, something big enough for everyone to be involved.

We also wanted to leverage our skillsets—Grace’s in drawing and painting, Greg’s in industrial design and fabrication—to pull together the project. At the time, Grace had been working on a series of dot drawings that caught Greg’s eye. They mimicked that phenomenon in nature when many tiny things form a greater whole. That seemed like a great metaphor for celebrating the multidisciplinary magic of the studio. So we decided to create a drawing as a base, and then scale it up into a wooden dowel installation.
To get started, Grace created the dot drawing (below on the left) that served as a guide for the dowels. She makes these dot drawings (one of which the mural is based on) over several hours of repetitive stippling. First, she measures the margins of the paper using a ruler as a guide, then forms all of the dots by keeping her hand as straight as possible.
We then scanned the drawing and used a Processing script that located the coordinates of each dot. Next, we used a custom Grasshopper script to place a circle at each centroid and extrude it up to the 3d surface that we created in Rhino. From there, we just exported the lengths of the dowels in order of installation to a CSV file for Chop-Chop, our cutting machine.
If we could design a method to cut the dowels in order, and then get the installers to place them in that same order, we’d be in business. To do it, we needed some way of organizing the dots into rows for the installers to follow—even though they’re not a perfect grid, since they were drawn by hand. By using Grasshopper script, we were able to find logical rows within the hand-drawn pattern.
Since the rows’ zig-zag route only appears in the software, we needed some type of marker for our installers to follow. By using a dot, double-dot, or no-dot marking scheme, we made it easy for our teammates to to identify and stay in their row, even if it zig-zagged.
The panel production took us seven days. We used a ShopBot Alpha to mill each hole, then made a second pass to mark the hole with the appropriate dot pattern.

Each of the 20,000 dowels is a different length, so we built a CNC bandsaw to help us cut them all. After sketching a few concepts, we settled on a JET bandsaw augmented with a custom digital stop.
We created the digital stop using parts we designed and 3D printed, as well as stock parts from Adafruit, Misumi, McMaster-Carr, SparkFun, and Arduino. Arduino reads the length of each dowel from the SD card, then turns a stepper motor and timing belt, moving the stop to the correct length. Once the dowel is cut, the miter sled hits a switch and tells the stop to move to the next position. Once we were in a rhythm, the process was pretty smooth.
One of the goals of this mural was to maintain the feeling of human touch that’s so obvious in the original drawing once we scaled it up to the mural. So we decided to design a straightforward process for our installers, and then chalk up any misplacements to the artistry of human error. As we chopped the dowels, we slotted them into trays marked with row number, tray number (some rows had up to 6 trays), and the dot scheme, so the installer knew where to start.

Four months later, we were ready for the big install. We invited the entire studio to come in on a Saturday morning, and we were blown away by the number of people who trickled in. Before we knew it, close to 40 people were helping out. Some heroes even stayed until 2 a.m. There were people hammering in dowels, cutting on Chop-Chop, filling trays, documenting with photo and video, and making beer runs. The assembly lines were staggeringly efficient and fun. It was a robot love fest.

We had hoped that there may be some errors in the process and we were happy to see them. You can find these beauty marks where the surface of the dowels gets uneven—that kind of inconsistency is impossible to predict or design, and it completely enhanced the beauty of the piece. Working together with the studio on a piece defined by the installers was a true bonding experience. It was an inspiring weekend for all of us, and we know that we’ll carry that with us in our move around the corner.
Music by Dan Deruntz. Footage by Chris Wright, Tom Kershaw, Dirk Ahlgrim, and Greg Wolos.
Materials: 20,928 birch dowels, 5/16” diameter; 7 MDF Panels, painted white; jet bandsaw; custom linear slide; Arduino MEGA; Big Easy Stepper Driver; Adafruit LED display; stepper motor; timing belt and pulleys; limit switches; custom 3D printed parts
Software: Rhino, Grasshopper, Processing, Arduino
Suppliers: Adafruit, Misumi, McMaster-Carr, SparkFun, Jet Tools
As we prepare to move from our current Cambridge studio into a new space around the corner, we can’t help but think of it as a place where many of us began our IDEO journey—sneaking up to the roof for sunset cocktails and riding in the freight elevator to the pop-up gallery in the basement. We knew giving it a proper goodbye should mean involving everyone.


Lindsey Turner
I’m passionate about building brands, products, and experiences that help organizations show up with meaning and momentum.
I help organizations cut through complexity by shaping how they show up, through brand strategy, identity, and storytelling.
Working at the intersection of brand and business, I bring an editorial eye and a bias toward making—turning ideas into tangible experiences that people can understand, trust, and believe in.
My work spans government, healthcare, financial services, media, and consumer goods, from launching Gen Z-focused ventures to building innovation labs and reimagining legacy brands. I relish moments of ambiguity and enjoy translating across teams, perspectives, and priorities to move ideas forward.
I started my career in editorial and digital design, shaping cross-platform experiences and identity systems in publishing and agency environments. That foundation still shapes how I work today: I’m detail-oriented, collaborative, and overreliant on the Oxford comma. I hold a BFA in Visual Communication from the School of the Art Institute of Chicago.


Rachel Young
My work helps organizations see who their products aren't working for—and build the will and the tools to do something about it
For 25 years, I've asked the same question: Who does this design exclude—and what are we going to do about it?
My work spans human-centered strategy, inclusive design, and qualitative research, with clients ranging from Microsoft, Google, and Verizon to the National Science Foundation, and San Francisco Unified School District.
Before IDEO, I taught elementary school in East Palo Alto and spent a decade doing design work with social service organizations—where I learned firsthand what it costs people when systems are built without them in mind.
I am currently writing User Error, a nonfiction book about digital access and the design decisions behind it. I live in Oakland, California.


Brian Pelsoh
I lead with craft, ensuring our work is creatively excellent: rooted in deep human insight and imagination, while also grounded in the realities of business and technology.
My expertise spans brand, communication, and product design across tech, education, the arts, and social impact.
I believe great work demands both high-level vision and obsessive attention to detail, and only happens through collaboration.
I bring an inclusive, hands-on approach and a deep understanding of business, which enables me to consistently deliver excellence while always asking why.
Before joining IDEO, I worked at the brand firms Pentagram and VSA Partners. I began my career as a designer, leading teams at the School of the Art Institute of Chicago and the Milwaukee Art Museum. I hold an MFA in graphic design from Maryland Institute College of Art and a BFA in communication design from the Milwaukee Institute of Art & Design, and have taught at some of the best design schools in the US.


Tony Wong
I am responsible for IDEO’s long-term success in China and working with clients to use design as a tool to enable growth.
I am responsible for IDEO’s long-term success in China and working with clients to use design as a tool to enable growth. Specifically, I have helped Chinese companies design holistic brand solutions through the development of their products, communication, services, and innovation teams, and I have helped multinationals expand their presence and influence in China.
I advise global leaders on developing China-led innovation and capabilities.
In over 15 years in IDEO Shanghai, I have worked on projects that use design to elevate the quality of the experience of healthcare products and services, streamline processes that increase productivity, create spaces and programs that promote and enable inclusive communities, and build next generation mobility solutions that are planet-positive.
Before joining IDEO, I worked at Philips Electronics and the Electrolux Group in Italy, the Netherlands, and Singapore on a number of breakthrough commercial products. I am a member of the Young President Organization in Shanghai.
Building a personal AI for the messiness of life: Sida Li
Most AI products today are built for work—a space with clear problems and established systems. One founder noticed a gap: personal life is messier, harder to systematize, and mostly left behind by the AI boom. So she built Cue, a personal AI that lives inside iMessage and group chats, to go where the other tools haven't.
In this episode, Becca Carroll, IDEO's Chief Strategy Officer, talks with Sida Li, co-founder and CEO of Shared Context Lab, about staying anchored to a human need while the technology around her keeps changing shape, why she treats her business model with the same rigor she'd bring to a product, and what it feels like to build a company at this particular, disorienting moment in AI.
The conversation also gets into how Sida makes design decisions: the language Cue uses to describe itself, the tradeoffs behind building inside iMessage instead of a new app, and a real story about a business idea that didn’t pan out.
This is the second in a two-part series profiling founders from IDEO's Startups-in-Residence program. The first conversation is with Johannes Seemann, founder of Sooner, on designing GenAI for the emotional side of money.
Designing GenAI for the emotional side of money: Johannes Seemann
Most personal financial tools are built to run the numbers and optimize towards a budget. While that works for some, most people experience money as a lived relationship that does not neatly fit into a spreadsheet. Johannes Seemann and Becca Carroll discuss why money is emotional before it is mathematical, and what a human-centered approach to building a generative AI financial product looks like in practice.
The curious leader's edge in uncertainty: Scott Shigeoka
Mina Seetharaman talks with Scott Shigeoka, author of Seek and Head of Curiosity Cultivation at the Eames Institute, about what distinguishes genuinely curious leadership from performative curiosity, how power dynamics shape curiosity, and why practicing curiosity can restore energy rather than drain it.
How constraints make us more creative: David Epstein
Mina Seetharaman talks with David Epstein, author of Inside the Box and Range, about why total freedom often produces average work, how leaders can design useful limits on purpose, and what organizations such as General Magic and Pixar reveal about the relationship between boundaries and creativity.
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